the effect of the particle size distribution on non-newtonian turbulent ...

the effect of the particle size distribution on non-newtonian turbulent ... the effect of the particle size distribution on non-newtonian turbulent ...

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References Page R.3 HANKS R W (1963), The laminar/turbulent transition for fluids with a yield stress, AIChE Journal, Vol 9 No 3. HANKS R W and RICKS B L (1974), Laminar-transition in flow ong>ofong>pseudoplastic fluids with yield stress, J. Hydronaurics, Vo!. 8, No. 4. HANKS R W and RICKS B L (1975), Transitional and turbulent pipeflow ong>ofong> pseudoplastic fluids, J. Hydronautics, Vo!..9, No. 1. HARRlS J (1967), Letter to ong>theong> Editor, Chem. Engnr.(LN), Jan/Feb, 30. HARRlS J (1968), The correlation ong>ofong>non-Newtonian Turbulent pipeflow data, Rheol. Acta., 7, 3, 228-235. HARR1S J and QUADER A K M A (1971), Design procedures for pipelines transporting non-Newtonian fluids and solid liquid systems, Brit. Chem. Engrg., Vol 16 No 415. HARRlS J and WILKlNSON W L (1971), Momentum, heat and mass transfer in non­ Newtonian turbulent flow in pipes, Chem. Engng, 16,301-311. HEDSTROM BOA (1952), Flow ong>ofong>plastics materials in pipes, Industrial and engineering chemistry, v.44 No.3. HERSCHEL W H and BULKLEY R (1926), Measurement ong>ofong> consistency as applied to rubber-benzene solutions, Proc ASTM, 26 Part 2 621-633. HEYWOOD NI (1980), Pipeline Design for Non-Newtonian Fluids, Interjlow 80, IChemE, 33-53

References Page R.3<br />

HANKS R W (1963), The laminar/<strong>turbulent</strong> transiti<strong>on</strong> for fluids with a yield stress, AIChE<br />

Journal, Vol 9 No 3.<br />

HANKS R W and RICKS B L (1974), Laminar-transiti<strong>on</strong> in flow <str<strong>on</strong>g>of</str<strong>on</strong>g>pseudoplastic fluids with<br />

yield stress, J. Hydr<strong>on</strong>aurics, Vo!. 8, No. 4.<br />

HANKS R W and RICKS B L (1975), Transiti<strong>on</strong>al and <strong>turbulent</strong> pipeflow <str<strong>on</strong>g>of</str<strong>on</strong>g> pseudoplastic<br />

fluids, J. Hydr<strong>on</strong>autics, Vo!..9, No. 1.<br />

HARRlS J (1967), Letter to <str<strong>on</strong>g>the</str<strong>on</strong>g> Editor, Chem. Engnr.(LN), Jan/Feb, 30.<br />

HARRlS J (1968), The correlati<strong>on</strong> <str<strong>on</strong>g>of</str<strong>on</strong>g>n<strong>on</strong>-Newt<strong>on</strong>ian Turbulent pipeflow data, Rheol. Acta.,<br />

7, 3, 228-235.<br />

HARR1S J and QUADER A K M A (1971), Design procedures for pipelines transporting<br />

n<strong>on</strong>-Newt<strong>on</strong>ian fluids and solid liquid systems, Brit. Chem. Engrg., Vol 16 No 415.<br />

HARRlS J and WILKlNSON W L (1971), Momentum, heat and mass transfer in n<strong>on</strong>­<br />

Newt<strong>on</strong>ian <strong>turbulent</strong> flow in pipes, Chem. Engng, 16,301-311.<br />

HEDSTROM BOA (1952), Flow <str<strong>on</strong>g>of</str<strong>on</strong>g>plastics materials in pipes, Industrial and engineering<br />

chemistry, v.44 No.3.<br />

HERSCHEL W H and BULKLEY R (1926), Measurement <str<strong>on</strong>g>of</str<strong>on</strong>g> c<strong>on</strong>sistency as applied to<br />

rubber-benzene soluti<strong>on</strong>s, Proc ASTM, 26 Part 2 621-633.<br />

HEYWOOD NI (1980), Pipeline Design for N<strong>on</strong>-Newt<strong>on</strong>ian Fluids, Interjlow 80, IChemE,<br />

33-53

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