Alternative Energy Manual - ECCO Supply
Alternative Energy Manual - ECCO Supply
Alternative Energy Manual - ECCO Supply
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<strong>Alternative</strong><br />
<strong>Energy</strong> <strong>Manual</strong><br />
Distributors of:<br />
<strong>ECCO</strong> <strong>Supply</strong><br />
SERVING THE HVAC AND RELATED INDUSTRIES<br />
04/11<br />
www.eccosupply.ca
INDEX<br />
INTRODUCTION................................................................................................................... 3<br />
GEOTHERMAL<br />
Flow Centers.................................................................................................................................... 20 – 26<br />
Fusion Fittings.................................................................................................................................. 18 – 19<br />
Fusion Tools..................................................................................................................................... 27<br />
Geothermal Systems – GeoComfort............................................................................................... 4 – 13<br />
HBX Geothermal Controls............................................................................................................... 28 – 29<br />
Heat Exchangers.............................................................................................................................. 34<br />
Piping – Vanguard............................................................................................................................ 16 – 17<br />
Service and Testing Equipment....................................................................................................... 31<br />
Storage Tanks – Bock...................................................................................................................... 30<br />
System Accessories......................................................................................................................... 32 – 33<br />
WATER HEATER<br />
Eco-Hybrid....................................................................................................................................... 14 – 15<br />
SOLAR<br />
Solar Pumps – Beckett.................................................................................................................... 35 – 36<br />
ENGINEERING DATA/REFERENCE MATERIAL<br />
Effect of Propylene Glycol on Heat Pumps and Air Handlers......................................................... 71 – 73<br />
Heat Pump Commissioning Form................................................................................................... 74 – 75<br />
Piping – Technical Advisory – Vanguard......................................................................................... 65 – 66<br />
Piping – Material Specification Sheet – Vanguard.......................................................................... 63 – 64<br />
Pressure/Temperature Chart – R-22 Refrigerant............................................................................. 59<br />
Pressure/Temperature Chart – R-410A Refrigerant......................................................................... 58<br />
Pressure Loss Charts....................................................................................................................... 60 – 62<br />
Socket Fusion Procedures – Vanguard........................................................................................... 67 – 70<br />
Weather Temperature and Soil Temperature Design Data.............................................................. 37 – 57<br />
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INTRODUCTION<br />
WHY GEOCOMFORT GEOTHERMAL SYSTEMS?<br />
Unit for unit, GeoComfort systems have higher heating capacities than<br />
their competitors. That means less reliance on supplemental heat and<br />
ultimately lower heating costs when compared with other geothermal<br />
brands.<br />
Only GeoComfort split systems have AHRI (Air-Conditioning, Heating,<br />
and Refrigeration Institute) certified air handler matches for every<br />
model. That means better performance and guarantees the operating<br />
efficiency of the system, which is a requirement for many rebate and<br />
incentive programs.<br />
GeoComfort only uses Copeland scroll compressors in their<br />
heat pumps. This proven compressor technology ensures better<br />
reliability due to fewer moving parts. The inherent design of the scroll<br />
compressor requires less energy than other compressors to do the<br />
same amount of work, resulting in higher efficiencies.<br />
GeoComfort units are assembled using stainless steel nuts and<br />
bolts as opposed to the screws used as the industry standard. Their<br />
superior craftsmanship ensures a lifetime of solid construction.<br />
All GeoComfort units come equipped with an oversized copper<br />
or cupro-nickel rifled coaxial water heat exchanger for increased<br />
surface area, providing significantly higher efficiencies than required<br />
by ENERGY STAR® or ASHRAE (American Society of Heating,<br />
Refrigeration, and Air-Conditioning Engineers) standard 90.1.<br />
All GeoComfort units have coated air coils which prevent corrosion<br />
for long life and reliability.<br />
A Hybrid heating system is possible with GeoComfort split systems.<br />
In combination with a new or existing natural gas/oil/propane<br />
furnace, the split system will provide all of the air conditioning for<br />
the home, as well as 80-90% of the heating requirements. The<br />
system switches over to the furnace in extreme cold temperatures<br />
for the remaining 10-20% of the time, providing optimum comfort<br />
and efficiency even for existing homes.<br />
GeoComfort is the only geothermal brand where each and<br />
every heat pump meets the stringent ENERGY STAR® rating<br />
requirements.<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
COMPASS SERIES GXT<br />
VERTICAL MULTI-POSITION, 2-STAGE, R-410A, ECM UNITS<br />
STOCK # MODEL<br />
NOMINAL<br />
CAPACITY DESCRIPTION<br />
C855300 GXT024A11MM1CSS 2 ton<br />
855344 GXT036A11MM1CSS 3 ton With Hot Water<br />
Generator, ECM<br />
855346 GXT048A11MM1CSS 4 ton<br />
Blower, Copper<br />
855348 GXT060A11MM1CSS 5 ton Coax<br />
855350 GXT072A11MM1CSS 6 ton<br />
AIR CONFIGURATIONS<br />
RETURN<br />
VERTICAL<br />
DISCHARGE<br />
Multi-Position Cabinet<br />
Field Convertible to<br />
Downflow, Right or Left<br />
Return<br />
C855400 AXDNFL01A Downflow Kit for 036 Creates Internal Duct<br />
855508 AXDNFL02A Downflow Kit for 048, 060, 072 Creates Internal Duct<br />
NOTES:<br />
1. Voltage for all units is 208/230V,<br />
60Hz, 1 Phase<br />
2. Units shipped with a 1" filter rack/<br />
duct collar and air filter<br />
3. Unit is field convertible to a<br />
downflow configuration, requires<br />
downflow kit. Kits are not<br />
interchangeable – make sure<br />
you order the proper kit for the<br />
size of unit you are covering.<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance (2nd – 5th years, dealer warrants 1st year)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
• 10 Year compressor warranty (parts only years 6-10)<br />
Extended Warranties available<br />
UNIT FEATURES:<br />
• 4 Sizes: 036, 048, 060, 072 (024 Coming Soon)<br />
• Multi-Position Cabinet (Left Return, Right Return, Upflow,<br />
Downflow Convertible)<br />
• Copeland UltraTech® 2-Stage Scroll Compressor<br />
• Factory Supplied 1" Thick Filter Rack<br />
and Merv 8 Pleated Throwaway Filter<br />
• R-410a Zero-Ozone Depletion Refrigerant<br />
• Coated Air Coil<br />
• Composite Antimicrobial Drain Pan<br />
• Rugged Steel Cabinet<br />
• Remote Mounted Controls<br />
• ECM Blower Motor<br />
• Desuperheater with Internal Pump<br />
• Double O-Ring Fittings (Source Side)<br />
• Optional CuproNickel Coax<br />
• Standard 5/5/5 + 10C Warranty<br />
NOTES:<br />
Rated in accordance with AHRI/ISO standard 13256-1, which includes<br />
pump penalties.<br />
Heating capacities based on 68.0°F DB, 59.0°F WB entering air<br />
temperature.<br />
Cooling capacities based on 80.6°F DB, 66.2°F WB entering air<br />
temperature.<br />
Entering water temperatures Full Load: 32°F heating / 77°F cooling.<br />
Entering water temperatures Part Load: 41°F heating / 68°F cooling.<br />
UNIT PERFORMANCE: Two Stage<br />
Ground Loop Heat Pump<br />
MODEL<br />
GXT024<br />
GXT036<br />
GXT048<br />
GXT060<br />
GXT072<br />
HEATING COOLING<br />
CAPACITY BTU/H COP BTU/H EER<br />
Full Load<br />
Part Load<br />
Model Coming Soon<br />
Full Load 28,500 4.1 38,900 18.0<br />
Part Load 22,000 4.8 29,000 28.4<br />
Full Load 42,500 4.0 53,500 17.7<br />
Part Load 33,500 4.7 42,400 25.2<br />
Full Load 50,000 3.8 65,500 17.6<br />
Part Load 39,500 4.3 48,600 23.5<br />
Full Load 60,000 3.9 70,000 15.6<br />
Part Load 50,000 4.3 56,500 20.3<br />
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GEOTHERMAL SYSTEMS<br />
GT MODEL<br />
HORIZONTAL AND VERTICAL, 2-STAGE, R-410A, ECM UNITS<br />
STOCK # MODEL<br />
NOMINAL<br />
CAPACITY DESCRIPTION<br />
Vertical Left Return, Top Discharge<br />
855010 GT024B11LT1CA 2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855012 GT036B11LT1CB 3 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855014 GT048B11LT1CC 4 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855016 GT060B11LT1CD 5 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855018 GT072B11LT1CD 6 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
C855000 GT096B11LT1CE 8 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
C855000 GT120B11LT1CE 10 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
C855000 GT144B11LT1CE 12 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
Horizontal Left Return, End Discharge<br />
855020 GT024B11LE1CA 2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855022 GT036B11LE1CB 3 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855024 GT048B11LE1CC 4 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855026 GT060B11LE1CD 5 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
NOTES:<br />
1. Voltage for all units is 208/230V, 60Hz, 1 Phase.<br />
2. Units shipped with a 1" filter rack/duct collar and air filter.<br />
3. Horizontal units use external auxilary (duct) electric heaters if required.<br />
UNIT PERFORMANCE: Ground Loop Heat Pump<br />
HEATING<br />
COOLING<br />
MODEL CONFIG. CAPACITY BTU/H COP BTU/H EER<br />
Vert/ Full Load 22,200 3.7 29,000 16.0<br />
GT024<br />
Horz Part Load 16,500 4.2 21,500 20.0<br />
GT036<br />
GT048<br />
GT060<br />
GT072<br />
GT096<br />
GT120<br />
GT144<br />
Vert/<br />
Horz<br />
Vert/<br />
Horz<br />
Vert/<br />
Horz<br />
Vert<br />
Vert<br />
Vert<br />
Vert<br />
Full Load 31,400 3.6 39,400 18.0<br />
Part Load 20,900 4.5 26,300 24.0<br />
Full Load 45,600 3.5 57,200 17.6<br />
Part Load 30,300 4.3 37,900 23.8<br />
Full Load 52,200 3.5 65,400 17.4<br />
Part Load 36,500 4.3 45,700 23.6<br />
Full Load 59,700 3.6 72,000 14.1<br />
Part Load 46,600 3.5 57,500 19.2<br />
Full Load 86,200 3.5 97,400 15.1<br />
Part Load 43,100 3.4 48,700 15.0<br />
Full Load 98,900 3.5 125,000 15.1<br />
Part Load 49,400 3.4 62,700 15.0<br />
Full Load 118,200 3.4 148,800 15.1<br />
Part Load 59,100 3.3 74,400 15.0<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance<br />
(Years 2-5; dealer warrants 1st year)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
• 10 Year compressor (Parts only years 6-10)<br />
Optional: 10 Year Parts and Labour Allowance<br />
UNIT FEATURES:<br />
• 8 two-stage vertical sizes: 024, 036, 048, 060,<br />
072, 096, 120, 144 (024-060 also in horizontal)<br />
• Digital controls<br />
• Factory-supplied 1" thick filter rack and MERV 8<br />
pleated throwaway filter<br />
• Coated air coils for extended life<br />
• PSC or ECM motor (belt drive for 096-144)<br />
• Corrosion-proof, stainless steel, drain pan<br />
• Copper coaxial water heat exchanger<br />
• High efficiency Copeland UltraTech®<br />
two-stage scroll compressor<br />
• Desuperheater standard<br />
• Standard 5/5/5 + 10C limited warranty<br />
(optional extended warranty)<br />
NOTES:<br />
Rated in accordance with ISO Standard 13256-1 which includes Pump Penalties.<br />
Heating capacities based on 68.0°F DB, 59.0°F WB entering air temperature.<br />
Cooling capacities based on 80.6°F DB, 66.2°F WB entering air temperature.<br />
Entering water temperatures: 32°F heating / 77°F cooling.<br />
Models 096, 120, 144 are not ENERGY STAR® qualified.<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
GT MODEL (cont’d)<br />
VERTICAL, 2-STAGE, COMBINATION, R-410A, ECM UNITS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
DESCRIPTION<br />
Vertical Left Return, Top Discharge<br />
855114 GT036A13LT1CB 3 ton Hydronic Heating, Hot Water Generator, Copper Coax<br />
855116 GT048A13LT1CC 4 ton Hydronic Heating, Hot Water Generator, Copper Coax<br />
855118 GT060A13LT1CD 5 ton Hydronic Heating, Hot Water Generator, Copper Coax<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
• 10 Year compressor<br />
Optional: 10 Year Parts and Labour Allowance<br />
NOTES:<br />
1. 6-ton combination unit (GS072) is a single stage<br />
2. Voltage for all units is 208/230V, 60Hz, 1 Phase<br />
2. Units shipped with a 1" filter rack / duct collar and air filter<br />
3. Available with: a) Left or Right Return<br />
b) Top or Bottom Vertical Discharge<br />
UNIT FEATURES:<br />
• 3 Sizes: 036, 048, 060<br />
• Digital controls<br />
• Hydronic heating function<br />
• Factory supplied 1" thick filter rack and MERV 8 pleated throwaway filter<br />
• Coated air coils for extended life<br />
• ECM blower motors<br />
• Corrosion-proof, stainless steel, drain pan<br />
• Copper or Cupro-Nickle coaxial water heat<br />
exchanger [source side] / Copper [load side]<br />
• High efficiency Copeland UltraTech scroll compressor<br />
• Desuperheater standard<br />
• Standard 5/5/5 + 10C limited warranty (optional extended warranty)<br />
UNIT PERFORMANCE: Forced Air Operation<br />
Ground Loop Heat Pump<br />
HEATING COOLING WATER HEATING<br />
MODEL<br />
GT036<br />
GT048<br />
GT060<br />
CAPACITY BTU/H COP BTU/H EER BTU/H COP<br />
Full Load 31,400 3.6 39,400 18.0 35,000 3.4<br />
Part Load 20,900 4.5 26,300 24.0 N/A<br />
Full Load 45,600 3.5 57,200 17.6 48,000 3.6<br />
Part Load 30,300 4.3 37,900 23.8 N/A<br />
Full Load 52,200 3.5 65,400 17.4 50,000 3.5<br />
Part Load 36,500 4.3 45,700 23.6 N/A<br />
NOTES:<br />
Rated in accordance with ISO Standard 13256-1 which includes Pump Penalties.<br />
Heating capacities based on 68.0°F DB, 59.0°F WB entering air temperature.<br />
Cooling capacities based on 80.6°F DB, 66.2°F WB entering air temperature.<br />
Entering water temperatures Full Load: 32°F heating / 77°F cooling.<br />
Entering water temperatures Part Load: 41°F heating / 68°F cooling.<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
GS MODEL<br />
HORIZONTAL AND VERTICAL, SINGLE STAGE, R-410A, ECM UNITS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
DESCRIPTION<br />
Vertical Left Return, Top Discharge<br />
855028 GS018B11LT1CA 1-1/2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855030 GS024B11LT1CA 2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855032 GS030B11LT1CB 2-1/2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855034 GS036B11LT1CD 3 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855036 GS042B11LT1CC 3-1/2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855038 GS048B11LT1CC 4 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855040 GS060B11LT1CD 5 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
Horizontal Left Return, End Discharge<br />
855044 GS018B11LE1CA 1-1/2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855046 GS024B11LE1CA 2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855048 GS030B11LE1CB 2-1/2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855050 GS036B11LE1CB 3 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855052 GS042B11LE1CC 3-1/2 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855054 GS048B11LE1CC 4 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
855056 GS060B11LE1CD 5 ton With Hot Water Generator, ECM Blower, Copper Coax<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance (Years 2-5; dealer warrants 1st year)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
• 10 Year compressor (Parts only years 6-10)<br />
Optional: 10 Year Parts and Labour Allowance<br />
UNIT FEATURES:<br />
• 7 Single speed vertical/horizontal sizes:<br />
018, 024, 030, 036, 042, 048, 060<br />
• Digital controls<br />
• Factory supplied 1" thick filter rack and<br />
MERV 8 pleated throw-away filter<br />
• Coated air coils for extended life<br />
• PSC or ECM motor (belt drive for 096-144)<br />
• Corrosion-proof, stainless steel, drain pan<br />
• Copper coaxial water heat exchanger<br />
• High efficiency Copeland scroll compressor<br />
• Desuperheater standard<br />
• Standard 5/5/5 + 10C limited warranty<br />
(optional extended warranty)<br />
NOTES:<br />
1. Voltage for all units is 208/230V, 60Hz, 1 Phase<br />
2. Units shipped with a 1" filter rack / duct collar and air filter<br />
3. Horizontal Units use external auxiliary (duct) electric heaters if required.<br />
UNIT PERFORMANCE: Ground Loop Heat Pump<br />
HEATING<br />
COOLING<br />
MODEL CONFIG. CAPACITY BTU/H COP BTU/H EER<br />
GT018 Vert/Horz Nominal 14,100 3.7 17,600 18.9<br />
GT024 Vert/Horz Nominal 21,100 3.7 26,400 18.0<br />
GT030 Vert/Horz Nominal 27,200 3.7 34,100 18.5<br />
GT036 Vert/Horz Nominal 31,600 3.4 39,600 16.4<br />
GT042 Vert/Horz Nominal 36,900 3.6 46,200 18.0<br />
GT048 Vert/Horz Nominal 44,500 3.5 56,100 17.8<br />
GT060 Vert/Horz Nominal 50,200 3.5 62,700 16.2<br />
NOTES:<br />
Rated in accordance with ISO Standard 13256-1 which includes Pump Penalties.<br />
Heating capacities based on 68.0°F DB, 59.0°F WB entering air temperature.<br />
Cooling capacities based on 80.6°F DB, 66.2°F WB entering air temperature.<br />
Entering water temperatures: 32°F heating / 77°F cooling.<br />
Model 036 does not qualify for GLHP ENERGY STAR®.<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
GTC MODEL SPLIT UNITS<br />
2-STAGE, R-410A, COMPRESSOR SECTION UNITS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
DESCRIPTION<br />
Left Return, Top Discharge<br />
855212 GTC024B11CA 2 ton With Hot Water Generator, Copper Coax<br />
855214 GTC036B11CB 3 ton With Hot Water Generator, Copper Coax<br />
855216 GTC048B11CC 4 ton With Hot Water Generator, Copper Coax<br />
855218 GTC060B11CD 5 ton With Hot Water Generator, Copper Coax<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance (Years 2-5; dealer warrants 1st year)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
• 10 Year compressor (Parts only years 6-10)<br />
Optional: 10 Year Parts and Labour Allowance<br />
UNIT FEATURES:<br />
• 4 Sizes: 024, 036, 048, 060<br />
• Optional matched multi-position air handlers<br />
• Digital controls<br />
• Copper coaxial water heat exchanger<br />
• High efficiency Copeland UltraTech® or single-stage scroll compressor<br />
• Desuperheater standard<br />
• Standard 5/5/5 + 10C limited warranty<br />
(optional extended warranty)<br />
UNIT PERFORMANCE: Ground Loop Heat Pump<br />
NOTES:<br />
1. Voltage for all units is 208/230V, 60Hz, 1 Phase<br />
Please Note: Matches with MPD Air Handlers<br />
(page 12) and ACD Coils (page 13).<br />
HEATING<br />
COOLING<br />
MODEL<br />
GTC024<br />
GTC036<br />
GTC048<br />
GTC060<br />
CAPACITY BTU/H COP BTU/H EER<br />
Full Load 21,000 3.5 27,500 15.1<br />
Part Load 15,500 4.0 20,300 19.1<br />
Full Load 29,800 3.4 37,400 17.1<br />
Part Load 19,800 4.3 24,900 22.8<br />
Full Load 43,300 3.3 54,300 16.7<br />
Part Load 28,700 4.1 36,000 22.6<br />
Full Load 49,500 3.3 62,100 16.5<br />
Part Load 34,600 4.1 43,400 22.4<br />
NOTES:<br />
Rated in accordance with ISO Standard 13256-1 which includes Pump Penalties.<br />
Heating capacities based on 68.0°F DB, 59.0°F WB entering air temperature.<br />
Cooling capacities based on 80.6°F DB, 66.2°F WB entering air temperature.<br />
Entering water temperatures Full Load: 32°F heating / 77°F cooling.<br />
Entering water temperatures Part Load: 41°F heating / 68°F cooling.<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
COMPASS SERIES GWT MODEL<br />
2-STAGE, R-410A, WATER-TO-WATER UNITS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
855352 GWT026A11AAACSS 2 ton<br />
855354 GWT034A11AAACSS 3 ton<br />
855356 GWT046A11AAACSS 4 ton<br />
855358 GWT058A11AAACSS 5 ton<br />
855322 GWT070A11AAACSS 6 ton<br />
855360 GWT092A11AAACSS 8 ton<br />
C855300 GWT120A11MACSS 10 ton<br />
C855300 GWT144A11MACSS 12 ton<br />
DESCRIPTION<br />
With Hot Water Generator,<br />
Copper Coax<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance<br />
(Years 2-5; dealer warrants 1st year)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
• 10 Year compressor (Parts only years 6-10)<br />
Optional: 10 Year Parts and Labour Allowance,<br />
dealer warrants 1st year labour.<br />
NOTES:<br />
1. Voltage for all units is 208/230V, 60Hz, 1 Phase<br />
UNIT FEATURES:<br />
• 8 Sizes: 026, 034, 046, 058, 070, 092, 120, 144<br />
(models 092-144 have two compressors)<br />
• Optional hydronic air handler and “A” coils<br />
• Digital controls<br />
• Copper or Cupro-Nickle coaxial water heat exchanger<br />
[source side] / Copper [load side]<br />
• High efficiency Copeland UltraTech® scroll compressor<br />
(2 UltraTech on size 92; 2 single speed scrolls on 120<br />
and 144)<br />
• Desuperheater standard<br />
• Rugged steel cabinet<br />
• Source side double O-ring fittings (Sizes 026-070)<br />
• Radiant floor ready<br />
• Standard 5/5/5 + 10C limited warranty<br />
(optional extended warranty)<br />
Please Note: Matches with MPH Air Handlers<br />
(page 10) and ACH Coils (page 13).<br />
UNIT PERFORMANCE: Single and Dual<br />
Compressor Units Ground Loop Heat Pump<br />
GROUND LOOP HEAT PUMP<br />
COOLING<br />
HEATING<br />
MODEL CAPACITY BTU/H EER BTU/H COP<br />
WATER-TO-WATER MODELS – SINGLE COMPRESSOR<br />
026<br />
Part Load 18,200 17.7 16,200 3.1<br />
Full Load 23,100 14.3 26,400 3.1<br />
034<br />
Part Load 26,400 17.9 25,500 3.0<br />
Full Load 36,200 14.6 33,100 3.0<br />
046<br />
Part Load 36,700 17.4 37,300 3.1<br />
Full Load 47,900 14.2 46,400 3.0<br />
058<br />
Part Load 40,500 19.7 37,200 3.1<br />
Full Load 52,700 15.4 45,700 3.4<br />
070<br />
Part Load 49,900 18.4 44,800 3.0<br />
Full Load 64,500 15.0 55,900 3.0<br />
WATER-TO-WATER MODELS – DUAL COMPRESSOR<br />
092<br />
Part Load 73,400 17.4 73,600 3.1<br />
Full Load 95,800 14.2 90,200 2.9<br />
120 Nominal 108,200 17.0 100,000 3.0<br />
144 Nominal 128,000 14.7 122,800 2.6<br />
NOTES:<br />
Rated in accordance with ISO Standard 13256-2 which includes Pump<br />
Penalties.<br />
Heating capacities based on 32°F EST and 104°F ELT.<br />
Cooling capacities based on 77°F EST and 53.6°F ELT.<br />
Entering load temperature over 120°F heating and under 45°F Cooling is<br />
not permissible.<br />
Floor heating is most generally designed for 85°F entering load<br />
temperature.<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
MPH SERIES<br />
HYDRONIC MULTI-POSITION AIR HANDLERS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
DESCRIPTION<br />
855264 MPH024A9MM1SG 2 ton Multi-Position* Hydronic Air Handler<br />
855266 MPH036A9MM1SG 3 ton with ECM Blower<br />
(115/1/60, Voltage Code 9)<br />
855268 MPH048A9MM1SG 4 ton<br />
(Use AXH Auxiliary Duct Heater for 115V<br />
855270 MPH060A9MM1SG 5 ton MPH. See next page)<br />
855272 MPH024A1MM1SG 2 ton Multi-Position* Hydronic Air Handler<br />
855274 MPH036A1MM1SG 3 ton with ECM Blower<br />
(208-230/1/60, Voltage Code 1)<br />
855276 MPH048A1MM1SG 4 ton<br />
(Use AHM Internal Auxiliary Heater for<br />
855278 MPH060A1MM1SG 5 ton 208-230V MPH. See below)<br />
NOTES:<br />
*Multi-Position is upflow/downflow/horizontal. Downflow kit not required for MPH units.<br />
AIR CONFIGURATIONS<br />
RETURN DISCHARGE<br />
Multi-Position*<br />
Multi-Position*<br />
ELECTRIC HEATERS FOR 208/230V, 1 PH MPH AIR HANDLERS ONLY<br />
STOCK # MODEL DESCRIPTION<br />
855421 AHM101S 10kW Internal Electric Heater (MPH024)<br />
855423 AHM101M 10kW Internal Electric Heater (MPH036)<br />
855425 AHM101L 10kW Internal Electric Heater (MPH048 – 060)<br />
855427 AHM151L 15kW Internal Electric Heater (MPH048 – 060)<br />
855429 AHM201L 20kW Internal Electric Heater (MPH048 – 060)<br />
NOTES:<br />
These units are for use on<br />
208-230/1/60 MPH only.<br />
For 115/1/60 use AXH Duct Heater.<br />
See next page.<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance<br />
(Years 2-5; dealer warrants 1st<br />
year)<br />
• 5 Year parts<br />
• 5 Year Air Coil<br />
Extended Warranties available<br />
UNIT FEATURES:<br />
• Multi-position air pattern<br />
– Ships in upflow configuration<br />
– Field convertible to downflow and horizontal<br />
configuration<br />
• Variable speed GE® ECM fan motor with multiple speed taps<br />
• Single coil for both chilled water and hot water<br />
• Designed for 100°F to 120°F water in heating operation<br />
• Optimized for use with GeoComfort water-to-water heat pumps<br />
• Corrosion-proof plastic drain pan with primary and secondary drain connections<br />
• Oversized copper tube/aluminum fin “A” coil for maximum efficiency<br />
• Copper sweat water connections<br />
• Narrow width (22" maximum) for small closet installations<br />
• Slide-out blower assembly<br />
• Optional downflow kit<br />
Please Note: Matches with GWT units (page 9).<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
MPH SERIES (cont’d)<br />
ELECTRIC (DUCT) HEATERS FOR USE WITH 115V MPH HYDRONIC AIR HANDLERS ONLY<br />
STOCK # MODEL DESCRIPTION SIZE FOR USE WITH<br />
C855400 AXHS051A 5kW, 1-stage, Small<br />
1.5, 2.0 TON<br />
240/1/60 (12" × 14" duct)<br />
C855400 AXHS101A 10kW, 2-stage,<br />
240/1/60<br />
C855400 AXHM101A 10kW, 2-stage,<br />
240/1/60<br />
C855400 AXHM151A 15kW, 2-stage,<br />
240/1/60<br />
C855400 AXHL151A 15kW, 2-stage,<br />
240/1/60<br />
C855400 AXHL201A 20kW, 2-stage,<br />
240/1/60<br />
C855400 AXHX151A 15kW, 2-stage,<br />
240/1/60<br />
C855400 AXHX201A 20kW, 2-stage,<br />
240/1/60<br />
Small<br />
(12" × 14" duct)<br />
Medium<br />
(14" × 16" duct)<br />
Medium<br />
(14" × 16" duct)<br />
Large<br />
(16" × 16" duct)<br />
Large<br />
(16" × 16" duct)<br />
Extra Large<br />
(20" × 24" duct)<br />
Extra Large<br />
(20" × 24" duct)<br />
2.0 TON<br />
2.5, 3.0 TON<br />
2.5, 3.0 TON<br />
3.5 thru 6.0 TON<br />
3.5 thru 6.0 TON<br />
8, 10, 12 TON<br />
8, 10, 12 TON<br />
UNIT FEATURES:<br />
• Grounding Lugs<br />
• Left Hand Offset Control Box<br />
• Automatic limit switch for primary over temperature<br />
protection<br />
• <strong>Manual</strong> reset limit switch for secondary over temperature<br />
protection<br />
• Removable hinged access door with latch<br />
• Internal fusing where required by NEC and UL<br />
• UL and CSA Listed<br />
NOTE:<br />
On the 115V MPH hydronic air handlers, a<br />
separate 240/60/1 circuit must be furnished for<br />
the duct heater. 24V control wiring must come<br />
directly from the thermostat to the duct heater.<br />
FILTER RACKS<br />
STOCK # MODEL DESCRIPTION<br />
855441 AMPFILTERS Small Filter Rack (MPH024)<br />
855443 AMPFILTERM Medium Filter Rack (MPH036)<br />
855445 AMPFILTERL Large Filter Rack (MPH042 – 060)<br />
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GEOTHERMAL SYSTEMS<br />
MPD SERIES<br />
DX R-410A MULT-POSITION AIR HANDLERS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
855254 MPD024A1MM1SG 1.5 to 2 ton<br />
855256 MPD036A1MM1SG 2.5 to 3 ton<br />
855258 MPD042A1MM1SG 3.5 ton<br />
855260 MPD048A1MM1SG 4 ton<br />
855262 MPD060A1MM1SG 5 to 6 ton<br />
DESCRIPTION<br />
Multi-Position* Air<br />
Handler with ECM<br />
Blower and TXV<br />
AIR CONFIGURATIONS<br />
RETURN DISCHARGE<br />
Multi-Position*<br />
AIR HANDLER CROSS-MATCH GUIDE AND DIMENSIONS<br />
COMPRESSOR<br />
SECTION<br />
MPD AIR<br />
HANDLER HEIGHT (") WIDTH (") DEPTH (")<br />
Sizes 024 MPD024 43.00 17.63 21.00<br />
Sizes 036 MPD036 48.25 21.13 21.00<br />
Sizes 048 MPD048 58.75 25.00 22.00<br />
Sizes 060 MPD060 58.75 25.00 22.00<br />
ELECTRIC HEATERS FOR DX MPD AIR HANDLERS (208/230V, 1PH)<br />
STOCK # MODEL DESCRIPTION<br />
855421 AHM101S 10kW Internal Electric Heater (MPD024)<br />
855423 AHM101M 10kW Internal Electric Heater (MPD036)<br />
855425 AHM101L 10kW Internal Electric Heater (MPD042 – 060)<br />
855427 AHM151L 15kW Internal Electric Heater (MPD042 – 060)<br />
855429 AHM201L 20kW Internal Electric Heater (MPD042 – 060)<br />
FILTER RACKS<br />
STOCK # MODEL DESCRIPTION<br />
855441 AMPFILTERS Small Filter Rack (MPD024)<br />
855443 AMPFILTERM Medium Filter Rack (MPD036)<br />
855445 AMPFILTERL Large Filter Rack (MPD042 – 060)<br />
DOWNFLOW KITS<br />
STOCK # MODEL DESCRIPTION<br />
855447 AMPDNWFLWS Small Downflow Kit (MPD024)<br />
855449 AMPDNWFLWM Medium Downflow Kit (MPD036)<br />
855451 AMPDNWFLWL Large Downflow Kit (MPD042 – 060)<br />
NOTES:<br />
1. Voltage for MPD units is 208/230V, 60Hz, 1 Phase<br />
*Multi-Position is upflow/downflow/horizontal.<br />
A downflow kit is required for downflow installation.<br />
UNIT FEATURES:<br />
• AHRI match for GeoComfort split systems<br />
• Multi-position air pattern<br />
– Ships in upflow configuration<br />
– Field convertible to downflow and horizontal<br />
configuration (downflow kit required for<br />
downflow operation)<br />
• Variable speed GE® ECM fan motor with<br />
multiple speed taps<br />
• Factory-installed R-410A TXV<br />
• Corrosion-proof plastic drain pan with<br />
primary and secondary drain connections<br />
• Oversized copper tube/aluminum fin “A”<br />
coil for maximum efficiency<br />
• Sweat refrigerant line set connections<br />
• Narrow width (22" maximum) for small closet<br />
installations<br />
• Slide-out blower assembly<br />
• Optional downflow kit<br />
• Optional field-installed internal electric heat with<br />
circuit breakers<br />
• Optional filter rack with standard size 1" filters<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance<br />
(Years 2-5; dealer warrants 1st year.)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit<br />
(Air Coil and TXV for DX Systems)<br />
Extended Warranties available<br />
Please Note: Matches with GTC split units (page 8).<br />
04/11<br />
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GEOTHERMAL SYSTEMS<br />
AC SERIES<br />
UNCASED “A” COILS<br />
STOCK #<br />
MODEL<br />
NOMINAL<br />
CAPACITY<br />
DESCRIPTION<br />
855290 ACD024ASG 1-1/2 to 2 ton<br />
855292 ACD036ASG 2-1/2 to 3 ton<br />
855294 ACD048ASG 3-1/2 to 4 ton<br />
855296 ACD060ASG 5 ton<br />
DX R-410A “A”<br />
Coil and TXV<br />
855390 ACH024ASG 2 ton<br />
855392 ACH036ASG 3 ton<br />
855394 ACH048ASG 4 ton<br />
855396 ACH060ASG 5 ton<br />
Hydronic “A” Coil<br />
ACD<br />
Please Note: Matches with<br />
GTC split units (page 8).<br />
ACH<br />
Please Note: Matches with<br />
GWT units (page 9).<br />
“A” COIL CROSS-MATCH GUIDE<br />
COMPRESSOR SECTION<br />
Sizes 024<br />
Sizes 036<br />
Sizes 048<br />
Sizes 060<br />
AC SERIES "A" COIL<br />
ACD024<br />
ACD036<br />
ACD048<br />
ACD060<br />
AC SERIES DX “A” COILS<br />
UNIT FEATURES:<br />
• AHRI match for GeoComfort split systems<br />
• Uncased design for maximum flexibility, especially on retrofit<br />
applications<br />
• Factory-installed R-410A TXV<br />
• Corrosion-proof plastic drain pan with primary and<br />
secondary drain connections<br />
• Oversized copper tube/aluminum fin “A” coil for<br />
maximum efficiency<br />
• Sweat refrigerant line set connections<br />
WARRANTY: STANDARD<br />
• 5 Year labour allowance<br />
(Years 2-5; dealer warrants 1st year.)<br />
• 5 Year parts<br />
• 5 Year refrigerant circuit (Air Coil and TXV for DX<br />
Systems; Air Coil for Hydronic Systems)<br />
Extended Warranties available<br />
AC SERIES HYDRONIC “A” COILS<br />
UNIT FEATURES:<br />
• Single coil for both chilled water and hot water<br />
• Designed for 100°F to 120°F water in heating operation<br />
• Optimized for use with GeoComfort water-to-water heat<br />
pumps<br />
• Corrosion-proof plastic drain pan with primary and<br />
secondary drain connections<br />
• Copper sweat water connections<br />
04/11<br />
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WATER HEATER<br />
ECO-HYBRID HEAT PUMP HOT WATER HEATER<br />
INTRODUCING THE MOST ENERGY EFFICIENT HOT WATER TANK DESIGN IN EXISTENCE!<br />
The revolutionary design of the hybrid hot water tank absorbs energy in the air surrounding the tank, concentrates the energy,<br />
and injects the heat into the water stored in the tank – instead of expelling it outdoors.<br />
This water heating system is far more energy efficient because most of the energy comes from the vapour compression cycle<br />
as opposed to the heat produced by the electric elements. If a backup or extra performance is needed, the unit has two electric<br />
heating elements that will turn on automatically as they are required.<br />
FEATURES<br />
• <strong>Energy</strong> Efficient: 2.2 EF – Over TWICE the efficiency of standard electrical water heaters<br />
• Typical Payback from 2-5 years (Dependant on kWh rates and water usage)<br />
• Noise Level: 48dB(A) – The quietest Heat Pump Water Heater in the industry<br />
• First Hour Rating: 63 Gallons<br />
• 2-1/2" Non-CFC Foam Insulation<br />
• Built-in Freeze/Overheat Factory Protection<br />
• Two 4,000 watt electrical element back-ups<br />
• 3 Operation Modes: Auto, Economy and Electric<br />
• Heat Pump Operating Range – 5°C to 49°C<br />
• Easy Installation – Single trade installation. Full replacement for 50 gallon conventional electric water<br />
heater with similar footprint. Use existing hookup. Identical plumbing connections. Easy to add a<br />
condensate drain.<br />
• Easy access, top mounted washable air filter with automatic monitor<br />
• Discharge air can be ducted up to 15 feet<br />
SPECIFICATIONS<br />
COMBO TYPE 19L (60 HZ) — MODEL # WH50GM<br />
Unit Capacity<br />
50 gallons<br />
Voltage/Frequency Single Phase 220-240V/60 Hz<br />
Circuit breaker<br />
A<br />
Electrical consumption<br />
(upper and lower element)<br />
4,000 watts each<br />
First hour rating<br />
63 gallons<br />
<strong>Energy</strong> factor<br />
2.2 hybrid mode<br />
Refrigerant type<br />
R134a<br />
Refrigerant filling weight 0.80 Kg<br />
Compressor brand Embraco (Model # FFC110HBX)<br />
Sound level<br />
48 dB(A)<br />
Air flow<br />
370/280/220 m 3 h<br />
Ambient temperature -5°F – 120°F<br />
Water temperature 100°F – 140°F (120°F factory default)<br />
Unit dimensions<br />
64.57" (164 cm) H × 22.36" (56.80 cm) Ø<br />
Packing<br />
25" (63.5 cm) W × 68.5" (174 cm) H<br />
× 27.17" (69 cm) D<br />
Net weight<br />
209 lbs (95 kg)<br />
Gross weight<br />
242 lbs (110 kg)<br />
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WATER HEATER<br />
ECO-HYBRID HEAT PUMP HOT WATER HEATER (cont’d)<br />
INTELLIGENT CONTROL SYSTEM<br />
• Takes the guesswork out of hot water settings – precise water temperature can be set with the digital monitoring system.<br />
• Timer function can be set to lower water temperature at night, while on vacation, or any time when hot water is not used –<br />
saving even more money.<br />
• Includes built-in safety features such as overheated water warning indicators.<br />
• Program safety lock feature prevents accidental changes to the temperature settings or other program features.<br />
• Heat Pump Mode – Used for best efficiency<br />
Hybrid Mode – Very efficient with quicker recovery<br />
Electric Mode – Used as a backup should service be needed<br />
1) Peak load shifting mode 1<br />
2) Peak load shifting mode<br />
3) High temperature setting<br />
4) Lock icon<br />
5) Alarm icon<br />
6) Vacation or Away*<br />
7) Auto mode icon<br />
8) Economy mode icon<br />
9) Electric mode icon<br />
10) Water temperature mode icon<br />
11) Parameter icon<br />
*For use during times of no water usage, such as a vacation. System will drop the temperature set-point to 50°F to save energy, then will<br />
automatically heat water up to previous set temperature upon return.<br />
BENEFITS<br />
CONTRACTORS<br />
Can be installed practically anywhere.* Full replacement for a 50 gallon electric water heater with similar footprint and the same<br />
plumbing and electrical connections.<br />
*If room is less than 10' × 10' × 7' (700 cf), there must be a louvered door or transfer grilles.<br />
BUILDERS<br />
The GREEN HYBRID Heat Pump Water Heater has some great benefits for builders. It is much more energy efficient than<br />
standard heaters and has a classy look. With its easy-to-use LCD control and extra benefits, it is attractive to savvy consumers.<br />
STOCK # MODEL DESCRIPTION<br />
827012 WH50GM Eco-Hybrid Heater Pump Water Heater – 50 gal<br />
04/11<br />
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PIPING<br />
GEO-BLACK HI DENSITY POLYETHYLENE PIPE<br />
One of the only Canadian Manufacturers to have their pipe certified to CSA Standard C448: Design and Installation of Earth<br />
<strong>Energy</strong> Systems for Commercial and Institutional Buildings!!<br />
GEO-Black polyethylene pipe is intended and recommended for use as the buried heat exchanger and transfer piping in open<br />
or closed loop ground source heat pump applications and is ideally suited for geothermal systems throughout North America.<br />
It is manufactured from PE4710 high-density polyethylene resins meeting the cell classification 445574C per ASTM D3350 and<br />
exceeds the more stringent 5000 HR ESCR Test required for this application. It is tough yet flexible and also contains carbon<br />
black as a UV inhibitor and can be stored outside.<br />
For additional product information see the Material Specification Sheet for GEO-Black in the Engineering Data (pages 63 and 64).<br />
STOCK # MODEL DESCRIPTION<br />
Coiled Pipe<br />
852430 PE4710 3/4" × 200'<br />
852434 PE4710 3/4" × 600'<br />
852435 PE4710 3/4" × 800'<br />
852412 PE4710 1" × 300'<br />
852440 PE4710 1-1/4" × 100'<br />
852438 PE4710 1-1/4" × 300'<br />
852426 PE4710 2" × 100'<br />
852427 PE4710 2" × 200'<br />
852437 PE4710 2" × 250'<br />
852428 PE4710 2" × 300'<br />
852443 PE4710 2" × 500'<br />
Straight Pipe<br />
C852400 HDPE 3/4" × 20'<br />
852429 HDPE 1" × 20'<br />
852444 HDPE 1-1/4" × 20'<br />
852445 HDPE 2" × 20'<br />
NOTE:<br />
Custom sizes available upon request.<br />
Warranty: 50 year limited.<br />
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PIPING<br />
UNI-COIL MANUFACTURED<br />
VERTICAL LOOP COILS<br />
Vanguard’s specially designed U-bend is factory assembled,<br />
ensuring consistency and quality while reducing installation<br />
costs for the busy contractor. The 3/4" UNI-coil is only<br />
2-1/2" across at the bend and the 1" UNI-coil is only<br />
3" across, allowing for smaller, tighter boreholes thus<br />
reducing installation costs.<br />
STOCK # MODEL DESCRIPTION<br />
852446 UNICOIL 3/4" × 350'<br />
852447 UNICOIL 3/4" × 410'<br />
852448 UNICOIL 3/4" × 510'<br />
852416 UNICOIL 1" × 310'<br />
852449 UNICOIL 1" × 410'<br />
852421 UNICOIL 1" × 510'<br />
852441 UNICOIL 1" × 610'<br />
U-BEND ASSEMBLY —<br />
ULTRA-SLIM<br />
Vanguard’s specially designed U-bend is factory assembled<br />
for consistency and quality and is able to fit down the tightest<br />
boreholes. The 3/4" ultra slim U-Bend is only 2-1/4" across at<br />
the bend and the 1" ultra slim U-Bend is only 3" across and the<br />
1-1/4" ultra slim U-Bend is only 4.8" across the bend, allowing<br />
for smaller, tighter boreholes thus reducing installation costs<br />
while increasing thermal conductivity.<br />
STOCK # MODEL DESCRIPTION<br />
852780 YFUB4N 3/4" Narrow – less fusion couplings<br />
852782 YFUB4NC 3/4" Narrow – with fusion couplings<br />
C853600 YFUB5N 1" Narrow – less fusion couplings<br />
852672 YFUB5NC 1" Narrow – with fusion couplings<br />
C853600 YFUB6 1-1/4" – less fusion couplings<br />
C853600 YFUB6C 1-1/4" – with fusion couplings<br />
NOTE:<br />
Custom lengths and larger diameters available upon request.<br />
Warranty: 50 year limited.<br />
04/11<br />
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FUSION FITTINGS<br />
FUSION FITTINGS<br />
At <strong>ECCO</strong> <strong>Supply</strong>, we stock a full line of socket fusion fittings ranging in size from 3/4" to 2".<br />
All fittings are manufactured from PE4710 and made to fit the standard pipe size of SDR-11.<br />
END CAPS – FUSION<br />
STOCK # MODEL DESCRIPTION<br />
852484 YFPCP4 3/4"<br />
852485 YFPCP5 1"<br />
852486 YFPCP6 1-1/4"<br />
C853600 YFPCP7 1-1/2"<br />
852510 YFPCP8 2"<br />
MALE ADAPTERS – FUSION × MPT<br />
STOCK # MODEL DESCRIPTION<br />
852473 SPMA44 3/4" × 3/4"<br />
852612 SPMA45 3/4" × 1"<br />
852471 SPMA55 1" × 1"<br />
C853600 SPMA64 1-1/4" × 3/4"<br />
852472 SPMA65 1-1/4" × 1"<br />
852569 SPMA66 1-1/4" × 1 1/4"<br />
C853600 SPMA67 1-1/4" × 1 1/2"<br />
C853600 SPMA68 1-1/4" × 2"<br />
852668 SPMA77 1-1/2" × 1-1/2"<br />
852514 SPMA88 2" × 2"<br />
COUPLINGS – FUSION × FUSION<br />
STOCK # MODEL DESCRIPTION<br />
852474 YFPC44 3/4" × 3/4"<br />
852491 YFPC54 1" × 3/4"<br />
852475 YFPC55 1" × 1"<br />
852488 YFPC64 1-1/4"× 3/4"<br />
852489 YFPC65 1-1/4" × 1"<br />
852476 YFPC66 1-1/4" × 1-1/4"<br />
852590 YFPC75 1-1/2" × 1"<br />
852477 YFPC76 1-1/2" × 1-1/4"<br />
852578 YFPC77 1-1/2" × 1-1/2"<br />
C853600 YFPC85 2" × 1"<br />
852552 YFPC86 2" × 1-1/4"<br />
852586 YFPC88 2" × 2"<br />
TEES – FUSION × FUSION × FUSION<br />
STOCK # MODEL DESCRIPTION<br />
852482 YFPT444 3/4" × 3/4" × 3/4"<br />
852572 YFPT554 1" × 1" × 3/4"<br />
852483 YFPT555 1" × 1" × 1"<br />
852490 YFPT644 1-1/4" × 3/4" × 3/4"<br />
852566 YFPT655 1-1/4" × 1" × 1"<br />
852562 YFPT665 1-1/4" × 1-1/4" × 1"<br />
852494 YFPT664 1-1/4" × 1-1/4" × 3/4"<br />
852563 YFPT666 1-1/4" × 1-1/4" × 1-1/4"<br />
852615 YFPT777 1-1/2" × 1-1/2" × 1-1/2"<br />
852583 YFPT866 2" × 1-1/4" × 1-1/4"<br />
852600 YFPT884 2" × 2" × 3/4"<br />
852584 YFPT885 2" × 2" × 1"<br />
852582 YFPT886 2" × 2" × 1-1/4"<br />
852585 YFPT888 2" × 2" × 2"<br />
828748 SPT444 3/4" × 3/4" × 3/4"<br />
828750 SPT555 1" × 1" × 1"<br />
828752 SPT666 1-1/4" × 1-1/4" × 1-1/4"<br />
828754 SPT664 1-1/4" × 3/4" × 1-1/4"<br />
828756 SPT665 1-1/4" × 1" × 1-1/4"<br />
828758 SPT644 1-1/4" × 3/4" × 3/4"<br />
828760 SPT655 1-1/4" × 1" × 1"<br />
90° ELBOWS – FUSION × FUSION<br />
STOCK # MODEL DESCRIPTION<br />
852478 YFPE44 3/4" × 3/4"<br />
C853600 YFPE54 1" × 3/4"<br />
852479 YFPE55 1" × 1"<br />
852492 YFPE64 1-1/4" × 3/4"<br />
C853600 YFPE65 1-1/4" × 1"<br />
852480 YFPE66 1-1/4" × 1-1/4"<br />
C853600 YFPE86 2" × 1-1/4"<br />
852550 YFPE88 2" × 2"<br />
828742 SPE44 3/4" × 3/4"<br />
828744 SPE55 1" × 1"<br />
828746 SPE66 1-1/4" × 1-1/4"<br />
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FUSION FITTINGS<br />
FUSION FITTINGS (cont’d)<br />
45° ELBOWS – FUSION × FUSION<br />
STOCK # MODEL DESCRIPTION<br />
852544 3141 1" × 1"<br />
852546 3141-1-125 1-1/2" × 1"<br />
852548 3141-1-2 1" × 2"<br />
COUPLINGS – FUSION × FUSION<br />
STOCK # MODEL DESCRIPTION<br />
828730 SPC44 3/4" × 3/4"<br />
828732 SPC55 1" × 1"<br />
828734 SPC66 1-1/4" × 1-1/4"<br />
REDUCERS – FUSION × FUSION<br />
STOCK # MODEL DESCRIPTION<br />
828736 SPC54 1" × 3/4"<br />
828738 SPC65 1-1/4" × 1"<br />
828740 SPC76 1-1/2" × 1-1/4"<br />
MALE ADAPTER – FUSION × MPT<br />
STOCK # MODEL DESCRIPTION<br />
828762 SPMA65 1-1/4" × 1"<br />
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FLOW CENTERS<br />
SUPERBRUTE XL 2" FLOW CENTRE<br />
FEATURES:<br />
• 2 Grundfos UPS60-150 3-Speed Pumps<br />
• 2" Full-port, 3-way, 4-position forged brass flushing and service valves<br />
• 208/230V, 60Hz, single phase<br />
• Good for larger tonnage closed loop applications<br />
STOCK # MODEL DESCRIPTION<br />
Flow Centre<br />
852644 AGFM2F/1237 Pressurized 2 Pump Flow Module, Composite Cabinet,<br />
Brass Valve, UPS60-150, 208/230V, 3-Speed Pumps<br />
Fittings<br />
C853501 3318 Adapter, Double O-Ring XL × 2" FPT (2 Pack)<br />
C853501 3320 Adapter, Double O-Ring XL × 1.5" FPT (2 Pack)<br />
C853501 3380 Flush Port Adapter, Double O-Ring XL × 1" Cam (2 Pack)<br />
C853501 3395 Adapter, 2" Sweat × Double O-Ring XL (Pair)<br />
C853501 3397 Adapter, 2" Barb × Double O-Ring XL (Pair)<br />
C853501 3463 Adapter, Double O-Ring XL × 1.25" Socket Fusion (Pair)<br />
C853501 3464 Adapter, Double O-Ring XL × 1.5" Socket Fusion (Pair)<br />
C853501 3465 Adapter, Double O-Ring XL × 2" Socket Fusion (Pair)<br />
PUMP PERFORMANCE CURVE<br />
3318<br />
3320<br />
3380<br />
3395<br />
3397<br />
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FLOW CENTERS<br />
RESIDENTIAL FLOW CENTERS<br />
PRESSURIZED FLOW CENTERS<br />
FOAMED CABINET<br />
STOCK # MODEL DESCRIPTION<br />
Single Loop Pump Modules — Side Port<br />
C853700 1027 GPM-1 with UP26-99F 230V Grundfos Pump – Cast Iron<br />
C853700 1055 GPM-1 with UP26-116F 230V Grundfos Pump – Cast Iron<br />
C853700 1077 GPM-1 with UP26-116BF 230V Grundfos Pump – Bronze<br />
C853700 1033 GPM-1 with UP26-99F 115V Grundfos Pump – Cast Iron<br />
Single Loop Pump Modules — Front Port<br />
828720 GSLM-1X With 1" P/T Plugs<br />
852632 GFM-116-1 With UP26-116F Grundfos Pump – Cast Iron<br />
852641 GFM-116BF-1-BRZ With UP26-116F Grundfos Pump 230V – Bronze<br />
852975 BNRF-136 With NRF36 230V Bell and Gossett – Wet Rotor – 3 speed – Cast Iron<br />
Double Loop Pump Modules — Side Port<br />
852451 1028 GPM-2 with UP26-99F 230V Grundfos Pump – Cast Iron<br />
852453 1056 GPM-2 with UP26-116F 230V Grundfos Pump – Cast Iron<br />
C853700 1076 GPM-2 with UP26-116BF 230V Grundfos Pump, Bronze<br />
C853700 1031 GPM-2 with UP26-99F 115V Grundfos Pump – Cast Iron<br />
Double Loop Pump Modules — Front Port<br />
828722 GSLM-2X With 1" P/T Plugs<br />
852636 GFM-99-2 With UP26-99F Grundfos Pump – Cast Iron<br />
852637 GFM-99BF-2 With UP26-99BF Grundfos Pump – Bronze<br />
852638 GFM-116-2 With UP26-116F Grundfos Pump – Cast Iron<br />
852642 GFM-116BF-2 With UP26-116BF Grundfos Pump – Bronze<br />
852977 BNRF-236 With NRF36 230V Bell and Gossett – Wet Rotor – Cast Iron<br />
GPM1<br />
GSLM-1X<br />
GFM-116-1<br />
BNRF-136<br />
Warranty: 5 year parts and labour<br />
Total Head - feet<br />
Total Head - fee t<br />
Performance<br />
Performance<br />
Model GFM-116-1/GFM-116BF-1<br />
Model GFM-116-1<br />
40<br />
35<br />
30<br />
25<br />
20<br />
15<br />
10<br />
5<br />
0<br />
35<br />
30<br />
25<br />
20<br />
15<br />
10<br />
5<br />
0<br />
0 10 20 30 40<br />
Flow - gpm<br />
Performance Model BNRF-136<br />
0 5 10 15 20 25 30 35<br />
Flow - gpm<br />
Speed 1<br />
Speed 2<br />
Speed 3<br />
Total Head - feet<br />
Total Head - feet<br />
Performance Model GFM-116-2<br />
Performance Model GFM-116-2/GFM-116BF-2<br />
80<br />
70<br />
60<br />
50<br />
40<br />
30<br />
20<br />
10<br />
0<br />
0 10 20 30 40<br />
Flow - gpm<br />
Performance Model BNRF-236<br />
70<br />
60<br />
Speed 1<br />
50<br />
Speed 2<br />
40<br />
Speed 3<br />
30<br />
20<br />
10<br />
0<br />
0 5 10 15 20 25 30 35<br />
Flow - gpm<br />
GPM2<br />
GSLM-2X<br />
GFM-116-2<br />
BNRF-236<br />
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FLOW CENTERS<br />
RESIDENTIAL FLOW CENTERS (cont’d)<br />
PRESSURIZED FLOW CENTERS (cont’d)<br />
THREE WAY FOAM FILLED VALVE MODULES<br />
The Three Way Foam Filled Valve Module can be remotely installed for easy access such as in a garage or outside<br />
a crawlspace. The Valve module can be connected to one, two, or more pump modules.<br />
STOCK # MODEL DESCRIPTION<br />
852784 VFMB2 Three Way Valve Module<br />
852979 BNRF/AAPB136 One Pump Module without Valve<br />
852981 BNRF/AAPB236 Two Pump Module without Valve<br />
PRESSURE BATTERY GEOTHERMAL EXPANSION TANKS<br />
Eliminate callbacks and pump failure due to low loop pressure caused by loop expansion.<br />
FEATURES:<br />
• Simple, leak proof design<br />
• Components constructed of proven materials for the geo-thermal industry<br />
• Tank sized based on 6 ton horizontal loop<br />
• Maintenance free<br />
HOW IT WORKS:<br />
1. The PRESSURE BATTERY is installed via socket fusion<br />
(1-1/4 in) anywhere in the ground loop system.<br />
Atmospheric air (14.7 psia or 0 psig) is trapped inside<br />
the 3/4 gallon tank by the custom molded rubber<br />
bladder (shown in red).<br />
2. When the ground loop has been purged and as the<br />
system begins to be pressurized, fluid enters the tank<br />
and compresses the air on the ‘air’ side of the bladder.<br />
3. As the ground loop system pressure increases the tank<br />
fills with fluid and the air side pressure increases. When<br />
loop reaches the desired system pressure the tank will<br />
contain 1/3 to 3/5 gallons of fluid.<br />
4. When the ground loop pipe expands and relaxes during<br />
normal system operation the fluid from the tank is forced<br />
back into the loop retaining system pressure that could<br />
have otherwise resulted in a flat loop callback and possibly<br />
pump failure.<br />
Valve Module<br />
Pipe Grade<br />
High Density<br />
Polyethylene<br />
(HDPE)<br />
One Pump Module<br />
Standard<br />
1-1/4" Socket<br />
Fusion<br />
Custom Molded<br />
Buna-N Rubber<br />
Bladder<br />
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FLOW CENTERS<br />
GEO-PRIME LOOP EXPANSION TANK<br />
• Tank accessory allows standard flow center or pump to be used as a<br />
non-pressurized system<br />
• Mounting position above flow center provides necessary pump head<br />
• Includes internal air purging system<br />
• Includes tank bypass valves for flushing with flow center or external valves<br />
• ~2.5 gallon tank capacity<br />
• Retrofitable – In systems that have issues with fluid loss, the tank could be installed<br />
without purchasing a new flow center system.<br />
• Installation flexibility – Tank could be installed in one location (loop penetration wall) and<br />
flow center in another (side of heat pump).<br />
Double O-ring connections allow tank to be installed with any flow center type (O-ring or FTP).<br />
GEO-PRIME TANK AND FITTINGS<br />
STOCK # MODEL DESCRIPTION<br />
C855400 AGPTA Geo-Prime Flow Center Reservoir Tank<br />
C855600 AGPVC6 1.25" PVC × Double O-Ring Adapter (Pair)<br />
GEO-PRIME TANK<br />
PLACEMENT<br />
GEO-PRIME DURING<br />
OPERATION<br />
GEO-PRIME DURING<br />
FLUSHING/PURGING<br />
04/11<br />
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FLOW CENTERS<br />
RESIDENTIAL FLOW CENTERS (cont’d)<br />
NON PRESSURIZED<br />
The QT Flow Center is designed to provide long, reliable operation in an attractive<br />
cabinet, while providing installation and service benefits. The stylish rugged insulated<br />
cabinet provides for flexible installation without feeling the need to hide it out of sight.<br />
FEATURES:<br />
• Non-pressurized flow center – eliminates callback<br />
• Removable lid – fast installation, easy to fill, check flow rates and<br />
add antifreeze<br />
• Air Separation Chamber – continually performs purging function<br />
• Foam Insulation – eliminates unsightly condensation<br />
• Solid Durable Construction – long life<br />
• Check Valve – pump protection<br />
• Hanging Handles – ease of handling and installation<br />
1-230 2-230<br />
STOCK # MODEL DESCRIPTION<br />
852967 1-230QFC-G QT Flow Center with<br />
UP26-99 Pump<br />
852969 1-230QFC-M QT Flow Center with<br />
UP26-116 Pump<br />
852971 2-230QFC-M QT Flow Center with<br />
2 UP26-116 Pumps<br />
852976 2-230QFC-G QT Flow Center with<br />
2 UP26-99 Pumps<br />
# of<br />
Pumps Voltage<br />
AMPS<br />
Grundfos<br />
HP<br />
(ea.)<br />
Inlet/Outlet<br />
Size<br />
1 230 1.07 1/6 1" Swivel<br />
(FPT)<br />
1 230 1.07 1/6 1" Swivel<br />
(FPT)<br />
2 230 2.14 1/6 1" Swivel<br />
(FPT)<br />
4 230 4.28 1/6 1-1/4"<br />
Swivel<br />
(FPT)<br />
Overall Size (") Weight (lbs)<br />
Height Width Depth Shpg Op<br />
36 7-3/4 16 44 39<br />
36 7-3/4 16 44 39<br />
36 7-3/4 16 55 50<br />
43-1/2 8 21-1/2 102 95<br />
GT FLOW CENTERS<br />
NON PRESSURIZED<br />
KT FLOW CENTRE (Field assembly Required)<br />
STOCK # MODEL<br />
# of<br />
Circuits<br />
# of<br />
Pumps Voltage<br />
AMPS<br />
99E<br />
HP<br />
(ea.)<br />
Inlet**/Outlet<br />
Size<br />
C853701 1-230KFC 1 1 230 1.07 1/6 1" Slip or<br />
FPT/FPT<br />
C853701 2-230KFC 1 2 230 2.14 1/6 1" Slip or<br />
FPT/FPT<br />
C853701 3-230KFC-SS 1 3 230 3.21 1/6 *1-1/4" IPT/<br />
1-1/4" FPT<br />
Overall Size (") Weight (lbs)<br />
Height Width Depth Shpg Op<br />
35 9-1/4 18 35 30<br />
35 9-1/4 18 47 42<br />
42 9-1/4 18 61 58<br />
**Both a slip (PVC) and FPT fitting are provided as standard (116F – 1.75 amps per pump) *Comes with B. Union.<br />
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FLOW CENTERS<br />
GT FLOW CENTERS (cont’d)<br />
NON PRESSURIZED (cont’d)<br />
GT FLOW CENTRE<br />
STOCK #<br />
MODEL<br />
# of<br />
Pumps<br />
Voltage<br />
AMPS<br />
99E<br />
HP<br />
(ea.)<br />
Inlet*/Outlet<br />
Size<br />
C853701 1-NPFC 0 – – – 1" Slip or<br />
FPT/FPT<br />
C853701 1-230PFC 1 230 1.07 1/6 1" Slip or<br />
FPT/FPT<br />
C853701 2-230PFC 2 230 2.14 1/6 1" Slip or<br />
FPT/FPT<br />
Overall Size (") Weight (lbs.)<br />
Height Width Depth Shpg Op<br />
35 9-1/4 18 23 18<br />
35 9-1/4 18 35 30<br />
35 9-1/4 18 47 42<br />
*Both a slip (PVC) and FPT fitting are provided as standard (116F – 1.75 amps per pump).<br />
EA QT FLOW CENTRE<br />
# of<br />
Amps HP Inlet/Outlet Overall Size (")<br />
STOCK # MODEL<br />
Pumps Voltage Grundfos (ea.) Size Height Width Depth<br />
C853701 2-2E-A-SS-230QFC* 4 230 4.28 1/6 1-1/4" Swivel (FPT) 43-1/2 8 21-1/2<br />
*2699 pump standard.<br />
EA SERIES FLOW CENTRE SS Special 2 Circuit Applications (Field assembly required)<br />
STOCK #<br />
MODEL<br />
Max<br />
GPM*<br />
# of<br />
ckts<br />
# of<br />
Pumps<br />
Voltage<br />
Amps<br />
Grundfos<br />
26-99<br />
HP<br />
(ea.)<br />
Inlet/Outlet<br />
C853701 0-0E-A-KFC-SS 18* 2 0 230 2.14 1/6 1-1/4" IPT/<br />
1-1/4" FPT<br />
C853701 1-1E-A-KFC-SS 18* 2 2 230 2.14 1/6 1-1/4" IPT/<br />
1-1/4" FPT<br />
C853701 2-1E-A-KFC-SS 22* 2 3 230 3.21 1/6 1-1/4" IPT/<br />
1-1/4" FPT<br />
C853701 2-2E-A-KFC-SS 28* 2 4 230 4.28 1/6 1-1/4" IPT/<br />
1-1/4" FPT<br />
Size<br />
Overall Size (")<br />
Height Width Depth<br />
Weight<br />
(lbs)<br />
Shpg<br />
43 22-1/2 9-1/4 50<br />
43 22-1/2 9-1/4 50<br />
43 22-1/2 9-1/4 61<br />
43 22-1/2 9-1/4 75<br />
Standard: IPT on Inlet Connection. Union can be special ordered.<br />
*For Max Flow Use Grundfos 116F-1.75 Amps per pump.<br />
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FLOW CENTERS<br />
MULTIZONE GT FLOW CENTERS<br />
PHYSICAL DIMENSIONS (")<br />
9.6D<br />
in<br />
SIZE<br />
Max Flow<br />
(gpm)* H D X Y Z<br />
P<br />
(IPT)<br />
Volume<br />
(gal)<br />
B 80 58 9-1/2 43 36-1/2 30 2 11.1<br />
C 130 70 12 45 38-1/2 32 3 20.8<br />
D 190 70 14 45 38-1/2 32 4 29.5<br />
NOTES:<br />
Standard: IPT on Inlet Connection. Union can be special ordered.<br />
Distance between pumps may increase when a union is required.<br />
All models Stainless Steel w/brass circuits or PE circuit.<br />
*B-Model (4-circuit header max).<br />
54Hin<br />
P<br />
7<br />
1" 1 FPT –1/4” w/ Ball FPT ValveBall Valve<br />
8<br />
38.5X<br />
in<br />
32Yin<br />
25.5Z<br />
in<br />
REPLACEMENT PUMPS<br />
STOCK # MODEL DESCRIPTION<br />
828780 XC25-12F Pro-Tech Single Speed Circulator Pump<br />
828782 XC15-6SF Pro-Tech Three Speed Circulator Pump<br />
828784 XC25-10SFC Pro-Tech Three Speed Circulator Pump<br />
852750 8900 UP26-99F 230V Pump<br />
852752 8918/9405 UP26-116F 230V 1 PH Pump<br />
852983 NRF 36 230V Pump<br />
852640 UP26-116BF 230V Bronze Pump<br />
COMMERCIAL PUMP STATIONS<br />
<strong>ECCO</strong> <strong>Supply</strong> are able to service<br />
all of your commercial geothermal<br />
flow centre needs. From 20 tons<br />
and up, there is a flow centre that<br />
will perform to the specifications<br />
you require.<br />
Please contact your local<br />
<strong>ECCO</strong> <strong>Supply</strong> Sales Branch<br />
and we will help select the flow<br />
centre that is right for you.<br />
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FUSION TOOLS<br />
FUSION TOOLS<br />
We offer a complete line of Fusion tools for all your Geothermal needs!<br />
COMPLETE FUSION KITS<br />
The complete fusion kit is available<br />
to purchase or rent. Please contact<br />
your local <strong>ECCO</strong> <strong>Supply</strong> Sales Branch<br />
for availability.<br />
STOCK # MODEL DESCRIPTION<br />
C853900 FHAK48P 3/4" thru 2" IPS – Single<br />
852594 FHAK48WDP 3/4" thru 2" IPS – Double<br />
HEATING TOOL<br />
STOCK # MODEL DESCRIPTION<br />
C853900 FHVT48 Heat Fusion tool, single<br />
socket face, 110V<br />
852512 FHVTD48 Heat Fusion tool, double<br />
socket face, 110V<br />
SOCKET FACES<br />
STOCK # MODEL DESCRIPTION<br />
852679 FHSF4P 3/4" IPS<br />
852678 FHSF5P 1" IPS<br />
852681 FHSF6P 1-1/4" IPS<br />
852682 FHSF8P 2" IPS<br />
COLD RINGS<br />
STOCK # MODEL DESCRIPTION<br />
852684 FHCR4P 3/4" IPS<br />
852686 FHCR5P 1" IPS<br />
852688 FHCR6P 1-1/4" IPS<br />
852692 FHCR8P 2" IPS<br />
DEPTH GAUGES<br />
STOCK # MODEL DESCRIPTION<br />
852694 FHDG4P 3/4" IPS<br />
852696 FHDG5P 1" IPS<br />
852698 FHDG6P 1-1/4" IPS<br />
852700 FHDG7P 1-1/2" IPS<br />
852702 FHDG8P 2" IPS<br />
DEPTH GAUGE/CHAMFER TOOLS<br />
STOCK # MODEL DESCRIPTION<br />
852790 FGD1 3/4"<br />
852792 FGD2 1"<br />
852794 FGD3 1-1/4"<br />
852796 FGD5 2"<br />
FUSION TIMER<br />
STOCK # MODEL DESCRIPTION<br />
852677 FHFT Fusion Timer<br />
FUSION TOOL COVER<br />
STOCK # MODEL DESCRIPTION<br />
852703 FHHB Fusion Tool Cover<br />
TEMPSTIK<br />
STOCK # MODEL DESCRIPTION<br />
852673 FHS500 Tempstik 500°F<br />
852675 FHS525 Tempstik 525°F<br />
PIPE CUTTERS<br />
STOCK # MODEL DESCRIPTION<br />
852518 HAK67 3/4" to 1-1/4" Tube Cutter<br />
HOSE KITS<br />
Hose kits improve installation appearance and reduce<br />
installation labour costs. The kits include:<br />
• 12' of 1" ID 150 PSI hose<br />
• 3/4" MPT or 1" MPT by 1" insert brass<br />
ell fittings (2)<br />
• 1/4" MPT pressure temperature plugs (2)<br />
• 1" MPT × 1" insert straight brass fittings (2)<br />
• Stainless steel hose clamps (4)<br />
STOCK # MODEL DESCRIPTION<br />
852454 1100 GHK -3/4L 3/4" Hose Kit<br />
828710 GSHK75 3/4" Hose Kit<br />
852456 1101 GHK -1L 1" Hose Kit<br />
828714 GSHK100 1" Hose Kit<br />
852788 HK75 3/4" Hose Kit<br />
852789 HK100 1" Hose Kit<br />
04/11<br />
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COMPUTER INTERFACE<br />
SOFTWARE<br />
Computer interface software gives contractors, home owners and building managers the ability to<br />
remotely monitor and manipulate Geothermal or Solar installations equipped with the ECO-1000.<br />
FEATURES:<br />
• Plot data – real-time logging and graphing<br />
• System information status<br />
• Quikload parameter setting overview<br />
• Automated alarm center<br />
• Profile download functions<br />
• Multiple site management<br />
• Connectivity via: direct connection, dial-up/<br />
wireless modem, internet connection<br />
STOCK # MODEL DESCRIPTION<br />
C853500 CIS-0110 Computer Interface Software<br />
CONTROLLERS<br />
CPU-0500<br />
The CPU-0500 stand-alone indoor/outdoor reset control is designed to accommodate traditional<br />
boiler applications as well as solar and geothermal installations in a condensed package.<br />
FEATURES:<br />
• Single dial operation, multi-colour backlit display<br />
• 120VAC power inputs<br />
• Single modulating, or up to two on/off boilers<br />
• DHW and boiler pump capabilities<br />
• Modulating mixing, PMIp or floating action<br />
• Low temperature and high temperature demands<br />
• Two programmable reset curves<br />
• Dual or differential setpoints<br />
• Up to 2 heat pumps, efficient heat pump staging<br />
• Runs reversing valve and a hot or cold tank<br />
Input<br />
Signals (2)<br />
Heating or<br />
Cooling<br />
Demand<br />
Heat<br />
Pump 1<br />
CPU-0500<br />
Mod or Sensor (2) Outdoor 120<br />
ON/OFF Boiler<br />
Sensor VAC<br />
Sensor (2)<br />
Pump<br />
Outputs (2)<br />
Boiler System Configuration<br />
Outdoor 120 Heat Reversing<br />
Sensor VAC Pump 2/ Valve<br />
Backup<br />
Geothermal Configuration<br />
APPLICATIONS:<br />
• Staging: The CPU-0500 can run up to two on/off boilers or a single modulating boiler, as well as incorporating onboard DHW.<br />
• Mixing: Mixing types include modulating mixing, PMIp and floating action. The control can run a single boiler in mixing mode.<br />
• Setpoint: Setpoint mode allows for dual or differential setpoint requirements. All this is available through single dial operation<br />
and user friendly programming features.<br />
• Geothermal: The CPU-0500 manages applications using heat pumps and compressors. The control handles the reversing<br />
valve, up to 2 heat pumps, single hot tank, a cold tank, or a hot and cold tank with a backup option.<br />
• Solar: Simple differential control with dump feature.<br />
CPU<br />
ECO<br />
STOCK # MODEL DESCRIPTION<br />
C853500 CPU-0500 Geothermal Controller<br />
ECO-1000<br />
The ECO-1000 Control has been designed to incorporate geothermal and solar specific control features. Optimizing BTU return<br />
for solar installations as well as tapping into natural heat sources to provide energy return for geothermal, are key for achieving<br />
efficiency and performance on several ecologically friendly systems.<br />
Whether utilizing panels or tubes for solar type applications or staging heat pumps for geothermal<br />
designs, the ECO-1000 can improve tanks, panels, pumps and compressor efficiency derived<br />
using outdoor reset.<br />
STOCK # MODEL DESCRIPTION<br />
852770 ECO-1000 Geothermal/Solar Controller<br />
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COMPUTER INTERFACE<br />
EXPANSION MODULES<br />
EXP-0100<br />
The EXP-0100 Expansion Module is designed to be integrated with the ECO-1000 Geothermal or Solar<br />
Controller, it is not a stand alone control device.<br />
The purpose and function of the EXP-0100 is to provide system expansion capabilities. Its primary use<br />
is to add additional Heat Pump stages. For example, 1 ECO-1000 + 1 EXP-0100 can provide a total of<br />
4 Heat Pump stages (when configured as a staging control).<br />
STOCK # MODEL DESCRIPTION<br />
852050 EXP-0100 Geothermal/Solar Controller<br />
Expansion Module<br />
EXP-0300<br />
The EXP-0300 Expansion Module is designed to be integrated with the ECO-1000 Geothermal or Solar<br />
Controller, it is not a stand alone device.<br />
The purpose and function of the EXP-0300 is to provide greater control of pumps in larger mechanical<br />
heating systems. Its primary use is to take control of multiple water pumps and allow you to take full<br />
advantage of the post purge feature of the Control.<br />
For example, 1 ECO-1000 +1 EXP-0100 + 1 EXP-0300 can provide 2, 2 stage Heat Pump controls with<br />
2 water pumps, setup using post purge on the water pumps.<br />
STOCK # MODEL DESCRIPTION<br />
852052 EXP-0300 Geothermal/Solar Controller<br />
Expansion Module<br />
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Storage Tanks<br />
GEOTHERMAL WATER STORAGE<br />
• C-glass® porcelain fused-to-steel is impervious to chlorine<br />
and caustics – the ideal water vessel<br />
• 30 to 119 gallon capacities (standard construction)<br />
• ASME construction sized from 119 to 1000 gallons<br />
• Magnesium anodes<br />
• Steel exterior with powder coat finish<br />
• 2" top and side NPT connections<br />
• Factory installed brass drain valve<br />
• 5-Year tank warranty – residential applications<br />
• 3-Year tank warranty – non residential applications<br />
GEOTHERMAL STORAGE TANKS<br />
T&P<br />
RELIEF INLET/ HOT AQUA-<br />
DIMENSIONS (")<br />
SHIPPING<br />
STORAGE VALVE RETURN OUTLET STAT<br />
WEIGHT<br />
STOCK # MODEL<br />
(GAL) CONN. CONN. CONN. CONN. A B C D E (LBS)<br />
C855400 RST20ST 20 3/4" 1" / 3/4" 1" 3/4" 27-5/8 20 7 4-3/8 20 85<br />
855403 RST30ST 30 3/4" 2" / 2" 2" 3/4" 39-1/2 20 11-1/4 4-3/8 N/A 150<br />
855404 RST50ST 50 3/4" 2" / 2" 2" 3/4" 48-1/2 22 11 4-1/4 N/A 190<br />
855405 RST80ST 80 3/4" 2" / 2" 2" 3/4" 60-1/2 24 22 7 N/A 250<br />
C855400 RST119ST-2" 119 1" 2" / 2" 2" 3/4" 65-1/2 28 22 7 N/A 385<br />
C855400 RST119ST-2-1/2" 119 1" 2" / 2" 2-1/2" 3/4" 65-1/2 28 22 7 N/A 385<br />
WARNING:<br />
Installation should be in accordance with all national and/or local codes.<br />
In the absence of local codes, refer to NFPA 54 or ANSI Z.21.10.1.<br />
B<br />
CAUTION:<br />
The recommended maximum hot water temperature setting for normal<br />
residential use is 120° F. Bock recommends a tempering valve or<br />
anti-scald valve be installed and used according to the manufacturer’s<br />
directions to prevent scalding.<br />
Relief Valve<br />
Conn.<br />
B<br />
Relief Valve<br />
Conn.<br />
A<br />
PRESSURES (ALL):<br />
Working Pressure, 150 psi; Testing Pressure, 300 psi<br />
Aquastat<br />
Conn.<br />
A<br />
Aquastat<br />
Conn.<br />
Inlet/Return<br />
Conn.<br />
Drain Valve<br />
D<br />
C<br />
Inlet/Return<br />
Conn.<br />
Drain Valve<br />
D<br />
C<br />
30ST & 50ST<br />
80ST & 119ST<br />
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SERVICE AND TESTING EQUIPMENT<br />
PURGE PRO<br />
The Purge Pro is a compact residential geothermal purging system that is able to fit on a<br />
handcart. The Purge Pro comes complete with a 2HP 115-230/1 pump able to move 69 gpm<br />
at 80' of head for quick purging of any system. The unit is constructed with a high-density<br />
polyethylene tank complete with full flow ball valves, 2 hoses complete with quick connect<br />
fittings. This unit is available for purchase or rent.<br />
STOCK # MODEL DESCRIPTION<br />
852618 PP-001 Purge Pro<br />
GEO GOOSER<br />
The simplest way to adjust loop pressure is by using the Geo-Gooser.<br />
Constructed with brass and complete with a garden hose connection for quick<br />
and simple loop pressure adjustments. The Geo-Gooser reads pressure when<br />
the valve is closed.<br />
STOCK # MODEL DESCRIPTION<br />
852496 2474 Geo-Gooser<br />
LOOP PRESSURE INDUCER<br />
Equipped with a 100 PSI liquid filled pressure gauge. Made from high quality<br />
"Nickel Plated Brass" to ensure durability and a professional look.<br />
STOCK # MODEL DESCRIPTION<br />
C853900 GSPI-60 Pressure Inducer<br />
DIGITAL THERMOCOUPLE THERMOMETER AND PROBES<br />
DIGITAL THERMOMETER<br />
STOCK # MODEL DESCRIPTION<br />
852626 TKT610 Digital Thermometer<br />
PENETRATION PROBE<br />
The Penetration Probe in conjunction with the<br />
digital thermometer provides accurate<br />
temperature readings for water through<br />
PT ports.<br />
STOCK # MODEL DESCRIPTION<br />
852620 TKT601 Penetration Probe<br />
AIR PROBE<br />
The Air Probe in conjunction with the digital thermometer<br />
provides accurate temperature readings for air.<br />
STOCK # MODEL DESCRIPTION<br />
852622 TKT603 Air Probe<br />
SURFACE PROBE<br />
The Surface Probe in conjunction with the digital thermometer<br />
provides accurate temperature readings for surfaces. It is<br />
especially useful on heat fusion tools to<br />
provide quick and accurate temperature<br />
checks for the best fusion joint.<br />
STOCK # MODEL DESCRIPTION<br />
852624 TKT605 Surface Probe<br />
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GEOTHERMAL SYSTEM ACCESSORIES<br />
HEAT TRANSFER FLUIDS<br />
STOCK # MODEL DESCRIPTION<br />
C852403 CALSOL100 Ethanol 100% 163 Kg<br />
852409 CALSOL100 Ethanol 100% 20L<br />
852419 11-68097 Propelyne Glycol 20L<br />
852425 – Ecoblend Geo Fluid White Pail 5 Gal.<br />
852418 – Methanol 100% 20L/16 Kg Pail<br />
852411 038927 Methanol 100% 163 Kg Pail<br />
836062 4188-05 Propylene Glycol 5 Gal.<br />
836053 4188-07 Propylene Glycol 1 Gal.<br />
LOOP CONDITIONER<br />
Loop Conditioner is an excellent preventive maintenance aid for both residential and<br />
commercial geothermal systems. Once introduced into the geothermal system, this<br />
specialized solution coats all surfaces it comes in contact with and cuts down on the<br />
formation of rust and corrosion. Loop Conditioner has been thoroughly field tested and has<br />
proven effective in sealing leaks.<br />
Use one 8 oz. bottle of Loop Conditioner per 1200 gallons of system water. Pre-mix with<br />
16 oz. of water and shake well. With system pumps running, pump Loop Conditioner into<br />
system via the Purge Pro, Super Dooper Inducer, or other pumping device. After conditioner<br />
has been introduced to the system, build system pressure to 60psi or higher (do not exceed<br />
160psi). Circulate for 24 hours, then return system to normal operating mode. Check<br />
system in two weeks for pressure drop. Treatment can be repeated if necessary.<br />
STOCK # MODEL DESCRIPTION<br />
855410 TSGLC Loop Conditioner<br />
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GEOTHERMAL SYSTEM ACCESSORIES<br />
ACCESSORIES<br />
STOCK # MODEL # DESCRIPTION<br />
852462 2145 Brass Gauges Adapter – 1/8" with Guard<br />
852524 10-1017 Insert Adapter 1-1/2 HB × 1-1/2 MPT<br />
828690 GSGA-16 Nickel Plated Gauge Adapter with Guard<br />
855496 AGPT2A PT Plug – 1/4" MPT<br />
852458 2143 PT Plug – 1/4" MPT<br />
828702 GSPT-25 PT Plug 1/4"<br />
855498 AGPT3A PT Plug – 1/2" MPT<br />
828704 GSPT-50 PT Plug 1/2"<br />
C828400 GSPT-100 PT Plug 1"<br />
852464 2146 Insert Adapter – 1" MPT × 1" HB<br />
852466 2147 Insert Adapter – 1" MPT × 1-1/4" HB<br />
852468 2265 Heat Pump Adapter – 3/4" MPT × 1" HB<br />
C853500 GSHPA-75 Heat Pump Adapter – 3/4" MPT × 1" Barb<br />
852470 2266 Heat Pump Adapter – 1" MPT × 1" HB<br />
852771 GHHPA-100 Heat Pump Adapter – 1" MPT × 1" Barb<br />
C853600 GSHB-100 Insert Adapter – 1" MPT × 1" Barb<br />
C853600 GSHB-125 Insert Adapter – 1" MPT × 1-1/4" Barb<br />
C853900 — Tie Wire Tool<br />
C853900 — Tie Wire – 500 pieces<br />
C855400 AP2430P High density plastic pad 24" × 30"<br />
855430 AP2436P High density plastic pad 24" × 36"<br />
C855400 AP3038P High density plastic pad 30" × 38"<br />
855432 AP3232P High density plastic pad 32" × 32"<br />
855435 AP3648P High density plastic pad 36" × 48"<br />
855436 AP2432F Polyethelene foam pad 24" × 32"<br />
855438 AP3036F Polyethelene foam pad 30" × 36"<br />
Gauge Adapter with Guard<br />
Insert Adapter –<br />
1" MPT × 1" HB<br />
Heat Pump Adapter –<br />
3/4" MPT × 1" HB<br />
Heat Pump Adapter –<br />
1" MPT × 1" HB<br />
Tie Wire Tool<br />
Tie Wire<br />
Plastic Pad<br />
PT Plugs<br />
Foam Pad<br />
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HEAT EXCHANGERS<br />
POND, LAKE, AND OCEAN PLATE HEAT EXCHANGERS<br />
The Geo Lake Plate Heat Exchanger is an innovation in geothermal lake loop technology.<br />
This light, compact heat exchanger is an ideal labour saver. Rated at 150 psi and made from<br />
spot and roll welded 18 ga. 304 stainless steel, there are several models available. Models<br />
range from 2 ton up to 8 ton, with the ability to combine units for larger jobs.<br />
Also available in titanium for ocean loop applications.<br />
DESCRIPTION<br />
DIMENSIONS<br />
(Approximate)<br />
PRESSURE<br />
(Approximate)<br />
VOLUME<br />
WEIGHT<br />
Steel /<br />
Titanium *<br />
SJ-02T 2' × 6' × 3/8" 6GPM, 5 psi 1.2 gal 55 lbs / 28 lbs<br />
SJ-03T 4' × 5' × 3/8" 9GPM, 2 psi 2.0 gal 92 lbs / 46 lbs<br />
SJ-04T 4' × 6' × 3/8" 12GPM, 4 psi 2.4 gal 110 lbs / 55 lbs<br />
SJ-05T 4' × 8' × 3/8" 15GPM, 6 psi 3.2 gal 147 lbs / 74 lbs<br />
SJ-08T 4' × 12' × 3/8" 24GPM, 8 psi 4.8 gal 220 lbs / 110 lbs<br />
SJ-10T 4' × 15' × 3/8" 30GPM, 8.5 psi 7.0 gal 276 lbs / 138 lbs<br />
*SJ-08T and SJ-10T – Two (2) Pass (In and out same end)<br />
*Requires special quote for pricing and availability – (Titanium and 316L Stainless Steel)<br />
• Design Pressure PSI – 248<br />
• Design Temperature – 148<br />
• Spot and Roll Welded<br />
Flow Rate: Three (3) GPM per ton equipment.<br />
Commercial<br />
Installation<br />
Residential<br />
Installation<br />
Approximate Heat Transfer Rate:<br />
100 BTU per square foot transfer surface of plate per degree Delta T in still body<br />
of water. Both sides of plate are exchanger surface.<br />
Example: SJ-03T Plate<br />
4' × 5' × 2 = 40<br />
40 × 100 = 4,000<br />
4,000 × 10 Degree Delta T = 40,000 BTU approx.<br />
NOTE:<br />
Any current accentuates performance greatly and allows for closer grouping<br />
of multiple plate assembly – such as river applications.)<br />
Multiple plates of like capacity can be manifold in field with polyethylene pipe to<br />
accommodate larger loads.<br />
RECOMMENDED FITTINGS:<br />
• 1-1/4" and 2" Brass FPT Coupling<br />
• 1-1/4" and 2" Brass FPT 90° Ell<br />
• 1-1/4" and 2" Brass MPT × 1 1/4" and<br />
2" Fusion<br />
• 1-1/4" Brass MPT × 1-1/4 and 2" Stab<br />
Fitting (No Fusion Required)<br />
• Geothermal Compression Fittings<br />
(Fusion-Less) – 1/4" thru 2"<br />
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SOLAR PUMPS<br />
PARTS & ACCESSORIES<br />
Renewable <strong>Energy</strong> Made Simple.<br />
BECKETT SOLAR HOT SOLAR SYSTEMS<br />
The SolVelox is a complete solar pump package with everything you need to connect Beckett’s high performance solar panels<br />
to your storage tank. Integral to the unit are two high-efficiency bronze circulators, a brazed plate, counterflow heat exchanger<br />
and the electronics to drive it all. The SolVelox can be purchased to run either drainback or glycol based systems. This<br />
unparalleled flexibility within a single unit creates a pumping, heat exchange and control package that can be used in systems<br />
utilizing standard oil, gas, electric or indirect hot water tanks. The features of the SolVelox make it easy and cost effective to<br />
include a solar hot water system in any new home or home remodeling project.<br />
FEATURES AND BENEFITS:<br />
• Officially America’s most efficient system in its class – OG-300. Certified<br />
by the SRCC – Solar Rating and Certification Corp.<br />
• Mounts directly to the side of a standard 80 gallon hot water tank<br />
• 50% more surface area for heat transfer than other brands<br />
• Comes with state of the art digital control<br />
• Our highly efficient heat exchange process means the pumps<br />
run less saving you even more money<br />
• Solar collector has high solar transmittance of 91%<br />
• All-in-one heat exchanger, dual-sided circulators and<br />
electronic control package<br />
• Brazed plate heat exchanger<br />
• Stainless steel<br />
• Counter-flow design<br />
• Engineered particulate filter<br />
• Greatly decreases installation time<br />
• Substantial space savings<br />
STOCK # MODEL DESCRIPTION VOLT HZ PHASE AMP HP<br />
833050 DBS2P SolVelox Drainback System 120 60 1 1.48 1 @ 1/25, 1 @ 1/20<br />
833056 DBS2P3RM SolVelox Drainback System with Adj. 120 60 1 1.48 1 @ 1/25, 1 @ 1/20<br />
Mount Hardware<br />
C833000 GS2P SolVelox Glycol System 120 60 1 1.18 2 @ 1/25<br />
C833000 GS2P3RM SolVelox Glycol System with Adj.<br />
Mount Hardware<br />
120 60 1 1.18 2 @ 1/25<br />
50% 60% 70% 80% 90%<br />
SOLARHOT Solvelox Drainback<br />
SOLARHOT Solvelox Glycol<br />
Solar Fraction<br />
calculated from SRCC formula SF=1-EF/SEF<br />
using June 2008 OG300 ratings<br />
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SOLAR PUMPS<br />
PARTS & ACCESSORIES<br />
BECKETT SOLAR HOT SOLAR SYSTEMS (cont’d)<br />
SIZING AND PIPING<br />
The SolVelox can handle transfer loads in excess of 240,000 BTUs per solar day making it suitable for larger hybrid space<br />
heating/domestic hot water systems. Your current method of piping virtually remains the same; yet standard storage tanks are<br />
used saving you time and aggravation. The glycol system comes complete with check valve, additional fill port, pressure relief<br />
valve, line cord, and 2 sensors. Everything you need for fast, plug n’ play connections.<br />
OPERATION<br />
Renewable <strong>Energy</strong> Made Simple.<br />
Cold water from the storage tank enters the SolVelox at port (A1) and exits at port (A2). The high-efficiency bronze circulator has<br />
been “flow-matched” to the unique requirements of your solar application. “Flow-matching” insures that the flow rate between<br />
the SolVelox’s heat exchanger and the storage tank maximizes the heat exchange while minimizing the de-stratification of your<br />
storage tank. The heat exchanger is a counterflow style, so hot solar fluid from the solar panels, or drainback tank, enters at port<br />
(B1) and exits at port (B2). A high efficiency bronze circulator moves the water around the B (collector) side.<br />
PERFORMANCE DATA<br />
• Collector Side – Drainback model<br />
Flow Range: 0 – 11 GPM<br />
Head Range: 0 – 33 Feet<br />
• Collector Side – Glycol model<br />
Flow Range: 0 – 18 GPM<br />
Head Range: 0 – 16.5 Feet<br />
• Storage Side – (both models)<br />
Flow Range: 0 – 12 GPM<br />
Head Range: 0 – 5.5 Feet<br />
• Minimum Fluid Temperature: 32°F (0°C)<br />
• Maximum Working Pressure: 125 psi<br />
• Connection Sizes: 3/4" NPT<br />
B2<br />
B1<br />
A2<br />
A1<br />
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ENGINEERING DATA<br />
British Columbia<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Abbotsford 49.0 14.0 84.0 22.0 52.0<br />
Agassiz 49.0 9.0 88.0 25.0 52.0<br />
Alberni 49.0 23.0 88.0 23.0 50.0<br />
Ashcroft 50.0 -13.0 93.0 29.0 50.0<br />
Beatton River 57.0 -35.0 77.0 23.0 39.0<br />
Burns Lake 54.0 -22.0 77.0 25.0 43.0<br />
Cache Creek 50.5 -13.0 93.0 29.0 50.0<br />
Campbell River 49.5 19.0 79.0 23.0 50.0<br />
Carmi 49.0 -11.0 91.0 31.0 50.0<br />
Castlegar 49.0 -2.0 90.0 29.0 50.0<br />
Chetwynd 55.0 -31.0 81.0 23.0 41.0<br />
Chilliwack 49.0 10.0 86.0 23.0 52.0<br />
Cloverdale 49.0 18.0 84.0 22.0 52.0<br />
Comox 49.5 19.0 81.0 23.0 50.0<br />
Courtenay 49.5 19.0 82.0 23.0 50.0<br />
Cranbrook 49.0 -17.0 90.0 31.0 48.0<br />
Crescent Valley 49.0 -4.0 88.0 29.0 50.0<br />
Crofton 48.5 21.0 82.0 23.0 52.0<br />
Dawson Creek 55.5 -33.0 81.0 23.0 41.0<br />
Dog Creek 51.0 -18.0 84.0 29.0 43.0<br />
Duncan 48.5 21.0 84.0 32.0 50.0<br />
Elko 49.0 -18.0 84.0 32.0 48.0<br />
Fernie 49.0 -20.0 84.0 31.0 46.0<br />
Fort Nelson 58.5 -40.0 82.0 22.0 39.0<br />
Fort St. John 56.0 -33.0 79.0 23.0 41.0<br />
Glacier 51.0 -17.0 81.0 29.0 46.0<br />
Golden 51.0 -18.0 84.0 31.0 46.0<br />
Grand Forks 49.0 -4.0 95.0 32.0 50.0<br />
Greenwood 49.0 -4.0 95.0 34.0 50.0<br />
Haney 49.0 16.0 86.0 22.0 52.0<br />
Hope 49.0 3.0 90.0 27.0 52.0<br />
Kamloops 50.5 -13.0 93.0 29.0 50.0<br />
Kaslo 49.5 -9.0 84.0 27.0 48.0<br />
Kelowna 49.5 1.0 91.0 29.0 52.0<br />
Kimberley 49.5 -15.0 88.0 31.0 46.0<br />
Kitimat Townsite 54.0 3.0 73.0 18.0 45.0<br />
Langley 49.0 18.0 84.0 22.0 52.0<br />
Lillooet 50.5 -9.0 91.0 29.0 52.0<br />
Lytton 50.0 -2.0 95.0 29.0 52.0<br />
Mackenzie 55.0 -31.0 79.0 23.0 41.0<br />
For reference only. No guarantee on accuracy of tables.<br />
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ENGINEERING DATA<br />
British Columbia<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
McBride 53.0 -29.0 86.0 27.0 46.0<br />
McLeod lake 54.5 -31.0 81.0 23.0 41.0<br />
Masset 54.0 19.0 63.0 18.0 43.0<br />
Merritt 50.0 -15.0 93.0 29.0 52.0<br />
Mission City 49.0 16.0 86.0 22.0 52.0<br />
Montrose 49.0 1.0 90.0 29.0 50.0<br />
Naskusp 50.0 -11.0 88.0 27.0 48.0<br />
Nanaimo 49.0 19.0 79.0 23.0 52.0<br />
Nelson 49.0 -4.0 88.0 29.0 50.0<br />
New Westminster 49.0 18.0 84.0 22.0 52.0<br />
North Vancouver 49.0 19.0 79.0 20.0 52.0<br />
Ocean Falls 52.0 10.0 73.0 16.0 46.0<br />
100 Mile House 51.0 -18.0 86.0 29.0 46.0<br />
Osoyoos 49.0 3.0 91.0 31.0 54.0<br />
Penticton 49.0 3.0 91.0 31.0 52.0<br />
Port Alberni 49.0 23.0 88.0 23.0 50.0<br />
Port Hardy 50.0 23.0 68.0 14.0 50.0<br />
Port McNeill 50.0 23.0 72.0 16.0 50.0<br />
Powell River 49.5 16.0 79.0 18.0 52.0<br />
Prince George 53.5 -27.0 82.0 27.0 43.0<br />
Prince Rupert 54.0 7.0 66.0 13.0 50.0<br />
Princeton 49.0 -17.0 90.0 32.0 50.0<br />
Qualicum Beach 49.0 19.0 81.0 23.0 50.0<br />
Quesnel City 52.0 -27.0 86.0 29.0 43.0<br />
Revelstoke 50.5 -15.0 90.0 27.0 48.0<br />
Richmond 49.0 19.0 81.0 22.0 52.0<br />
Salmon Arm 50.5 -9.0 91.0 29.0 50.0<br />
Sandspit 53.0 21.0 59.0 9.0 52.0<br />
Sidney 48.0 21.0 79.0 23.0 54.0<br />
Smithers 54.5 -20.0 77.0 23.0 43.0<br />
Smith River 59.5 -51.0 79.0 22.0 39.0<br />
Squamish 49.5 12.0 84.0 20.0 52.0<br />
Stewart 55.5 -9.0 73.0 22.0 46.0<br />
Taylor 56.0 -33.0 79.0 23.0 41.0<br />
Terrace 54.0 -4.0 77.0 20.0 45.0<br />
Tofino 49.0 28.0 66.0 11.0 52.0<br />
Trail 49.0 1.0 91.0 29.0 50.0<br />
Ucluelet 48.5 28.0 66.0 9.0 52.0<br />
Vancouver 49.0 19.0 79.0 22.0 52.0<br />
Vernon 50.0 -4.0 91.0 29.0 50.0<br />
Victoria 48.0 23.0 75.0 20.0 54.0<br />
Williams Lake 52.0 -24.0 84.0 29.0 45.0<br />
Youbou 48.5 23.0 88.0 23.0 50.0<br />
For reference only. No guarantee on accuracy of tables.<br />
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ENGINEERING DATA<br />
Alberta<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Athabasca 54.5 -33.0 82.0 25.0 41.0<br />
Banff 51.0 -22.0 81.0 29.0 41.0<br />
Barrhead 54.0 -29.0 82.0 25.0 41.0<br />
Beaverlodge 55.0 -31.0 82.0 23.0 41.0<br />
Brooks 50.5 -26.0 90.0 27.0 45.0<br />
Calgary 51.0 -24.0 84.0 27.0 43.0<br />
Campsie 54.0 -29.0 82.0 25.0 41.0<br />
Camrose 53.0 -27.0 84.0 23.0 41.0<br />
Cardston 49.0 -22.0 84.0 27.0 45.0<br />
Claresholm 50.0 -24.0 84.0 29.0 43.0<br />
Cold Lake 54.0 -33.0 82.0 23.0 39.0<br />
Coleman 49.5 -24.0 82.0 31.0 45.0<br />
Coronation 52.0 -24.0 86.0 25.0 41.0<br />
Cowley 49.0 -24.0 84.0 31.0 43.0<br />
Drumheller 51.0 -24.0 84.0 27.0 41.0<br />
Edmonton 53.5 -26.0 82.0 23.0 41.0<br />
Edson 53.5 -29.0 82.0 25.0 41.0<br />
Embarras Portage 58.0 -42.0 81.0 22.0 37.0<br />
Fairview 56.0 -36.0 81.0 22.0 39.0<br />
Fort McMurray 56.5 -38.0 82.0 22.0 39.0<br />
Fort Saskatchewan 53.5 -26.0 82.0 23.0 41.0<br />
Fort Vermillion 58.0 -42.0 82.0 23.0 39.0<br />
Grande Prairie 55.0 -33.0 81.0 23.0 41.0<br />
Habay 58.5 -42.0 82.0 22.0 39.0<br />
Hardisky 52.5 -27.0 86.0 25.0 41.0<br />
High River 50.5 -24.0 82.0 27.0 43.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
www.eccosupply.ca 39
ENGINEERING DATA<br />
Alberta<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Jasper 52.5 -26.0 82.0 27.0 43.0<br />
Keg River 57.5 -40.0 82.0 22.0 39.0<br />
Lac La Biche 54.5 -31.0 82.0 23.0 39.0<br />
Lacombe 52.0 -27.0 84.0 25.0 41.0<br />
Lethbridge 49.5 -22.0 88.0 27.0 46.0<br />
Manning 56.5 -38.0 81.0 20.0 39.0<br />
Medicine Hat 50.0 -24.0 91.0 29.0 46.0<br />
Peace River 56.0 -35.0 81.0 22.0 39.0<br />
Pincher Creek 49.0 -26.0 84.0 29.0 43.0<br />
Ranfurly 53.0 -29.0 84.0 23.0 41.0<br />
Red Deer 52.0 -26.0 84.0 25.0 41.0<br />
Rocky Mountain House 52.0 -24.0 82.0 25.0 41.0<br />
Slave Lake 55.0 -33.0 81.0 22.0 39.0<br />
Stettler 52.0 -26.0 86.0 25.0 41.0<br />
Stony Plain 53.5 -26.0 82.0 23.0 41.0<br />
Suffield 50.0 -26.0 91.0 29.0 46.0<br />
Taber 49.5 -24.0 88.0 27.0 46.0<br />
Turner Valley 50.5 -24.0 82.0 27.0 41.0<br />
Valleyview 55.0 -35.0 81.0 23.0 39.0<br />
Vegreville 53.5 -29.0 84.0 23.0 41.0<br />
Vermilion 53.0 -31.0 84.0 25.0 41.0<br />
Wagner 55.0 -33.0 81.0 22.0 39.0<br />
Wainwright 52.5 -27.0 84.0 25.0 41.0<br />
Wetaskiwin 52.5 -27.0 84.0 23.0 41.0<br />
Whitecourt 54.0 -31.0 81.0 25.0 41.0<br />
Wimborne 51.5 -24.0 84.0 25.0 41.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
40<br />
www.eccosupply.ca
ENGINEERING DATA<br />
Saskatchewan<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Assiniboia 49.5 -26.0 90.0 31.0 45.0<br />
Battrum 50.5 -26.0 90.0 29.0 43.0<br />
Biggar 52.0 -29.0 88.0 27.0 43.0<br />
Broadview 50.0 -29.0 86.0 25.0 43.0<br />
Dafoe 51.5 -33.0 84.0 25.0 41.0<br />
Dundurn 51.5 -31.0 88.0 27.0 43.0<br />
Estevan 49.0 -26.0 90.0 27.0 43.0<br />
Hudson Bay 52.5 -35.0 84.0 25.0 41.0<br />
Humbolt 52.0 -33.0 82.0 25.0 41.0<br />
Island Falls 55.5 -38.0 79.0 22.0 39.0<br />
Kamsack 51.5 -31.0 84.0 25.0 41.0<br />
Kindersley 51.0 -27.0 90.0 29.0 43.0<br />
Lloydminster 53.0 -31.0 84.0 25.0 41.0<br />
Maple Creek 49.5 -24.0 88.0 31.0 45.0<br />
Meadow Lake 54.0 -33.0 82.0 23.0 39.0<br />
Melfort 52.5 -35.0 82.0 25.0 41.0<br />
Melville 50.5 -29.0 84.0 25.0 41.0<br />
Moose Jaw 50.0 -26.0 90.0 27.0 45.0<br />
Nipawin 53.0 -36.0 82.0 25.0 41.0<br />
North Battleford 52.5 -29.0 86.0 25.0 41.0<br />
Prince Albert 53.0 -35.0 84.0 25.0 41.0<br />
Qu'Appelle 50.5 -29.0 86.0 25.0 43.0<br />
Regina 50.0 -29.0 88.0 27.0 43.0<br />
Rosetown 51.5 -27.0 90.0 27.0 43.0<br />
Saskatoon 52.0 -31.0 86.0 25.0 43.0<br />
Scott 52.0 -29.0 88.0 25.0 41.0<br />
Strasbourg 51.0 -29.0 86.0 25.0 43.0<br />
Swift Current 50.0 -26.0 90.0 29.0 43.0<br />
Uranium City 59.5 -47.0 79.0 18.0 37.0<br />
Weyburn 49.5 -27.0 90.0 27.0 43.0<br />
Yorkton 51.0 -29.0 84.0 25.0 41.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
www.eccosupply.ca 41
Manitoba<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Beausejour 50.0 -27.0 82.0 22.0 43.0<br />
Boissevain 49.0 -26.0 90.0 25.0 43.0<br />
Brandon 49.5 -27.0 88.0 23.0 43.0<br />
Churchill 58.5 -38.0 75.0 18.0 *<br />
Dauphin 51.0 -27.0 86.0 23.0 41.0<br />
Flin Flon 54.5 -36.0 81.0 22.0 39.0<br />
Gimli 50.5 -29.0 84.0 22.0 43.0<br />
Island Lake 53.5 -33.0 79.0 18.0 39.0<br />
Lac du Bonnet 50.0 -29.0 82.0 20.0 43.0<br />
Lynn Lake 56.5 -40.0 81.0 20.0 36.0<br />
Morden 49.0 -24.0 88.0 23.0 45.0<br />
Neepawa 50.0 -26.0 86.0 23.0 43.0<br />
Pine Falls 50.5 -29.0 82.0 20.0 43.0<br />
Portage la Prairie 49.5 -24.0 86.0 22.0 43.0<br />
Rivers 50.0 -29.0 86.0 23.0 43.0<br />
St. Boniface 49.5 -27.0 86.0 22.0 43.0<br />
St. Vital 49.5 -27.0 86.0 22.0 43.0<br />
Sandlands 49.0 -26.0 84.0 23.0 43.0<br />
Selkirk 50.0 -27.0 84.0 22.0 43.0<br />
Split Lake 56.0 -36.0 81.0 20.0 34.0<br />
Steinback 49.0 -27.0 86.0 22.0 43.0<br />
Swan River 52.0 -33.0 84.0 25.0 41.0<br />
The Pas 53.5 -33.0 82.0 22.0 41.0<br />
Thompson 55.5 -44.0 79.0 22.0 36.0<br />
Transcona 49.5 -27.0 86.0 22.0 43.0<br />
Vireden Virden<br />
49.5 -27.0 86.0 25.0 43.0<br />
Whiteshell 49.5 -29.0 82.0 22.0 43.0<br />
Winnipeg 49.5 -27.0 86.0 22.0 43.0<br />
* Indicates an area of continuous permafrost.<br />
Canada<br />
ENGINEERING DATA<br />
Weather Temperature and Soil Temperature Design Data<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
42<br />
www.eccosupply.ca
ENGINEERING DATA<br />
Ontario<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Ailsa Craig 43.0 1.0 86.0 22.0 50.0<br />
Ajax 43.5 -4.0 86.0 20.0 50.0<br />
Alexandria 45.0 -11.0 86.0 22.0 48.0<br />
Alliston 44.0 -9.0 84.0 23.0 48.0<br />
Almonte 45.0 -15.0 86.0 22.0 48.0<br />
Armstrong 50.0 -38.0 82.0 25.0 41.0<br />
Arnprior 45.0 -17.0 86.0 22.0 48.0<br />
Atikokan 48.0 -29.0 84.0 25.0 43.0<br />
Aurora 44.0 -6.0 86.0 23.0 48.0<br />
Bancroft 45.0 -17.0 84.0 23.0 46.0<br />
Barrie 44.0 -11.0 84.0 23.0 48.0<br />
Barriefield 44.0 -8.0 81.0 20.0 50.0<br />
Beaverton 44.0 -11.0 86.0 23.0 48.0<br />
Belleville 44.0 -8.0 84.0 22.0 50.0<br />
Belmont 42.5 1.0 86.0 22.0 50.0<br />
Bowmanville 43.5 -4.0 86.0 20.0 50.0<br />
Bracebridge 45.0 -15.0 84.0 23.0 46.0<br />
Bradford 44.0 -9.0 86.0 23.0 48.0<br />
Brampton 43.0 -2.0 86.0 22.0 48.0<br />
Brantford 43.0 1.0 86.0 22.0 50.0<br />
Brighton 44.0 -6.0 84.0 20.0 50.0<br />
Brockville 44.0 -9.0 84.0 20.0 50.0<br />
Brooklin 44.0 -4.0 86.0 23.0 48.0<br />
Burks Falls 45.0 -15.0 84.0 23.0 46.0<br />
Burlington 43.0 1.0 88.0 20.0 50.0<br />
Caledonia 43.0 1.0 86.0 23.0 48.0<br />
Cambridge 43.0 0.0 84.0 22.0 50.0<br />
Campbellford 44.0 -9.0 86.0 23.0 48.0<br />
Camp Borden 44.0 -9.0 84.0 23.0 46.0<br />
Cannington 44.0 -11.0 86.0 23.0 48.0<br />
Carleton Place 45.0 -13.0 86.0 22.0 48.0<br />
Cavan 44.0 -8.0 86.0 23.0 48.0<br />
Centralia 43.0 1.0 86.0 22.0 50.0<br />
Chapleau 47.5 -31.0 81.0 22.0 43.0<br />
Chatham 42.0 3.0 88.0 20.0 52.0<br />
Chelmsford 46.0 -18.0 84.0 22.0 46.0<br />
Chesley 44.0 -2.0 84.0 22.0 48.0<br />
Clinton 43.0 1.0 84.0 22.0 48.0<br />
Coboconk 44.0 -13.0 84.0 23.0 46.0<br />
Cobourg 43.5 -6.0 86.0 20.0 50.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
www.eccosupply.ca 43
ENGINEERING DATA<br />
Ontario<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Cochrane 49.0 -29.0 84.0 25.0 43.0<br />
Colborne 44.0 -6.0 84.0 20.0 50.0<br />
Collingwood 44.0 -8.0 84.0 22.0 46.0<br />
Cornwall 45.0 -9.0 86.0 22.0 48.0<br />
Corunna 42.0 3.0 88.0 20.0 50.0<br />
Deep River 46.0 -20.0 86.0 22.0 46.0<br />
Deseronto 44.0 -8.0 82.0 20.0 50.0<br />
Dorchester 42.5 0.0 86.0 22.0 50.0<br />
Dorion 48.5 -27.0 82.0 23.0 43.0<br />
Dresden 42.0 3.0 88.0 20.0 52.0<br />
Dryden 49.5 -29.0 81.0 22.0 43.0<br />
Dunbarton 43.5 -2.0 86.0 20.0 50.0<br />
Dunnville 42.5 5.0 86.0 20.0 50.0<br />
Durham 44.0 -4.0 84.0 22.0 48.0<br />
Dutton 42.0 3.0 88.0 20.0 50.0<br />
Earlton 47.5 -27.0 86.0 23.0 43.0<br />
Edison 49.5 -29.0 82.0 22.0 43.0<br />
Elmvale 44.0 -11.0 84.0 22.0 46.0<br />
Embro 43.0 0.0 84.0 22.0 50.0<br />
Englehart 47.5 -27.0 86.0 23.0 43.0<br />
Espanola 46.0 -13.0 82.0 20.0 46.0<br />
Exeter 43.0 1.0 86.0 22.0 50.0<br />
Fenelon Falls 44.0 -13.0 86.0 23.0 48.0<br />
Fergus 43.5 -4.0 84.0 22.0 48.0<br />
Fonthill 43.0 5.0 86.0 18.0 52.0<br />
Forest 43.0 3.0 88.0 20.0 50.0<br />
Fort Erie 42.5 5.0 86.0 18.0 50.0<br />
Fort Frances 48.5 -27.0 84.0 25.0 45.0<br />
Gananoque 44.0 -8.0 82.0 20.0 50.0<br />
Georgetown 43.5 -2.0 86.0 23.0 48.0<br />
Geraldton 49.5 -31.0 82.0 23.0 41.0<br />
Glencoe 42.5 3.0 88.0 22.0 52.0<br />
Goderich 43.5 3.0 84.0 18.0 48.0<br />
Gore Bay 45.5 9.0 84.0 20.0 46.0<br />
Graham 49.0 -35.0 84.0 23.0 43.0<br />
Gravenhurst 44.5 -15.0 84.0 23.0 46.0<br />
Grimsby 43.0 3.0 86.0 20.0 50.0<br />
Guelph 43.0 -2.0 84.0 22.0 48.0<br />
Guthrie 44.0 -11.0 84.0 23.0 48.0<br />
Hagersville 42.5 3.0 86.0 22.0 50.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
44<br />
www.eccosupply.ca
ENGINEERING DATA<br />
Ontario<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Haileybury 47.0 -26.0 86.0 22.0 45.0<br />
Haliburton 45.0 -17.0 84.0 23.0 46.0<br />
Hamilton 43.0 1.0 88.0 20.0 50.0<br />
Hanover 44.0 -2.0 86.0 22.0 48~<br />
Hastings 44.0 -9.0 86.0 23.0 48.0<br />
Hawkesbury 45.0 -13.0 86.0 22.0 48.0<br />
Hearst 49.0 -29.0 82.0 25.0 41.0<br />
Honey Harbour 44.5 -11.0 84.0 22.0 46.0<br />
Hornepayne 49.0 -35.0 82.0 25.0 41.0<br />
Huntsville 45.0 -15.0 84.0 23.0 46.0<br />
Ingersoll 43.0 0.0 86.0 22.0 50.0<br />
Jarvis 42.5 3.0 86.0 20.0 50.0<br />
Jellicoe 49.5 -33.0 82.0 23.0 41.0<br />
Kapuskasing 49.0 -27.0 82.0 25.0 41.0<br />
Kemptville 45.0 -13.0 86.0 22.0 48.0<br />
Kenora 49.5 -27.0 82.0 18.0 43.0<br />
Killaloe 45.5 -18.0 86.0 25.0 46.0<br />
Kincardine 44.0 1.0 82.0 16.0 50.0<br />
Kingston 44.0 -8.0 81.0 20.0 50.0<br />
Kinmount 44.5 -15.0 84.0 23.0 48.0<br />
Kirkland Lake 48.0 -27.0 86.0 23.0 43.0<br />
Kitchener 43.0 -2.0 84.0 22.0 48.0<br />
Lakefield 44.0 -11.0 86.0 23.0 48.0<br />
Lansdowne house 52.0 -38.0 82.0 18.0 41.0<br />
Learnington 42.0 5.0 88.0 18.0 52.0<br />
Lindsay 44.0 -11.0 86.0 23.0 48.0<br />
Lions Head 44.5 -2.0 81.0 18.0 46.0<br />
Listowel 43.5 -2.0 84.0 22.0 48.0<br />
London 42.5 0.0 86.0 22.0 50.0<br />
Lucan 43.0 1.0 86.0 22.0 50.0<br />
Maitland 44.0 -9.0 84.0 20.0 50.0<br />
Markdale 44.0 -4.0 84.0 22.0 46.0<br />
Martin 49.0 -33.0 84.0 23.0 43.0<br />
Matheson 48.0 -27.0 84.0 23.0 43.0<br />
Mattawa 46.0 -20.0 86.0 22.0 46.0<br />
Midland 44.5 -9.0 84.0 22.0 46.0<br />
Milton 43.0 0.0 86.0 22.0 50.0<br />
Milverton 43.5 -2.0 84.0 22.0 48.0<br />
Minden 44.5 -15.0 84.0 23.0 46.0<br />
Mississauga 43.5 0.0 86.0 22.0 50.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
www.eccosupply.ca 45
ENGINEERING DATA<br />
Ontario<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Mitchell 43.0 0.0 84.0 22.0 48.0<br />
Moosonee 51.0 -33.0 82.0 23.0 41.0<br />
Morrisburg 44.5 -9.0 86.0 22.0 48.0<br />
Mount Forest 43.5 -6.0 84.0 22.0 48.0<br />
Muskoka Airport 44.5 -15.0 84.0 23.0 46.0<br />
Nakina 50.0 -31.0 82.0 25.0 41.0<br />
Napanee 44.0 -8.0 82.0 20.0 48.0<br />
Newcastle 43.5 -4.0 86.0 20.0 48.0<br />
New Liskeard 47.5 -26.0 86.0 22.0 45.0<br />
Newmarket 44.0 -8.0 86.0 23.0 48.0<br />
Niagara Falls 43.0 3.0 86.0 18.0 50.0<br />
North Bay 46.0 -18.0 82.0 22.0 45.0<br />
Norwood 44.0 -11.0 86.0 23.0 48.0<br />
Oakville 43.0 0.0 86.0 20.0 50.0<br />
Orangeville 43.5 -6.0 84.0 23.0 46.0<br />
Orillia 44.5 -13.0 84.0 23.0 46.0<br />
Oshawa 43.5 -2.0 86.0 20.0 50.0<br />
Ottawa 45.0 -13.0 86.0 22.0 50.0<br />
Owen Sound 44.0 -2.0 84.0 18.0 48.0<br />
Pagwa River 50.0 -29.0 82.0 25.0 41.0<br />
Paris 43.0 1.0 86.0 22.0 50.0<br />
Parkhill 43.0 3.0 88.0 22.0 50.0<br />
Parry Sound 45.0 -11.0 82.0 20.0 46.0<br />
Pembroke 45.5 -18.0 86.0 22.0 46.0<br />
Penetanguishene 44.5 -9.0 84.0 22.0 48.0<br />
Perth 44.5 -13.0 86.0 22.0 48.0<br />
Petawawa 45.5 -20.0 86.0 22.0 46.0<br />
Peterborough 44.0 -9.0 86.0 23.0 48.0<br />
Petrolia 42.5 3.0 88.0 20.0 50.0<br />
Picton 44.0 -6.0 84.0 20.0 50.0<br />
Plattsville 43.0 0.0 84.0 22.0 50.0<br />
Pointe Alexander 46.0 -20.0 86.0 22.0 46.0<br />
Porcupine 48.0 -29.0 86.0 25.0 43.0<br />
Port Burwell 42.0 5.0 86.0 18.0 50.0<br />
Port Colborne 42.5 5.0 86.0 18.0 50.0<br />
Port Credit 43.5 0.0 86.0 20.0 50.0<br />
Port Dover 42.5 5.0 86.0 18.0 50.0<br />
Port Elgin 44.0 1.0 82.0 18.0 48.0<br />
Port Hope 43.5 -6.0 86.0 20.0 50.0<br />
Port Perry 44.0 -8.0 86.0 23.0 48.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
46<br />
www.eccosupply.ca
ENGINEERING DATA<br />
Ontario<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Port Stanley 42.5 5.0 88.0 18.0 50.0<br />
Prescott 44.5 -9.0 84.0 20.0 50.0<br />
Princeton 43.0 1.0 84.0 22.0 50.0<br />
Raith 48.5 -31.0 82.0 25.0 43.0<br />
Red Lake 51.0 -29.0 82.0 20.0 41.0<br />
Renfrew 45.0 -17.0 86.0 22.0 48.0<br />
Ridgeway 42.5 5.0 86.0 18.0 50.0<br />
Rockland 45.5 -15.0 86.0 22.0 50.0<br />
St. Catharines 43.0 3.0 86.0 20.0 50.0<br />
St. Mary's 43.0 0.0 86.0 22.0 50.0<br />
St. Thomas 42.5 3.0 88.0 20.0 50.0<br />
Sarnia 42.5 3.0 88.0 20.0 50.0<br />
Sault Ste. Marie 46.5 -13.0 84.0 22.0 46.0<br />
Schreiber 48.5 -31.0 81.0 18.0 41.0<br />
Seaforth 43.5 1.0 86.0 22.0 48.0<br />
Simcoe 42.5 1.0 86.0 20.0 50.0<br />
Sioux Lookout 50.0 -29.0 82.0 22.0 43.0<br />
Smiths Falls 44.5 -13.0 86.0 22.0 48.0<br />
Smithville 43.0 3.0 86.0 20.0 50.0<br />
Smooth Rock Falls 49.0 -29.0 84.0 25.0 41.0<br />
Southampton 44.0 1.0 82.0 18.0 48.0<br />
South Porcupine 48.5 -29.0 86.0 25.0 43.0<br />
South River 45.5 -17.0 82.0 23.0 46.0<br />
Stirling 44.0 -9.0 86.0 23.0 48.0<br />
Stratford 43.0 0.0 84.0 22.0 48.0<br />
Strathroy 42.5 1.0 88.0 22.0 50.0<br />
Streetsville 43.5 0.0 86.0 22.0 48.0<br />
Sturgeon Falls 46.0 -17.0 84.0 23.0 46.0<br />
Sudbury 46.5 -18.0 84.0 22.0 46.0<br />
Sundridge 45.5 -17.0 82.0 23.0 46.0<br />
Tavistock 43.0 0.0 84.0 22.0 50.0<br />
Thamesford 43.0 0.0 86.0 22.0 50.0<br />
Thedford 43.0 3.0 88.0 20.0 50.0<br />
Thunder Bay 48.0 -24.0 82.0 23.0 43.0<br />
Tilsonburg 42.5 1.0 86.0 20.0 50.0<br />
Timagami 47.0 -22.0 86.0 23.0 46.0<br />
Timmins 48.0 -29.0 86.0 25.0 43.0<br />
Toronto 43.5 0.0 88.0 20.0 50.0<br />
Trenton 44.0 -6.0 84.0 20.0 50.0<br />
Trout Creek 45.5 -17.0 82.0 23.0 46.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
www.eccosupply.ca 47
ENGINEERING DATA<br />
Ontario<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Uxbridge 44.0 -8.0 86.0 23.0 48.0<br />
Vanier 45.0 -13.0 86.0 22.0 50.0<br />
Vittoria 42.5 5.0 86.0 18.0 50.0<br />
Walkerton 44.0 0.0 86.0 22.0 48.0<br />
Wallaceburg 42.5 3.0 88.0 20.0 52.0<br />
Waterloo 43.5 -2.0 84.0 22.0 48.0<br />
Watford 42.5 3.0 88.0 20.0 50.0<br />
Wawa 47.5 -31.0 79.0 18.0 43.0<br />
Welland 42.5 5.0 86.0 18.0 50.0<br />
West Lorne 42.5 3.0 88.0 20.0 52.0<br />
Whitby 43.5 -4.0 86.0 20.0 50.0<br />
White River 48.5 -38.0 82.0 25.0 43.0<br />
Wiarton 44.5 0.0 82.0 18.0 48.0<br />
Windsor 42.0 3.0 88.0 20.0 52.0<br />
Wingham 43.5 0.0 86.0 22.0 48.0<br />
Woodstock 43.0 0.0 84.0 22.0 50.0<br />
Wyoming 42.5 3.0 88.0 20.0 50.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
48<br />
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ENGINEERING DATA<br />
Quebec<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Acton Vale 45.5 -11.0 86.0 22.0 46.0<br />
Alma 48.5 -22.0 84.0 22.0 43.0<br />
Amos 48.5 -29.0 82.0 23.0 43.0<br />
Ancienne Lorette 46.5 -13.0 82.0 22.0 45.0<br />
Asbestos 45.5 -15.0 84.0 22.0 46.0<br />
Aylmer 45.0 -13.0 86.0 22.0 48.0<br />
Bagotville 48.0 -24.0 82.0 22.0 43.0<br />
Bale Comeau 49.0 -17.0 77.0 18.0 43.0<br />
Beaconsfield 45.0 -9.0 86.0 22.0 48.0<br />
Beauport 46.5 -13.0 82.0 22.0 45.0<br />
Bedford 45.0 -9.0 84.0 22.0 48.0<br />
Beloeil 45.5 -11.0 86.0 22.0 48.0<br />
Brossard 45.0 -11.0 86.0 22.0 48.0<br />
Buckingham 45.5 -15.0 86.0 22.0 48.0<br />
Campbell's Bay 45.5 -18.0 86.0 22.0 48.0<br />
Chicoutimi 48.5 -22.0 82.0 22.0 43.0<br />
Coaticook 45.0 -11.0 82.0 22.0 46.0<br />
Contrecoeur 45.5 -11.0 86.0 22.0 48.0<br />
Cowansville 45.0 -11.0 84.0 22.0 48.0<br />
Dolbeau 48.5 -24.0 64.0 22.0 43.0<br />
Dorval 45.5 -9.0 86.0 22.0 48.0<br />
Drummondville 45.5 -13.0 86.0 22.0 48.0<br />
Farnham 45.0 -11.0 84.0 22.0 48.0<br />
Fort Coulonge 45.5 -18.0 86.0 22.0 48.0<br />
Gagnon 51.5 -27.0 75.0 18.0 39.0<br />
Gaspe 48.5 -9.0 77.0 18.0 45.0<br />
Gatineau 45.5 -13.0 86.0 22.0 48.0<br />
Gentilly 46.0 -13.0 86.0 22.0 48.0<br />
Gracefield 46.0 -18.0 86.0 23.0 46.0<br />
Granby 45.0 -18.0 84.0 22.0 46.0<br />
Harrington Harbour 50.5 -13.0 63.0 11.0 45.0<br />
Havre St. Pierre 50.0 -17.0 72.0 14.0 43.0<br />
Hemmingford 45.0 -9.0 84.0 22.0 48.0<br />
Hull 45.0 -13.0 86.0 22.0 48.0<br />
Iberville 45.0 -11.0 84.0 22.0 48.0<br />
Joliette 46.0 -13.0 84.0 22.0 46.0<br />
Jonquiere 48.0 -20.0 84.0 22.0 43.0<br />
Kenogami 47.5 -20.0 84.0 22.0 45.0<br />
Kovik Bay 61.5 -36.0 59.0 14.0 *<br />
Lachine 45.0 -9.0 86.0 22.0 48.0<br />
*Indicates an area of continuous permafrost.<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
Quebec<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Lachute 45.5 -13.0 84.0 22.0 48.0<br />
La Malbaie 47.5 -15.0 82.0 20.0 45.0<br />
LaSalle 45.0 -9.0 86.0 22.0 48.0<br />
La Tuque 47.0 -20.0 84.0 22.0 45.0<br />
Laval 45.5 -11.0 84.0 22.0 48.0<br />
Lennoxville 45.0 -18.0 84.0 22.0 46.0<br />
Lery 45.0 -9.0 84.0 22.0 48.0<br />
Levis 46.5 -13.0 82.0 22.0 45.0<br />
Loretteville 46.5 -13.0 82.0 22.0 45.0<br />
Louiseville 46.0 -11.0 84.0 22.0 48.0<br />
Magog 45.0 -15.0 84.0 22.0 46.0<br />
Malartic 48.0 -27.0 84.0 23.0 43.0<br />
Maniwaki 46.0 -20.0 84.0 23.0 46.0<br />
Masson 45.5 -15.0 86.0 22.0 48.0<br />
Matane 48.5 -11.0 75.0 16.0 45.0<br />
Megantic 45.5 -17.0 81.0 22.0 45.0<br />
Mount Joli 48.5 -11.0 75.0 18.0 45.0<br />
Mont Laurier 46.5 -20.0 84.0 23.0 45.0<br />
Montemagny 46.5 -13.0 82.0 22.0 45.0<br />
Montreal 45.5 -9.0 86.0 22.0 48.0<br />
Montreal Nord 45.5 -9.0 86.0 22.0 48.0<br />
Mount Royal 45.5 -9.0 86.0 22.0 48.0<br />
Nitchequon 53.0 -36.0 73.0 18.0 36.0<br />
Noranda 48.0 -27.0 84.0 23.0 43.0<br />
Outremont 45.5 -9.0 86.0 22.0 48.0<br />
Perce 48.5 -8.0 77.0 16.0 45.0<br />
Pierrefonds 45.0 -9.0 86.0 22.0 48.0<br />
Pincourt 45.0 -9.0 84.0 22.0 48.0<br />
Plessisville 46.0 -15.0 84.0 22.0 46.0<br />
Point Claire 45.0 -9.0 86.0 22.0 48.0<br />
Port Cartier 50.0 -20.0 77.0 18.0 43.0<br />
Quebec 46.5 -13.0 82.0 22.0 45.0<br />
Richmond 45.5 -13.0 84.0 22.0 45.0<br />
Rimouski 48.0 -13.0 77.0 18.0 45.0<br />
Riviere-du-Loup 47.5 -13.0 81.0 20.0 45.0<br />
Roberval 48.5 -22.0 82.0 22.0 43.0<br />
Rock Island 45.0 -11.0 82.0 22.0 46.0<br />
Rosemere 45.5 -11.0 84.0 22.0 48.0<br />
Rouyn 48.0 -27.0 84.0 23.0 43.0<br />
Ste-Agathe-des-Monts 46.0 -17.0 81.0 22.0 45.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
50<br />
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ENGINEERING DATA<br />
Quebec<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Ste-Anne-de-Bellevue 45.0 -9.0 84.0 22.0 48.0<br />
St-Felicien 48.5 -24.0 82.0 22.0 43.0<br />
Ste-Foy 46.5 -13.0 82.0 22.0 45.0<br />
St-Hubert 45.5 -11.0 86.0 22.0 48.0<br />
St-Hubert-de-Temiscouata 47.5 -15.0 79.0 20.0 45.0<br />
St-Hyacinthe 45.5 -11.0 86.0 22.0 48.0<br />
St-Jean 45.0 -11.0 84.0 22.0 48.0<br />
St-Jerome 45.5 -13.0 84.0 22.0 48.0<br />
St-Jovite 46.0 -17.0 81.0 22.0 45.0<br />
St-Lambert 45.5 -9.0 86.0 22.0 48.0<br />
St-Laurent 45.5 -9.0 86.0 22.0 48.0<br />
St-Nicolas 46.5 -13.0 82.0 22.0 45.0<br />
Schefferville 54.5 -36.0 75.0 18.0 34.0<br />
Senneterre 48.0 -29.0 84.0 23.0 43.0<br />
Sept-Iles 50.0 -22.0 75.0 16.0 43.0<br />
Shawinigan 46.5 -15.0 84.0 22.0 46.0<br />
Shawville 45.5 -17.0 86.0 22.0 48.0<br />
Sherbrooke 45.0 -18.0 84.0 22.0 46.0<br />
Sillery 46.5 -13.0 82.0 22.0 45.0<br />
Sorel 46.0 -11.0 86.0 22.0 48.0<br />
Sutton 45.0 -11.0 84.0 22.0 46.0<br />
Tadoussac 48.0 -15.0 81.0 18.0 45.0<br />
Temiscaming 46.5 -22.0 86.0 22.0 46.0<br />
Thetford Mines 46.0 -15.0 82.0 22.0 45.0<br />
Thurso 45.5 -15.0 86.0 22.0 48.0<br />
Trois-Riveres 46.0 -13.0 84.0 22.0 48.0<br />
Val d'Or 48.0 -27.0 84.0 23.0 43.0<br />
Varennes 45.5 -11.0 86.0 22.0 48.0<br />
Vercheres 45.5 -11.0 86.0 22.0 48.0<br />
Verdun 45.0 -9.0 86.0 22.0 48.0<br />
Victoriaville 46.0 -15.0 84.0 22.0 46.0<br />
Ville Marie 47.0 -24.0 86.0 22.0 45.0<br />
Waterloo 45.0 -11.0 84.0 22.0 48.0<br />
Westmount 45.0 -9.0 86.0 22.0 48.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
Nova Scotia<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Amhurst 45.5 -6.0 81.0 20.0 46.0<br />
Antigonish 45.5 -4.0 81.0 20.0 46.0<br />
Bridgewater 44.0 5.0 81.0 20.0 45.0<br />
Canso 45.0 1.0 77.0 14.0 46.0<br />
Dartmouth 44.5 3.0 79.0 14.0 46.0<br />
Debert 45.0 -8.0 81.0 22.0 45.0<br />
Digby 44.5 5.0 77.0 18.0 48.0<br />
Greenwood 45.5 1.0 82.0 20.0 45.0<br />
Halifax 44.5 3.0 79.0 14.0 46.0<br />
Kentville 45.0 0.0 82.0 20.0 48.0<br />
Liverpool 44.0 7.0 81.0 14.0 48.0<br />
Lockeport 43.5 7.0 77.0 14.0 48.0<br />
Louisburg 45.5 5.0 79.0 16.0 46.0<br />
Lunenburg 44.0 5.0 79.0 18.0 46.0<br />
New Glasgow 45.5 -6.0 81.0 20.0 45.0<br />
North Sydney 46.0 3.0 81.0 16.0 46.0<br />
Pictou 45.5 -6.0 81.0 20.0 46.0<br />
Port Hawkesbury 45.5 -2.0 81.0 18.0 46.0<br />
Springhill 45.5 -4.0 81.0 20.0 45.0<br />
Stewiacke 45.0 -6.0 81.0 22.0 45.0<br />
Sydney 46.0 3.0 81.0 18.0 46.0<br />
Tatamagouche 45.5 -6.0 81.0 20.0 46.0<br />
Truro 45.0 -6.0 81.0 22.0 45.0<br />
Wolfville 45.0 -2.0 82.0 22.0 48.0<br />
Yarmouth 43.5 9.0 72.0 14.0 48.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
52<br />
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ENGINEERING DATA<br />
New Brunswick<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Alma 45.5 -6.0 79.0 20.0 45.0<br />
Bathurst 47.5 -9.0 86.0 20.0 45.0<br />
Campbelton 48.0 -15.0 84.0 22.0 45.0<br />
Chatham 47.0 -11.0 86.0 22.0 45.0<br />
Edmundston 47.0 -17.0 82.0 22.0 45.0<br />
Fredericton 45.5 -11.0 84.0 22.0 46.0<br />
Gagetown 45.5 -9.0 82.0 22.0 46.0<br />
Grand Falls 47.0 -17.0 82.0 22.0 45.0<br />
Moncton 46.0 -8.0 82.0 22.0 46.0<br />
Oromocto 45.5 -9.0 84.0 22.0 46.0<br />
Sackville 45.5 -6.0 81.0 20.0 46.0<br />
Saint John 45.0 -8.0 77.0 20.0 45.0<br />
St. Stephen 45.0 -8.0 81.0 20.0 45.0<br />
Shippigan 47.5 -8.0 82.0 16.0 45.0<br />
Woodstock 46.0 -15.0 86.0 22.0 46.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
Newfoundland<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Argintia 47.0 9.0 70.0 11.0 46.0<br />
Bonavista 48.5 1.0 75.0 16.0 45.0<br />
Buchans 48.5 -6.0 79.0 22.0 43.0<br />
Cape Harrison 54.5 -20.0 81.0 14.0 41.0<br />
Cape Race 46.5 7.0 66.0 13.0 45.0<br />
Cornerbrook 48.5 -2.0 79.0 18.0 46.0<br />
Gander 48.5 0.0 81.0 20.0 45.0<br />
Goose Bay 53.0 -24.0 81.0 18.0 41.0<br />
Grand Bank 47.0 7.0 68.0 13.0 46.0<br />
Grand Falls 48.5 -6.0 79.0 22.0 45.0<br />
Labrador City 52.5 -31.0 73.0 18.0 37.0<br />
Port aux Basques 47.5 5.0 66.0 11.0 45.0<br />
St. Anthony 51.0 -11.0 63.0 16.0 41.0<br />
St. John's 47.0 7.0 75.0 16.0 45.0<br />
Stephenville 48.5 1.0 75.0 14.0 46.0<br />
Twin Falls 53.5 -31.0 73.0 18.0 39.0<br />
Wabana 47.5 5.0 75.0 16.0 45.0<br />
Wabush Lake 52.5 -31.0 73.0 18.0 37.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
Prince Edward Island<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Charlottetown 46.0 -4.0 79.0 16.0 46.0<br />
Souris 46.0 -2.0 81.0 16.0 46.0<br />
Summerside 46.0 -4.0 81.0 16.0 46.0<br />
Tignish 46.5 -4.0 81.0 16.0 46.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
Yukon<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Aishihik 61.5 -47.0 73.0 25.0 36.0<br />
Dawson 64.0 -58.0 79.0 25.0 34.0<br />
Destruction Bay 61.0 -45.0 75.0 25.0 36.0<br />
Snag 62.0 -60.0 73.0 25.0 36.0<br />
Teslin 60.0 -42.0 77.0 22.0 39.0<br />
Watson Lake 60.0 -51.0 79.0 22.0 39.0<br />
Whitehorse 60.5 -42.0 77.0 22.0 37.0<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
56<br />
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ENGINEERING DATA<br />
North West Territories<br />
97.5% Htg 97.5% Clg Summer Average<br />
Location Northern Outdoor Outdoor Mean Soil<br />
Latitude Design Design Daily Temp.<br />
Temp. °F. Temp. °F. Range °F. °F.<br />
Aklavik 68.0 -47.0 75.0 20.0 *<br />
Alert 82.0 -45.0 55.0 11.0 *<br />
Artic Bay 73.0 -45.0 57.0 14.0 *<br />
Baker Lake 64.0 -49.0 70.0 18.0 *<br />
Ca~ridge Bay 69.0 -49.0 61.0 14.0 *<br />
Chesterfield Inlet 63.0 -40.0 68.0 16.0 *<br />
Clyde 70.0 -42.0 59.0 13.0 *<br />
Coppermine 67.5 -47.0 68.0 14.0 *<br />
Coral Harbour 64.0 -42.0 64.0 16.0 *<br />
Eskimo Point 61.0 -40.0 70.0 16.0 *<br />
Eureka 79.5 -53.0 54.0 11.0 *<br />
Fort Good Hope 66.0 -51.0 81.0 23.0 30.0<br />
Fort Providence 61.0 -47.0 75.0 23.0 37.0<br />
Fort Resolution 61.0 -44.0 79.0 18.0 36.0<br />
Fort Simpson 61.5 -49.0 81.0 23.0 36.0<br />
Fort Smith 60.0 -45.0 82.0 23.0 37.0<br />
Frobisher Bay 63.5 -40.0 61.0 14.0 *<br />
Hay River 60.5 -42.0 79.0 18.0 37.0<br />
Holeman Island 70.5 -45.0 64.0 14.0 *<br />
Inuvik 68.0 -51.0 77.0 22.0 *<br />
Isachen 78.5 -51.0 54.0 9.0 *<br />
Mould Bay 76.0 -49.0 50.0 9.0 *<br />
Norman Wells 65.0 -51.0 81.0 23.0 32.0<br />
Nottingham Island 63.0 -36.0 57.0 14.0 *<br />
Port Radium 66.0 -47.0 72.0 16.0 30.0<br />
Rae 62.5 -47.0 75.0 18.0 32.0<br />
Rankin Inlet 62.5 -40.0 68.0 16.0 *<br />
Resolute 74.5 -47.0 52.0 9.0 *<br />
Resolution Island 61.0 -31.0 46.0 11.0 *<br />
Tungsten 61.5 -56.0 79.0 22.0 36.0<br />
Yellowknife 62.0 -45.0 77.0 18.0 32.0<br />
*Indicates an area of continuous permafrost.<br />
Canada<br />
Weather Temperature and Soil Temperature Design Data<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
www.eccosupply.ca 57
Section 3: Superheat/Subcooling<br />
ENGINEERING DATA<br />
PRESSURE/TEMPERATURE Table 1: Pressure/Temperature Chart, R-410A CHART, Refrigerant R-410A REFRIGERANT<br />
Saturation Saturation Saturation<br />
Pressure Temp (°F) Pressure Temp (°F) Pressure Temp (°F)<br />
PSIG R-410A PSIG R-410A PSIG R-410A<br />
0 -60 125 43 370 111<br />
2 -58 130 45 375 112<br />
4 -54 135 47 380 113<br />
6 -50 140 49 385 114<br />
8 -46 145 51 390 115<br />
10 -42 150 53 395 116<br />
12 -39 155 55 400 117<br />
14 -36 160 57 405 118<br />
16 -33 165 59 410 119<br />
18 -30 170 60 415 120<br />
20 -28 175 62 420 121<br />
22 -26 180 64 425 122<br />
24 -24 185 66 430 122<br />
26 -20 190 67 435 123<br />
28 -18 195 69 440 124<br />
30 -16 200 70 445 125<br />
32 -14 205 72 450 126<br />
34 -12 210 73 455 127<br />
36 -10 215 75 460 128<br />
38 -8 220 76 465 129<br />
40 -6 225 78 470 130<br />
42 -4 230 79 475 130<br />
44 -3 235 80 480 131<br />
46 -2 240 82 485 132<br />
48 0 245 83 490 133<br />
50 1 250 84 495 134<br />
52 3 255 85 500 134<br />
54 4 260 87 505 135<br />
56 6 265 88 510 136<br />
58 7 270 89 515 137<br />
60 8 275 90 520 138<br />
62 10 280 91 525 138<br />
64 11 285 92 530 139<br />
66 13 290 94 535 140<br />
68 14 295 95 540 141<br />
70 15 300 96 545 142<br />
72 16 305 97 550 142<br />
74 17 310 98 555 143<br />
76 19 315 99 560 144<br />
78 20 320 100 565 145<br />
80 21 325 101 570 146<br />
85 24 330 102 575 146<br />
90 26 335 104 580 147<br />
95 29 340 105 585 148<br />
100 32 345 106 590 149<br />
105 34 350 108 595 149<br />
110 36 355 108 600 149<br />
115 39 360 109 650 154<br />
120 41 365 110 700 159<br />
Enertech Manufacturing, LLC.<br />
For reference only. No guarantee on accuracy of tables.<br />
16<br />
Refrigeration/Troubleshooting Guide<br />
04/11<br />
58<br />
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Section 3: Superheat/Subcooling<br />
ENGINEERING DATA<br />
PRESSURE/TEMPERATURE Table 2: Pressure/Temperature Chart, R-22 CHART, Refrigerant R-22 REFRIGERANT<br />
Saturation Saturation Saturation<br />
Pressure Temp (°F) Pressure Temp (°F) Pressure Temp (°F)<br />
PSIG R-22 PSIG R-22 PSIG R-22<br />
0 -41 90 54 300 132<br />
2 -37 95 56 305 133<br />
4 -32 100 59 310 134<br />
6 -28 105 62 315 135<br />
8 -24 110 64 320 136<br />
10 -20 115 67 325 137<br />
12 -17 120 69 330 138<br />
14 -14 125 72 335 140<br />
16 -11 130 74 340 141<br />
18 -8 135 76 345 142<br />
20 -5 140 78 350 144<br />
22 -3 145 81 355 144<br />
24 0 150 83 360 145<br />
26 2 155 85 365 146<br />
28 5 160 87 370 147<br />
30 7 165 89 375 148<br />
32 9 170 91 380 149<br />
34 11 175 93 385 151<br />
36 13 180 94 390 152<br />
38 15 185 96 395 153<br />
40 17 190 98 400 155<br />
42 19 195 100 405 155<br />
44 21 200 101 410 156<br />
46 23 205 103 415 158<br />
48 24 210 105 420 159<br />
50 26 215 107 425 160<br />
52 28 220 108 430 160<br />
54 29 225 110 435 161<br />
56 31 230 112 440 162<br />
58 32 235 113 445 163<br />
60 34 240 115 450 164<br />
62 35 245 116 455 165<br />
64 37 250 118 460 167<br />
66 38 255 119 465 168<br />
68 40 260 120 470 169<br />
70 41 265 121 475 169<br />
72 42 270 123 480 170<br />
74 44 275 124 485 171<br />
76 45 280 126 490 172<br />
78 46 285 127 495 173<br />
80 48 290 129 500 173<br />
85 51 295 130<br />
For reference only. No guarantee on accuracy of tables.<br />
Refrigeration/Troubleshooting Guide 17<br />
www.eccosupply.ca 59<br />
Enertech Manufacturing, LLC.<br />
04/11
ENGINEERING DATA<br />
PRESSURE LOSS CHARTS<br />
COPPER PIPE PRESSURE LOSSES* (TYPE L)<br />
Table 5: Copper Pipe Pressure Losses 4 (Type L)<br />
Bulletin 40-60 (October 2004) — Page 11<br />
Flow Rate,<br />
Pressure Drop, ft water/100 ft (kPa/m)<br />
GPM (L/s) ½" (12 mm) 3/4" (20 mm) 1" (25 mm) 1-1/4" (32 mm) 1-1/2" (38 mm) 2" (51 mm)<br />
1 (0.08) 2.7 [0.26] 0.4 [0.04] - - - -<br />
2 (0.13) 10.0 [0.98] 1.5 [0.15] 0.4 [0.04] - - -<br />
3 (0.19) 21.0 [2.10] 3.1 [0.30] 0.8 [0.08] 0.3 [0.03] - -<br />
4 (0.25) - 5.4 [0.53] 1.3 [0.13] 0.5 [0.05] 0.2 [0.02] -<br />
5 (0.32) - 8.0 [0.78] 2.0 [0.20] 0.8 [0.07] 0.3 [0.03] -<br />
6 (0.38) - 11.0 [1.1] 2.8 [0.27] 1.0 [0.10] 0.5 [0.04] -<br />
7 (0.44) - 15.0 [1.5] 3.6 [0.35] 1.4 [0.14] 0.6 [0.05] -<br />
8 (0.50) - 19.0 [1.9] 4.6 [0.45] 1.7 [0.17] 0.8 [0.07] -<br />
9 (0.57) - - 5.9 [0.58] 2.1 [0.21] 0.9 [0.09] 0.2 [0.02]<br />
10 (0.63) - - 7.0 [0.69] 2.6 [0.26] 1.1 [0.11] 0.3 [0.03]<br />
11 (0.69) - - 8.5 [0.83] 3.1 [0.30] 1.3 [0.13] 0.3 [0.03]<br />
12 (0.76) - - 10.0 [0.98] 3.6 [0.35] 1.5 [0.15] 0.4 [0.04]<br />
14 (0.88) - - 13.0 [1.3] 5.0 [0.49] 2.0 [0.20] 0.5 [0.05]<br />
16 (1.01) - - 17.0 [1.7] 6.1 [0.60] 2.6 [0.26] 0.7 [0.06]<br />
18 (1.14) - - 21.0 [2.1] 7.7 [0.76] 3.2 [0.31] 0.8 [0.08]<br />
20 (1.26) - - - 9.5 [0.93] 4.0 [0.39] 1.0 [0.10]<br />
22 (1.39) - - - 11.0 [1.1] 4.6 [0.45] 1.2 [0.12]<br />
24 (1.51) - - - 13.0 [1.3] 5.5 [0.54] 1.4 [0.14]<br />
26 (1.64) - - - 15.5 [1.5] 6.5 [0.64] 1.6 [0.16]<br />
28 (1.77) - - - 17.5 [1.7] 7.3 [0.72] 1.8 [0.18]<br />
30 (1.89) - - - 20.0 [2.0] 8.2 [0.80] 2.0 [0.20]<br />
32 (2.02) - - - - 9.4 [0.92] 2.3 [0.23]<br />
34 (2.15) - - - - 10.5 [1.03] 2.6 [0.26]<br />
36 (2.27) - - - - 11.5 [1.13] 2.9 [0.28]<br />
For reference only. No guarantee on accuracy of tables.<br />
*Reference: Bell and Gossett – System Syzer Calculator<br />
04/11<br />
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ENGINEERING DATA<br />
Bulletin 40-60 (October 2004) — Page 12<br />
PRESSURE LOSS CHARTS (cont’d)<br />
PEX PIPE PRESSURE LOSSES *<br />
Table 6: PEX Pipe Pressure Losses 5<br />
Flow rate,<br />
Pressure Drop, ft water/100 ft (kPa/m)<br />
GPM (L/s) 1/2” (12 mm) 3/4“ (20 mm) 1” (25 mm) 1-1/4” (32 mm) 1-1/2” (38 mm) 2” (51 mm)<br />
1 (0.08) 3.7 [0.36] 0.7 [0.07] 0.2 [0.02] 0.09 [0.01] 0.05 [0.005] 0.01 [0.001]<br />
2 (0.13) 12.7 [1.3] 2.5 [0.25] 0.7 [0.07] 0.2 [0.02] 0.14 [0.01] 0.05 [0.005]<br />
3 (0.19) 26.1 [2.6] 5.1 [0.50] 1.6 [0.16] 0.7 [0.07] 0.2 [0.02] 0.07 [0.007]<br />
4 (0.25) 43.8 [4.3] 8.5 [0.83] 2.5 [0.25] 0.9 [0.1] 0.5 [0.05] 0.1 [0.01]<br />
5 (0.32) 65.3 [6.4] 12.9 [1.3] 3.9 [0.38] 1.4 [0.14] 0.7 [0.07] 0.2 [0.02]<br />
6 (0.38) 90.7 [8.9] 17.8 [1.8] 5.3 [0.52] 2.1 [0.21] 0.9 [0.10] 0.2 [0.02]<br />
7 (0.44) - 23.5 [2.3] 7.2 [0.71] 2.8 [0.27] 1.2 [0.12] 0.2 [0.02]<br />
8 (0.50) - 29.8 [2.9] 9.0 [0.88] 3.5 [0.34] 1.6 [0.16] 0.5 [0.05]<br />
9 (0.57) - 36.9 [3.6] 11.1 [1.1] 4.2 [0.41] 1.8 [0.18] 0.5 [0.05]<br />
10 (0.63) - 44.5 [4.4] 13.4 [1.3] 5.1 [0.50] 2.3 [0.23] 0.7 [0.07]<br />
11 (0.69) - 52.8 [5.2] 15.9 [1.6] 6.0 [0.59] 2.8 [0.27] 0.7 [0.07]<br />
12 (0.76) - 61.8 [6.1] 18.7 [1.8] 7.2 [0.71] 3.2 [0.31] 0.9 [0.10]<br />
14 (0.88) - - 24.5 [2.4] 9.5 [0.93] 4.2 [0.41] 1.2 [0.12]<br />
16 (1.01) - - 31.1 [3.1] 12.0 [1.2] 5.3 [0.52] 1.4 [0.14]<br />
18 (1.14) - - 38.5 [3.8] 14.8 [1.5] 6.7 [0.66] 1.8 [0.18]<br />
20 (1.26) - - 46.6 [4.6] 17.8 [1.8] 8.1 [0.79] 2.3 [0.23]<br />
22 (1.39) - - - 21.2 [2.1] 9.5 [0.93] 2.5 [0.25]<br />
24 (1.51) - - - 24.7 [2.4] 11.1 [1.1] 3.0 [0.29]<br />
26 (1.64) - - - 28.6 [2.8] 12.9 [1.3] 3.5 [0.34]<br />
28 (1.77) - - - 32.8 [3.2] 14.8 [1.5] 3.9 [0.38]<br />
30 (1.89) - - - 36.9 [3.6] 16.6 [1.6] 4.6 [0.45]<br />
32 (2.02) - - - - 18.7 [1.8] 5.1 [0.50]<br />
34 (2.15) - - - - 20.8 [2.0] 5.8 [0.57]<br />
36 (2.27) - - - - 23.1 [2.3] 6.2 [0.61]<br />
Highlighted numbers indicate 8 f/s maximum velocity required by some plumbing codes.<br />
*Reference: REHAU Pipe<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
PRESSURE LOSS CHARTS (cont’d)<br />
Bulletin 40-60 (October 2004) — Page 13<br />
PVC PIPE (SCHEDULE 80) PRESSURE LOSSES*<br />
Table 7: PVC Pipe (Schedule 80) Pressure Losses 6<br />
Flow rate, GPM<br />
Pressure Drop, ft water/100 ft (kPa/m)<br />
(L/s) 1/2” (12 mm) 3/4“ (20 mm) 1” (25 mm) 1-1/4” (32 mm) 1-1/2” (38 mm) 2” (51 mm)<br />
1 (0.08) 2.5 [0.2] 0.6 [0.06] - - - -<br />
2 (0.13) 8.5 [0.8] 1.9 [0.2] 0.7 [0.07] - - -<br />
3 (0.19) 17.0 [1.7] 4.0 [0.4] 1.2 [0.1] - - -<br />
4 (0.25) 27.0 [2.6] 6.5 [0.6] 1.9 [0.2] 0.5 [0.05] - -<br />
5 (0.32) - 9.5 [0.9] 2.9 [0.3] 0.7 [0.07] - -<br />
6 (0.38) - 13.0 [1.3] 4.0 [0.4] 1.0 [0.1] - -<br />
7 (0.44) - 17.0 [1.7] 5.0 [0.5] 1.3 [0.1] 0.6 [0.06] -<br />
8 (0.50) - 22.0 [2.2] 6.5 [0.6] 1.7 [0.2] 0.8 [0.08] -<br />
9 (0.57) - 26.0 [2.6] 8.0 [0.8] 2.0 [0.2] 0.9 [0.09] -<br />
10 (0.63) - 30.0 [2.9] 9.5 [0.9] 2.4 [0.2] 1.2 [0.12] -<br />
11 (0.69) - - 11.5 [1.1] 2.7 [0.3] 1.4 [0.14] -<br />
12 (0.76) - - 13.0 [1.3] 3.2 [0.3] 1.5 [0.15] 0.4 [0.04]<br />
14(0.88) - - 17.0 [1.7] 4.5 [0.4] 2.0 [0.20] 0.6 [0.06]<br />
16 (1.01) - - 21.0 [2.1] 5.4 [0.5] 2.5 [0.25] 0.8 [0.08]<br />
18 (1.14) - - 25.0 [2.5] 7.0 [0.7] 3.4 [0.33] 1.0 [0.10]<br />
20 (1.26) - - 31.0 [0.3] 8.0 [0.8] 3.9 [0.4] 1.2 [0.12]<br />
22 (1.39) - - - 9.5 [0.9] 4.5 [0.4] 1.3 [0.13]<br />
24 (1.51) - - - 11.5 [1.1] 5.0 [0.5] 1.4 [0.14]<br />
26 (1.64) - - - 13.5 [1.3] 6.0 [0.6] 1.8 [0.18]<br />
28 (1.77) - - - 15.0 [1.5] 7.0 [0.7] 2.0 [0.20]<br />
30 (1.89) - - - 16.5 [1.6] 8.0 [0.8] 2.4 [0.24]<br />
32 (2.02) - - - 18.0 [1.8] 8.5 [0.8] 2.5 [0.25]<br />
34 (2.15) - - - 20.0 [2.0] 9.5 [0.9] 2.7 [0.26]<br />
36 (2.27) - - - 23.0 [2.3] 11.0 [1.1] 3.0 [0.29]<br />
Highlighted numbers indicate velocity over 4 f/s.<br />
*Reference: 2001 ASHRAE Fundamentals, F35.6<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
Vanguard<br />
HVAC & R<br />
M A TER I AL S PECI FIC A TION SHEET<br />
SCOPE:<br />
MATERIAL:<br />
GEO-Black <br />
High Density Polyethylene Pipe<br />
This material specification designates the requirements for Vanguard GEO-Black polyethylene piping<br />
products for use in ground source heat exchanger applications. All GEO-Black IPS-OD, SDR-11 and<br />
Schedule 40 dimension piping products meet the respective requirements of ASTM D 3035 and ASTM D<br />
2447.<br />
All GEO-Black piping products are manufactured from PE 4710 high density polyethylene resin meeting the<br />
cell classification 445574C per ASTM D3350. Material exceeds the more stringent 5000 HR ESCR Test<br />
required for this application. The material contains carbon black as a UV inhibitor and can be stored outstide.<br />
MARKING:<br />
RECOMMENDED<br />
USES:<br />
CONNECTIONS:<br />
HANDLING AND<br />
INSTALLATION:<br />
All GEO-Black piping products are marked with the name Vanguard as the manufacturer, product trade<br />
name, nominal size, design temperature ratings, relevant ASTM standards numbers, CSA B137.1 and C448,<br />
material cell classification, manufacturing date, production code and decremental footage numbering on coils<br />
200' and greater in length.<br />
GEO-Black pipe is intended and recommended for use as the buried heat exchanger and transfer piping<br />
in open or closed loop ground source heat pump applications. Design temperature rating for GEO-Black<br />
pipe is 73.4˚F.; however, intermittent exposure to temperatures up to 120˚F. is acceptable. For uses not<br />
listed here, consult with your Vanguard representative.<br />
GEO-Black is connected by heat fusion. We have a full line of GEO-Black socket heat fusion fittings<br />
including numerous reducer tees not available elsewhere. GEO-Black may also be connected by butt<br />
fusion with the appropriate fittings and equipment. Vanguard provides pre-fab U-bend coil assemblies.<br />
Each assembly includes 2 coils of pipe connected at one end with a factory assembled U-bend. Custom<br />
U-bend coil lengths are the standard.<br />
GEO-Black high density polyethylene piping products are tough yet flexible. Do not drag or roll GEO-<br />
Black coils across rocks or rough ground. Installation and backfill practices for GEO-Black in trenched,<br />
vertical bore or pond applications shall comply with guidelines prepared by the International Ground<br />
Source Heat Pump Association, Plastic Pipe Institute, American Water Works Association, Plastic Pipe<br />
and Fittings Association and the manufacturer.<br />
MATERIAL PROPERTIES<br />
Property<br />
ASTM Test Method<br />
English Units<br />
SI Units<br />
Specific Gravity (Natural)<br />
D792<br />
0.951<br />
Density (Black)<br />
D4883<br />
0.955 g/cc<br />
Melt Index<br />
D1238 (1)<br />
8.5 g/10min<br />
Tensile Strength (Yield)<br />
D638 (2)<br />
3600 psi<br />
24.8 MPa<br />
Tensile Elongation (Break)<br />
D638 (2)<br />
740%<br />
740%<br />
Flexural Modulus<br />
D790B (2/3)<br />
150000 psi<br />
1034 MPa<br />
Slow Crack Growth PENT<br />
F1473<br />
>5000 hr<br />
> 5000hr<br />
Notched Izod Impact<br />
D256A (4)<br />
9.10 ft-lb/in<br />
0.48 kJ/m<br />
Brittleness Temperature<br />
D746A<br />
ENGINEERING DATA<br />
PLUMBING<br />
GEO-Black <br />
High Density Polyethylene<br />
SDR-11 Polyethylene Piping<br />
ASTM D 3035/IPS-OD/160 PSI/PE4710<br />
Part<br />
Number<br />
BLA4<br />
BLA5<br />
*BLA6<br />
*BLA7<br />
*BLA8<br />
Schedule 40 Polyethylene Piping<br />
ASTM D 2447/IPS-OD/PE4710<br />
Part<br />
Number<br />
BDA6<br />
BDA7<br />
BDA8<br />
Nominal<br />
Size<br />
3/4"<br />
1"<br />
1 1/4"<br />
1 1/2"<br />
2"<br />
*Special Order Pipe<br />
Nominal<br />
Size<br />
1 1/4"<br />
1 1/2"<br />
2"<br />
Nom.<br />
O.D.<br />
1.05 ± .004<br />
1.32 ± .005<br />
1.66 ± .005<br />
1.90 ± .006<br />
2.38 ± .006<br />
O.D.<br />
1.66 ± .005<br />
1.90 ± .006<br />
2.38 ± .006<br />
Min. Wall<br />
Thickness<br />
.095 +.020<br />
.120 +.020<br />
.151 +.020<br />
.173 +.021<br />
.216 +.026<br />
Wall<br />
Thickness<br />
.140 +.020<br />
.145 +.020<br />
.154 +.020<br />
Avg.<br />
I.D.<br />
0.84<br />
1.06<br />
1.34<br />
1.53<br />
1.92<br />
Weight<br />
Per Foot<br />
.294<br />
.352<br />
.473<br />
Weight<br />
Per Foot<br />
.129<br />
.201<br />
.312<br />
.412<br />
.643<br />
1 0.23 0.08 0.02 0.01 0.00<br />
2 0.83 0.27 0.08 0.04 0.01<br />
3 1.75 0.58 0.17 0.08 0.02<br />
4 2.99 0.98 0.29 0.13 0.04<br />
5 4.51 1.49 0.43 0.20 0.06<br />
6 6.32 2.09 0.61 0.28 0.08<br />
7 8.41 2.77 0.81 0.38 0.11<br />
8 10.76 3.55 1.03 0.48 0.14<br />
9 13.38 4.42 1.28 0.60 0.18<br />
10 16.26 5.37 1.56 0.73 0.21<br />
12 22.78 7.52 2.19 1.02 0.30<br />
14 30.30 10.00 2.91 1.36 0.40<br />
16 38.79 12.80 3.72 1.74 0.51<br />
18<br />
15.92 4.63 2.16 0.63<br />
20<br />
19.34 5.62 2.63 0.77<br />
22<br />
23.07 6.71 3.14 0.92<br />
24<br />
27.10 7.88 3.68 1.08<br />
26<br />
31.43 9.13 4.27 1.25<br />
28<br />
10.48 4.90 1.43<br />
30<br />
11.90 5.57 1.63<br />
34<br />
15.00 7.02 2.05<br />
38<br />
18.43 8.62 2.52<br />
42<br />
22.18 10.37 3.03<br />
46<br />
12.27 3.59<br />
50<br />
14.32 4.19<br />
54<br />
16.51 4.83<br />
58<br />
18.84 5.51<br />
62<br />
6.24<br />
66<br />
7.00<br />
70<br />
7.81<br />
78<br />
9.54<br />
86<br />
11.42<br />
94<br />
13.47<br />
102<br />
15.66<br />
Pressure<br />
Rating @ 73°F<br />
150<br />
140<br />
110<br />
NOTE: Dimensions are in English units. Tolerances shown are ASTM requirements.<br />
Head Loss Table Expressed as Feet of Head/100ft.<br />
GPM<br />
SIZE<br />
3/4" 1" 1 1/4" 1 1/2" 2"<br />
IPS-OD IPS-OD IPS-OD IPS-OD IPS-OD<br />
SDR-11 SDR-11 SCH. 40 SCH. 40 SCH. 40<br />
Quality Assurance<br />
When the product is marked with the ASTM D<br />
3035 or D 2447 designation, it affirms that the<br />
product was manufactured, inspected,<br />
sampled and tested in accordance with these<br />
specifications and has been found to meet the<br />
specified requirements. GEO-Black is produced<br />
with state-of-the-art extrusion equipment<br />
to maintain consistency and accuracy.<br />
Fluid Capacity per 100' of Pipe:<br />
Nominal Pipe Size Gallons Liters<br />
3/4" SDR-11 3.02 11.42<br />
1" SDR-11 4.73 17.91<br />
1 1/4" SDR-11 7.55 28.56<br />
1 1/2" SDR-11 9.93 37.58<br />
2" SDR-11 15.36 58.12<br />
1 1/4" SCH40 7.77 29.41<br />
1 1/2" SCH40 10.58 40.03<br />
2" SCH40 17.43 65.98<br />
SDR-11<br />
Thermal Heat Transfer Coefficient<br />
Size O.D. WALL BTU/FT/HR/ΔT<br />
3<br />
/4" 1.050 0.083 7.5<br />
1" 1.315 0.102 7.7<br />
SCHEDULE 40<br />
Thermal Heat Transfer Coefficient<br />
Size O.D. WALL BTU/FT/HR/ΔT<br />
1 1 /4" 1.660 0.140 7.0<br />
1 1 /2" 1.900 0.145 7.9<br />
2" 2.375 0.154 9.5<br />
Pressure Correction Factor:<br />
GEO-Black is rated for continuous<br />
use at 73˚F but can be exposed for<br />
limited periods to temperatures up<br />
to 120˚F. For design purposes,<br />
derating pressure factors for higher<br />
temperature installations are shown<br />
below.<br />
Operating<br />
Temperature (˚F)<br />
73<br />
100<br />
120<br />
Pressure<br />
Correction<br />
Factor<br />
1.00<br />
0.75<br />
0.60<br />
8125 North Fraser Way, Burnaby, BC V5J 5M8 Canada<br />
Phone 1-888-747-PIPE PEX (3739)<br />
EMAIL: Sales@vanguard.ca<br />
QWML02VS 9/01 © 2001<br />
04/11<br />
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ENGINEERING DATA<br />
June 2010<br />
TECHNICAL ADVISORY<br />
Description: Vertical Depth Limitations for Down-Hole Applications<br />
Products Affected: Geo-Black, Procore and Proguard HDPE Pipe and Tubing<br />
Issue: Vanguard receives numerous requests for the vertical depth limitations of their HDPE products for down-hole applications<br />
such as geothermal and water well. Since the depth limitation is contingent upon a number of factors for each installation, there<br />
is no single specific depth that can be stated for each pressure rating. However, the information in this advisory will allow users<br />
to calculate the maximum vertical depth.<br />
Resolution: The factors that most commonly affect the maximum vertical depth are:<br />
1) Pressure rating of the pipe<br />
2) Internal system working pressure<br />
3) Vertical depth of any standing water in the bore-hole<br />
It is important to remember that the water inside the pipe will exert .433 psig for each foot of vertical height. This is commonly<br />
referred to as “vertical head” or “head pressure”. For example, a 100 ft length of pipe positioned vertically and filled with water<br />
will have a static, internal pressure of 43.3 psig at the bottom of the pipe with the pressure decreasing at a rate of .433 psig/ft to<br />
0 psig at the very top of the pipe.<br />
Considering only the static head pressure, Table A shows the maximum vertical depth for pipes with various pressure ratings.<br />
TABLE A<br />
MAXIMUM VERTICAL DEPTH, PIPE FILLED WITH WATER, NO INTERNAL SYSTEM PRESSURE AND NO EXTERNAL<br />
WATER PRESSURE<br />
PIPE PRESSURE<br />
RATING<br />
MAXIMUM VERTICAL DEPTH PIPE<br />
FILLED WITH WATER (PE 3408)<br />
MAXIMUM VERTICAL DEPTH PIPE<br />
FILLED WITH WATER (PE 4710)<br />
80 psig 185 ft. 231 ft.<br />
100 psig 231 ft. 289 ft.<br />
125 psig 289 ft. 370 ft.<br />
160 psig 370 ft. 462 ft.<br />
200 psig 462 ft. 577 ft.<br />
Since most systems will have some internal system pressure, the vertical head corresponding to that internal pressure must be<br />
subtracted from the maximum vertical depth. Divide the maximum expected internal system pressure by .433 and subtract that<br />
amount from the depth in Table A.<br />
Example: 30 psig internal pressure / .433 = 69 ft<br />
For a 160 psig rated pipe (PE3408) = 370 ft – 69 ft = 301 ft maximum vertical depth<br />
For a 160 psig rated pipe (PE4710) = 462 ft – 69 ft = 393 ft maximum vertical depth<br />
(cont’d on next page)<br />
04/11<br />
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ENGINEERING DATA<br />
TECHNICAL ADVISORY (cont’d)<br />
When the pipe is installed in a borehole with standing water, the external force exerted by the water offsets some of the internal<br />
pressure by the same .433 psig/foot factor. Add the minimum expected water height (from the bottom of the borehole or the<br />
lowest point of the installed pipe) to the depths from Table A. No portion of the pipe that is above the water level shall be deeper<br />
than the value stated in Table A.<br />
Example: water well application<br />
160 psig rated pipe<br />
65 psig maximum internal pressure<br />
75 ft minimum water height (from bottom of bore-hole)<br />
160 psig rated (PE3408) = 370 ft – (65 / .433) = 220 ft + 75 ft = 295 ft maximum depth<br />
160 psig rated (PE4710) = 462 ft – (65 / .433) = 312 ft + 75 ft = 387 ft maximum depth<br />
It must be noted that when the borehole will be grouted, the water height must be considered carefully. Grout can prevent the<br />
pipe from “seeing” the offsetting pressure. Also, voids in the grout, tubing not surrounded fully by grout (touching the wall of the<br />
borehole) etc. can also have an effect. If it cannot be verified with any certainty that the pipe will have constant and full exterior<br />
support or counteracting water pressure, then the design must not rely upon it. The design must then assume that there is no<br />
counteracting pressure and the maximum depth shall be determined accordingly.<br />
Grout is not a replacement for external water pressure, nor should it be considered as reinforcement for the pipe that would<br />
allow greater maximum depths.<br />
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ENGINEERING DATA<br />
SOCKET FUSION PROCEDURES<br />
SOCKET FUSION PROCEDURES<br />
1. PREPARE THE TOOL<br />
• Attach the correctly sized socket fusion faces for the pipe size being fused<br />
to the heating tool. The faces shall be tight against the tool to ensure a<br />
good heat transfer. Socket faces<br />
should be in good condition with little<br />
or no loss of non-stick coating. Faces<br />
which are in question shall be<br />
replaced before proceeding.<br />
• Attach the heating tool to an adequate<br />
power supply and allow sufficient time<br />
for the tool and fusion faces to come<br />
up to a surface temperature of 500 to<br />
525°F. Place the tool inside an<br />
appropriate heater bag (Vanguard part<br />
2<br />
number FHHB) or other enclosure to<br />
reduce heating time, especially in cold<br />
or windy weather.<br />
Socket Fusion Tools<br />
Figure 1<br />
CAUTION<br />
• Use a power supply not in use with other tools. Single face heating tools<br />
draw 400 watts, while double face tools draw 500 watts. Allow a minimum<br />
of 5 amp service.<br />
• Loose socket faces impair heat transfer.<br />
• Inadequate power supply and inadequate power cord causes loss of<br />
amperage resulting in heat loss.<br />
• Other tools on the same power source may cause loss of amperage and<br />
heat.<br />
2. CLEAN THE SOCKET FACES AND CHECK<br />
TEMPERATURE<br />
• All heater faces have a thin layer of non-stick coating that is easily<br />
scratched or scraped off. This coating prevents melted PE from adhering<br />
firmly to the heater faces and must be kept clean of plastic residue.<br />
• Metal tools should NEVER be used to clean the heater faces. They will<br />
scratch and remove the coating. Clean, dry, lint-free, non-abrasive cotton<br />
rags are recommended for cleaning. All-cotton rags are recommended<br />
because rags containing a substantial amount of synthetic fibers may melt<br />
and char against the heater surface.<br />
• If the non-stick coating becomes worn or scratched, the heating faces must<br />
be recoated.<br />
• Melted PE adheres firmly to the heating iron and is more difficult to remove at<br />
places where the coating has been scraped off the faces. In addition, since the<br />
SOCKET FUSION PROCEDURES<br />
coating acts as an insulator, heat transfer<br />
in the uncoated areas is greater and<br />
local overheating can occur.<br />
• Heating tool thermometer indicates<br />
internal tool heat temperatures, NOT<br />
the socket face surface temperatures.<br />
• Socket face temperatures MUST be<br />
500 to 525°F. This is especially critical<br />
in cold weather.<br />
• Check the heater temperature with<br />
Tempstick® crayon indicators<br />
(Vanguard part number FHS500 and<br />
Figure 2<br />
FHS525) or surface pyrometer often to make sure the thermometer or<br />
other temperature measuring device is reading accurately. (See Figure 2)<br />
Under heavy use conditions, or during cold or windy conditions, check the<br />
temperature more frequently.<br />
To increase temperature, turn set screw counter-clockwise.<br />
A quarter of a turn equals a 30 degree change. Do not turn<br />
excessively. More than 5 turns will ruin the thermostat.<br />
• Don’t clean the socket face surfaces with a synthetic fabric (such as<br />
polyester or nylon).<br />
• Don’t use temperature indicating crayons on the surface of the non-stick<br />
faces where the pipe and fitting come in contact.<br />
• NEVER lay a fusion tool on the soil or grass when the heat cycle is<br />
completed. Return it to the heater bag, if possible, or at least lay it on the<br />
heater bag. Soil will contaminate the joint and is abrasive to the coating;<br />
grass may burn and char on the heater surface.<br />
3. PREPARE PIPE END AND FITTINGS<br />
• Using a tubing cutter, squarely cut of the damaged or oval ends of the pipe.<br />
• Fitting and pipe surfaces shall be clean and dry; wipe with a cloth, do not<br />
touch with your hands.<br />
• Inspect each and every fitting for out-of-roundness or damage and wipe<br />
clean. Check inside pipe for contaminants or obstructions.<br />
• Do NOT use flattened, damaged or out-of-round pipe.<br />
• Pipe and fittings shall not be used if an interference fit is not evident.<br />
Allowable tolerances ensure a forced fit and when heat fusion is applied,<br />
the pipe and fitting will readily mate.<br />
• A chamfering tool may be used to remove about 1/16” of the sharp corner<br />
at the pipe end on the outside surface of pipe sized 1 -1/4” IPS and larger.<br />
Remove burrs and chips inside the pipe end.<br />
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ENGINEERING DATA<br />
SOCKET FUSION PROCEDURES<br />
SOCKET FUSION PROCEDURES (cont’d)<br />
SOCKET FUSION PROCEDURES<br />
4. USE THE PROPER<br />
DEPTH GAUGE AND<br />
COLD RING<br />
• After the pipe end and fitting sockets<br />
have been cleaned and inspected,<br />
prepare the pipe for correct penetration<br />
into the socket, place the depth<br />
gauge down flush on the end of the<br />
pipe. (See Figure 3)<br />
• Clamp the correctly sized cold ring<br />
around the pipe, adjacent to the<br />
depth gauge. After securing the cold<br />
ring clamp, remove the depth gauge.<br />
(See Figure 4)<br />
• Using the depth gauge/cold ring<br />
combination assures that the heated<br />
pipe and fitting will join at the proper<br />
depth, prohibiting the pipe from either<br />
penetrating too far into the fitting,<br />
creating a flow restriction, or failing to<br />
penetrate the fitting deeply enough<br />
for adequate joint strength. The cold<br />
ring also helps keep the pipe round<br />
while it is being heated.<br />
PIPE END AND FITTINGS ARE NOW<br />
READY FOR HEATING.<br />
5. HEATING THE PIPE<br />
AND FITTING<br />
SIMULTANEOUSLY<br />
• Grip the pipe behind the cold ring.<br />
(See Figure 5)<br />
• The socket faces of the heating tool<br />
shall be at a 500-525°F surface<br />
temperature and clean.<br />
• First, firmly seat the socket fitting on<br />
the male face of the heating tool.<br />
Then place the female face on the<br />
end of the pipe firmly against the cold<br />
ring clamp.<br />
HEATING TIME STARTS NOW.<br />
4<br />
Figure 3<br />
Figure 4<br />
Figure 5<br />
• While holding the fitting and pipe firmly in a fixed position, heat both for the<br />
heating cycle shown in Table 1.<br />
• Too much pressure against the socket face plate will cause a rollback of<br />
the fitting edge, shortening the actual socket depth and creating a gap<br />
when the pipe and fitting are joined.<br />
TABLE 1. POLYETHYLENE, PE 4710 3408 SDR-11 AND SCHEDULE 40<br />
SIZE HEATING HOLDING CURING TIME<br />
(INCHES) CYCLE* TIME* BEFORE HANDLING*<br />
3/4” IPS 8-10 sec. 30 sec. 20 min.<br />
1” IPS 10-14 sec. 30 sec. 20 min.<br />
1 1/4” IPS 12-15 sec. 30 sec. 20 min.<br />
1 1/2” IPS 15-18 sec. 40 sec. 20 min.<br />
2” IPS 18-22 sec. 40 sec. 30 min.<br />
* Always use a timing device (FHFT, wrist watch or facsimile) to determine<br />
accurate cycles.<br />
* When working against the memory of the coil, holding times shall be<br />
at least doubled.<br />
It is imperative to check face temperatures before each fusion<br />
in cold weather (below 32° F). Make sure wind currents, etc., do<br />
not affect temperatures. Use the FHHB heater bag during<br />
periods of delay to prevent heat loss when fusing in cold weather.<br />
5. PIPE AND FITTING ARE PROPERLY FUSED<br />
• When the heating cycle is complete, remove the pipe and fitting from<br />
the fusion faces with a quick snap action.<br />
• Quickly inspect the heated parts to ensure all interfacing surfaces have<br />
been melted. If the melt is not<br />
complete, stop. Do not attempt to<br />
assemble pipe and fitting. Cut off<br />
the melted pipe end, use a new<br />
fitting, and repeat fusion steps 3<br />
through 6.<br />
• Within 3 seconds after removing the<br />
pipe and fitting from the fusion<br />
faces, firmly push the melted fitting<br />
squarely onto the pipe until it<br />
makes firm contact with the cold<br />
ring.<br />
DO NOT TWIST.<br />
Figure 6<br />
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ENGINEERING DATA<br />
TRANSITION CONNECTIONS<br />
TRANSITION CONNECTIONS<br />
• Hold the fitting firmly in place for the<br />
total holding time shown in Table 1 to<br />
ensure proper alignment. After waiting<br />
3 additional minutes of cooling time,<br />
remove the cold ring clamp and<br />
inspect the joint.<br />
A good joint will have a uniform melt<br />
ring that is flat against the socket and<br />
perpendicular to the pipe. There<br />
should be no cavity between the fitting<br />
and the pipe.<br />
• Wait an additional 10 minutes to<br />
complete the cooling before the pipe<br />
joint is tested or stressed during<br />
burial.<br />
Figure 7<br />
PROPER USE OF MATERIALS<br />
PROPER USE OF MATERIALS<br />
TESTING FOR LEAKS<br />
Upon completion of the installation, the system should be hydrostatically<br />
tested. Hydrostatic testing of the system is to be conducted according to<br />
local code requirements. Test pressure shall be at least expected working<br />
pressure of the system, but not less than 40 psi nor greater than the<br />
maximum working pressure of the pipe or the maximum test pressure<br />
recommended by the manufacturer.<br />
The following is an option method which applies to test pressures up to 225<br />
psi:<br />
• During the initial pressurization period, the pressure indicated on the gauge<br />
will decrease due to the initial deformation of the tubing, followed by a slow<br />
expansion. The amount of pressure drop will depend on ambient temperature,<br />
system capacity and test pressure. If additional makeup water is<br />
introduced into the system to achieve the original test pressure after the<br />
first 1 1/2 hours of the test, the pressure decrease during the next 2 hours<br />
should be less than the loss in the first 1 1/2 hours.<br />
• See Fusion Examples on page 9 for<br />
the visual parameters of a proper<br />
fusion.<br />
CLEAN FUSION SOCKET OFF<br />
IMMEDIATELY AFTER EVERY<br />
FUSION. ALL VISIBLE MATERIAL<br />
MUST BE REMOVED.<br />
Figure 8<br />
• The pressure decrease due to pipe deformation and expansion shall not<br />
exceed 10 percent during the initial 2 hours of the test period, after which<br />
the expansion shall not cause the pressure to decrease more than 3<br />
percent during the next 2 hour period.<br />
Material left on the socket faces will carbonize and disrupt good heat<br />
transfer. It will also form a barrier over the non-stick coating, causing poor<br />
release. Without a smooth release, dirty socket faces will strip off the molten<br />
surface plastic, resulting in a poor joint, possibly complete joint failure. Use a<br />
clean, dry, non-abrasive cotton rag to clean the socket faces. Do not use<br />
synthetic cloth, wet cloth or hard or metal objects which could damage the<br />
non-stick surface of the socket face. Wet or damp rags could significantly<br />
lower the temperature of the faces.<br />
TO AVOID BEING BURNED, USE CAUTION WHEN<br />
HANDLING OR CLEANING HOT FUSION TOOLS.<br />
IF A LEAK IS DETECTED, JOINT SHALL BE<br />
REMOVED AND REPLACED. DO NOT ATTEMPT<br />
TO “PUTTY” LEAKS AT A FUSION JOINT.<br />
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ENGINEERING DATA<br />
SOCKET HEAT FUSION<br />
(REVIEW AND REFERENCE)<br />
SOCKET HEAT FUSION REVIEW AND REFERENCE<br />
1. Attach the correct socket faces, which are in good condition,<br />
to the heating body of the tool.<br />
FUSION EXAMPLES<br />
FUSION EXAMPLES<br />
PROPER<br />
SOCKET<br />
FUSION<br />
2. Connect tool to an adequate power supply (120 volts A.C.)<br />
3. Heat faces between 500 and 525° F. Adjust temperature as<br />
necessary.<br />
4. Square pipe ends with a pipe cutter designed for plastic<br />
pipe.<br />
5. Wipe pipe end and fitting clean with a damp cloth.<br />
IMPROPER:<br />
misaligned<br />
piping<br />
6. Insert pipe end into the properly-sized depth gauge and<br />
attach the proper sized cold ring onto the pipe.<br />
7. Begin timing the “HEAT CYCLE” as soon as the pipe and<br />
fitting are properly positioned on the pre-heated socket<br />
faces.<br />
8. At the conclusion of the “HEATING CYCLE”, snap the pipe<br />
and fitting from the tool.<br />
IMPROPER:<br />
pipe ends<br />
improperly<br />
cut<br />
9. Within three seconds, push the pipe and fitting together<br />
squarely without twisting.<br />
10. Hold firmly together for the specified “HOLDING TIME”.<br />
11.Wipe hot socket faces clean with a clean, dry, non-abrasive<br />
cotton cloth.<br />
12. Visually inspect each fusion joint.<br />
IMPROPER:<br />
short<br />
insertion<br />
depth<br />
8<br />
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ENGINEERING DATA<br />
EFFECT OF PROPYLENE GLYCOL ON HEAT PUMPS AND<br />
AIR HANDLERS<br />
THE GLYCOL WILL AFFECT THE CAPACITY AND THE PRESSURE DROP OF THE SYSTEM.<br />
*Data based on 2-ton coil @600 CFM, 80°F DB, 67°F WB, 6 GPM and 40°F EWT.<br />
For reference only. No guarantee on accuracy of tables.<br />
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ENGINEERING DATA<br />
Propylene Glycol Correction Factors<br />
PROPYLENE GLYCOL CORRECTION FACTORS<br />
1.6<br />
1.55<br />
1.5<br />
1.45<br />
1.4<br />
Correction Factor<br />
1.35<br />
1.3<br />
1.25<br />
1.2<br />
1.15<br />
1.1<br />
1.05<br />
1<br />
25 30 35 40 45 50 55 60 65 70 75 80 85 90 95 100<br />
Degrees Fahrenheit<br />
20% 25% 30%<br />
CAPACITY CORRECTION FACTORS OF PROPYLENE GLYCOL CONCENTRATIONS<br />
Temp (°F) 0% 15% 20% 25% 30% 35% 40% 45% 50%<br />
FP 32°F 24.5°F 20.3°F 14.9°F 8.4°F 0.6°F -8.3°F -18.4°F -29.8°F<br />
25 1 0.99 0.982 0.971 0.957 0.929 0.922 0.901 0.878<br />
30 1 0.988 0.98 0.969 0.955 0.939 0.921 0.9 0.878<br />
35 1 0.987 0.979 0.968 0.955 0.939 0.921 0.901 0.879<br />
40 1 0.987 0.979 0.969 0.956 0.94 0.922 0.903 0.881<br />
45 1 0.987 0.979 0.969 0.956 0.941 0.923 0.904 0.882<br />
50 1 0.987 0.979 0.969 0.956 0.941 0.924 0.905 0.883<br />
55 1 0.986 0.979 0.969 0.956 0.942 0.925 0.906 0.885<br />
60 1 0.986 0.978 0.969 0.956 0.942 0.925 0.906 0.886<br />
65 1 0.986 0.978 0.968 0.956 0.942 0.926 0.907 0.887<br />
70 1 0.985 0.978 0.968 0.956 0.942 0.926 0.908 0.888<br />
75 1 0.985 0.978 0.968 0.957 0.943 0.927 0.909 0.889<br />
80 1 0.985 0.978 0.968 0.957 0.943 0.927 0.91 0.89<br />
85 1 0.985 0.978 0.968 0.957 0.943 0.928 0.911 0.891<br />
90 1 0.985 0.978 0.968 0.957 0.944 0.929 0.912 0.893<br />
95 1 0.985 0.978 0.969 0.958 0.944 0.929 0.913 0.894<br />
100 1 0.985 0.978 0.969 0.958 0.945 0.93 0.914 0.895<br />
For reference only. No guarantee on accuracy of tables.<br />
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PROPERTIES OF PROPYLENE GLYCOL<br />
CONCENTRATIONS<br />
ENGINEERING DATA<br />
0% (32°F FP) 15% (24.5°F FP) 20% (20.3°F FP)<br />
Temp Specific Ht Density Viscosity Specific Ht Density Viscosity Specific Ht Density Viscosity<br />
(°F) (Btu/lb-°F) (lb/ft3) (lb/ft-hr) (Btu/lb-°F) (lb/ft3) (lb/ft-hr) (Btu/lb-°F) (lb/ft3) (lb/ft-hr)<br />
25 1.00738 62.41813 - 0.9788 63.59683 11.00541 0.96529 63.94627 13.22923<br />
30 1.00738 62.41813 - 0.97762 63.53755 9.31783 0.96436 63.88013 11.19511<br />
35 1.00597 62.42365 4.03988 0.97657 63.47765 7.99502 0.96355 63.81336 9.59622<br />
40 1.00401 62.42629 3.74959 0.97565 63.4165 6.94557 0.96286 63.74597 8.32448<br />
45 1.00249 62.42134 3.4593 0.97486 63.3541 6.10351 0.96228 63.6767 7.30156<br />
50 1.00129 62.40939 3.16901 0.97418 63.29045 5.4206 0.96182 63.60682 6.47015<br />
55 1.00035 62.39104 3.03596 0.97363 63.22618 4.86116 0.96147 63.53568 5.78755<br />
60 0.99964 62.3666 2.90291 0.97319 63.16066 4.39846 0.96123 63.4633 5.2218<br />
65 0.99908 62.33659 2.6356 0.97286 63.09389 4.01225 0.96108 63.39029 4.7486<br />
70 0.99867 62.30132 2.36829 0.97264 63.02525 3.68698 0.96104 63.31541 4.34928<br />
75 0.99839 62.26108 2.22435 0.97253 62.95598 3.41067 0.9611 63.23928 4.0094<br />
80 0.99816 62.21617 2.08042 0.97252 62.88485 3.17387 0.96126 63.1619 3.71761<br />
85 0.99803 62.1668 1.9643 0.9726 62.81246 2.96922 0.9615 63.08266 3.46496<br />
90 0.99797 62.11321 1.84818 0.97278 62.73883 2.79076 0.96183 63.00278 3.24436<br />
95 0.99795 62.05557 1.749 0.97305 62.66333 2.63374 0.96226 62.92104 3.05009<br />
100 0.99799 61.99407 1.64982 0.97341 62.58595 2.49435 0.96276 62.83805 2.87748<br />
25% (14.9°F FP) 30% (8.4°F FP) 35% (0.6°F FP)<br />
Temp Specific Ht Density Viscosity Specific Ht Density Viscosity Specific Ht Density Viscosity<br />
(°F) (Btu/lb-°F) (lb/ft 3 ) (lb/ft-hr) (Btu/lb-°F) (lb/ft 3 ) (lb/ft-hr) (Btu/lb-°F) (lb/ft 3 ) (lb/ft-hr)<br />
25 0.94937 64.28323 16.11312 0.93125 64.60522 19.85047 0.91113 64.09786 24.69705<br />
30 0.94873 64.21147 13.62279 0.93093 64.52722 16.75856 0.91114 64.82486 20.80945<br />
35 0.9482 64.13846 11.65989 0.93071 64.44859 14.31533 0.91126 64.74062 17.73099<br />
40 0.94778 64.06421 10.09472 0.93058 64.36872 12.36288 0.91146 64.65514 15.26664<br />
45 0.94746 63.98933 8.83302 0.93056 64.2876 10.78597 0.91175 64.56902 13.27345<br />
50 0.94725 63.9132 7.80536 0.93063 64.20523 9.49945 0.91213 64.48104 11.64555<br />
55 0.94714 63.83582 6.96008 0.93079 64.12224 8.43972 0.91259 64.39243 10.30346<br />
60 0.94713 63.7572 6.25828 0.93105 64.03738 7.55876 0.91314 64.30195 9.18712<br />
65 0.94721 63.67733 5.6703 0.93139 63.95189 6.81992 0.91377 64.21085 8.25057<br />
70 0.94739 63.59621 5.17337 0.93182 63.86515 6.195 0.91448 64.11787 7.45834<br />
75 0.94766 63.51384 4.74983 0.93234 63.77654 5.66203 0.91526 64.02427 6.78284<br />
80 0.94802 63.43022 4.38581 0.93293 63.68669 5.2038 0.91612 63.9288 6.20238<br />
85 0.94846 63.34536 4.07036 0.93361 63.59621 4.80671 0.91706 63.83208 5.69981<br />
90 0.94899 63.25862 3.79478 0.93436 63.50386 4.45991 0.91806 63.73411 5.26147<br />
95 0.9496 63.17064 3.55202 0.93519 63.40963 4.15471 0.91914 63.6349 4.87635<br />
100 0.95028 63.08141 3.33648 0.93609 63.31478 3.88409 0.92028 63.53381 4.53562<br />
40% (-8.3°F FP) 45% (-18.4°F FP) 50% (-29.8°F FP)<br />
Temp Specific Ht Density Viscosity Specific Ht Density Viscosity Specific Ht Density Viscosity<br />
(°F) (Btu/lb-°F) (lb/ft 3 ) (lb/ft-hr) (Btu/lb-°F) (lb/ft 3 ) (lb/ft-hr) (Btu/lb-°F) (lb/ft 3 ) (lb/ft-hr)<br />
25 0.88919 65.18803 30.99174 0.86563 65.44325 39.18553 0.84065 65.66976 49.88202<br />
30 0.88956 65.10005 26.04765 0.86638 65.3509 32.83223 0.84178 65.57304 41.63965<br />
35 0.89003 65.01144 22.12655 0.86721 65.2572 27.78951 0.84298 65.47507 35.09807<br />
40 0.89058 64.92096 18.98412 0.86811 65.16182 23.74666 0.84425 65.37586 29.85605<br />
45 0.8912 64.82923 16.4406 0.86909 65.06573 20.47428 0.84558 65.27477 25.61664<br />
50 0.89191 64.73626 14.36226 0.87014 64.96838 17.80131 0.84698 65.17306 22.15787<br />
55 0.8927 64.64203 12.64865 0.87126 64.86917 15.59887 0.84844 65.06947 19.3122<br />
60 0.89356 64.54718 11.22349 0.87244 64.7687 13.76895 0.84996 64.96464 16.95209<br />
65 0.89449 64.45046 10.02839 0.8737 64.66762 12.23639 0.85154 64.85856 14.97961<br />
For reference only. No guarantee on accuracy of tables.<br />
04/11<br />
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ENGINEERING DATA<br />
HEAT PUMP COMMISSIONING FORM<br />
Project Information<br />
Job Name<br />
Model<br />
Commissioning Date:<br />
Serial Number Desuperheater Y or N<br />
Loop Type<br />
Anti-Freeze Type<br />
Source Side Pressure Measurements (Ground Loop)<br />
Water In : Measured Pressure PSI NOTES<br />
Water Out :Measured Pressure PSI Use 0-60 PSI Mechanical gauge or Digital gauge<br />
Pressure Difference PSI Use the same Gauge for both measurements<br />
Calculated Flow Rate GPM Interpolation allowed, do not extrapolate<br />
Antifreeze Protection Level °F Use appropriate testing device for fluid type<br />
Note: The measured pressure drop must be compared to the heat pump manufacturer’s engineering specifications. A<br />
correction factor must be applied to the manufacturer’s specifications before a comparison can be made. The flow rate across the<br />
loop side heat exchanger can then be estimated from the manufacturer’s engineering specifications.<br />
Source Side Temperature Measurements<br />
Heating Cooling Notes<br />
Water In: Temperature °F °F<br />
Water Out: Temperature °F °F<br />
Temperature Difference °F °F<br />
Useful Formula: GPM X Temperature Difference x 485 = Btu/h (corrected for anti-freeze)<br />
Air Temperature Measurements (Forced Air)<br />
Heating Cooling Notes<br />
Return Air Temperature °F °F<br />
<strong>Supply</strong> Air Temperature °F °F<br />
Temperature Difference °F °F<br />
Useful Formula: Total Btu/h output / Temperature Rise × 1.08 = CFM<br />
Useful Formula: Total Btu/h output / Temperature Rise x 1.08 = CFM<br />
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ENGINEERING DATA<br />
HEAT PUMP COMMISSIONING FORM (cont’d)<br />
Load Side Temperature Measurements (Hydronic)<br />
Hot Water Chilled Water Notes<br />
Water In: Temperature °F °F<br />
Water Out: Temperature °F °F<br />
Temperature Difference °F °F<br />
Useful Formula: GPM × Temperature difference × 500 = Btu/h (Based on water)<br />
Electrical Measurements<br />
Heating Cooling Notes<br />
Measured Voltage Volts Volts<br />
Measured Amperage Amps Amps<br />
Watts Watts Watts<br />
To Calculate Watts: Volts x × Amps × × .85 .85 (Power Factor) = = Watts Watts<br />
Heating Mode C.O.P Calculation<br />
Heat of Compression (HC) from Electrical Input: Watts × 3.412 =<br />
Heat of extraction (HE) from the ground: GPM × Temperature Difference × 485 =<br />
Total Unit Capacity in Heating Mode: HC + HE = Total output………………………….........<br />
_______________Btu/h<br />
_______________Btu/h<br />
_______________Btu/h<br />
Calculate C.O.P :<br />
Total Unit Capacity<br />
Electrical Input in Btu/h<br />
= C.O.P ______________<br />
Cooling Mode EER Calculation<br />
Electrical Input: _______________Watts<br />
Total Heat of Rejection (HR) to the ground : GPM × Temperature Difference × 485 =<br />
_______________Btu/h<br />
Calculate E.E.R : Total Heat of Rejection in Btu/h - Electrical Input in Btu/h<br />
Electrical Input in Btu/h<br />
= E.E.R ______________<br />
Calculate C.O.P.C : Total Heat of Rejection in Watts - Electrical Input in Watts<br />
Electrical Input in Watts<br />
= C.O.P.C ______________<br />
Page 2 of 2<br />
04/11<br />
www.eccosupply.ca 75
Contact your local <strong>ECCO</strong> <strong>Supply</strong> Sales Representative for more information.<br />
12 BRANCHES TO SERVE YOU:<br />
ALBERTA<br />
CALGARY<br />
#13 – 303 58th Avenue, S.E.<br />
CALGARY, Alberta T2H 0P3<br />
Phone: 403-259-4344 • Fax: 403-259-2772<br />
Toll Free: 1-800-340-3226<br />
EDMONTON SOUTH<br />
8507 McIntyre Road,<br />
EDMONTON, Alberta T6E 6G3<br />
Phone: 780-408-5496 • Fax: 780-408-5499<br />
Toll Free: 1-866-643-3226<br />
EDMONTON<br />
14760 116th Avenue<br />
EDMONTON, Alberta T5M 3G1<br />
Phone: 780-479-1946 • Fax: 780-474-8500<br />
Toll Free: 1-800-330-3226<br />
MEDICINE HAT<br />
#101 - 26 Southwest Drive, S.W.,<br />
MEDICINE HAT, Alberta T1A 8V9<br />
Phone: 403-527-3226 • Fax: 403-526-3866<br />
Toll Free: 1-877-844-3226<br />
BRITISH COLUMBIA<br />
BURNABY<br />
2969 Lake City Way<br />
BURNABY, British Columbia V5A 2Z6<br />
Phone: 604-420-4323 • Fax: 604-420-6523<br />
Toll Free: 1-800-663-7684<br />
KELOWNA<br />
#100 - 1851 Dayton Street<br />
KELOWNA, British Columbia V1Y 9J7<br />
Phone: 250-860-6451 • Fax: 250-860-3466<br />
Toll Free: 1-800-399-3226<br />
LANGLEY<br />
19700 Landmark Way<br />
LANGLEY, British Columbia V3A 7Z5<br />
Phone: 604-530-9755 • Fax: 604-530-7046<br />
Toll Free: 1-800-881-3226<br />
VICTORIA<br />
555 Ardersier Road, Unit A9,<br />
VICTORIA, British Columbia V8Z 1C8<br />
Phone: 250-361-3395 • Fax: 250-361-3392<br />
Toll Free: 1-866-361-3226<br />
MANITOBA<br />
WINNIPEG<br />
2140 Notre Dame Avenue<br />
WINNIPEG, Manitoba R3H 0K1<br />
Phone: 204-633-9300 Fax: 204-633-0580<br />
Toll Free: 1-800-665-7459<br />
ONTARIO<br />
THUNDER BAY<br />
1131 Central Avenue<br />
THUNDER BAY, Ontario P7B 7C9<br />
Phone: 807-346-4464 Fax: 807-346-4423<br />
Toll Free: 1-877-530-3223<br />
SASKATCHEWAN<br />
REGINA<br />
1600 Ross Avenue E.<br />
REGINA, Saskatchewan S4N 7A3<br />
Phone: 306-721-8228 Fax: 306-721-5535<br />
Toll Free: 1-800-667-4343<br />
SASKATOON<br />
142 English Crescent<br />
SASKATOON, Saskatchewan S7K 8A5<br />
Phone: (306) 242-5525 Fax: 306-933-1128<br />
Toll Free: 1-800-667-3707<br />
04/11<br />
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