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Poiseuille flow of a power-law fluid with viscous heating

✍ Scribed by Peter C. Sukanek


Publisher
Elsevier Science
Year
1971
Tongue
English
Weight
106 KB
Volume
26
Category
Article
ISSN
0009-2509

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✦ Synopsis


Br Bp.oVn+tlnkToR~-J, the Brinkman number, dimensionless C constant defined by Eq. ( 9), dimensionless d rate ofstraintensor, sec -t k thermal conductivity, lb ft/sec 3 Β°F K velocity-independent pressure drop, dimensionless n power-law index, dimensionless Greek symbols a n/(6n+2),dimensionless fl parameter in consistency-temperature relationship, dimensionless 0 fl(T--To)/nTo temperature, dimensionless p~ consistency, lb/ft sec 2-" ~" shear stress tensor, Ib/ft sec 2 Subscripts 0 evaluated at the wall


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Heat transfer to power-law fluids flowin
✍ A.F. Flores; J.C. Gottifredi; G.V. Morales; O.D. Quiroga πŸ“‚ Article πŸ“… 1991 πŸ› Elsevier Science 🌐 English βš– 670 KB

This paper aims to show the application of the analytical approach presented recently by Gottifredi et al. [lnt. J. Heat Mass Trans@ 26, 1215-1220 (1983)] to the generalized Graetz-Nusselt problem, in order to estimate the mixing-cup temperature of a power-law fluid which is flowing through a duct w