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Prediction of batch heat transfer coefficients for pseudoplastic fluids ...

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50<br />

A :::<br />

Apr ...<br />

B :::<br />

C p<br />

:::<br />

CPr :::<br />

D :::<br />

TABLE OF NOIVJE1'l,CLATURE'<br />

ENGLISH ALPHABET<br />

----------~' . .<br />

Heat Transfer Area<br />

Constant in Prandtl eq. 2-18<br />

Constant in Powell-Eyring equation<br />

Heat capacity<br />

Constant in Prandtl equation, eq. 2-18<br />

Pipe or tube diameter<br />

Da<br />

:::<br />

Dc ==<br />

Impeller dim.~eter<br />

Diameter <strong>of</strong> coil tubing.<br />

DR<br />

:::<br />

Dia~eter<br />

<strong>of</strong> coil helix<br />

Dt ""<br />

F =.<br />

Vessel diameter<br />

Statistical parameter<br />

gc :::<br />

Dj~ensional<br />

(ft/sec. 2 )<br />

conversion factor, 32.17 (lbm!lbr)<br />

gz : Acceleration due to gravity in z direction<br />

HC ::: Clearance betv.reen bottom <strong>of</strong> agi tator and vessel<br />

bottom<br />

H CH<br />

::: Height <strong>of</strong> center <strong>of</strong> impeller (vertical direction),<br />

above vessel bottom<br />

HL ::: Height <strong>of</strong> liquid<br />

HV = Depth <strong>of</strong> vortex (inches)<br />

h ::: Average <strong>heat</strong> <strong>transfer</strong> coefficient <strong>of</strong> <strong>batch</strong><br />

lit = Pseudo <strong>heat</strong> <strong>transfer</strong> coefficient defined in eq. 4-13<br />

hb ::: Height <strong>of</strong> bob or spindle <strong>of</strong> rotating cylinder viscometer<br />

h f ::: Beat <strong>transfer</strong> coefficient <strong>of</strong> fouling material

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