4.7 Article

Analytical solution of the flow of a Newtonian fluid with pressure-dependent viscosity in a rectangular duct

Journal

APPLIED MATHEMATICS AND COMPUTATION
Volume 322, Issue -, Pages 123-128

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.amc.2017.11.029

Keywords

Pressure-dependent viscosity; Channel flow; Laminar flow; Analytical solution; Asymptotic solution

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We derive a fully analytical solution for the steady flow of an isothermal Newtonian fluid with pressure-dependent viscosity in a rectangular duct. The analytical solution for the governing equations is exact (based on the work by Akyildiz and Siginer, Int. J. Eng. Sc., 104, 2016), while the total mass balance constraint is satisfied with a high-order asymptotic expression in terms of the dimensionless pressure-dependent coefficient epsilon, and an excellent improved solution derived with Shanks' nonlinear transformation. Numerical calculations confirm the correctness, accuracy and consistency of the asymptotic expression, even for large values of epsilon. Results for the average pressure difference required to drive the flow are also presented and discussed, revealing the significance of the pressure-dependent viscosity even for steady, unidirectional, Newtonian flow. (c) 2017 Elsevier Inc. All rights reserved.

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