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Computational unsteady flow analysis for third-grade fluid from an isothermal vertical cylinder through a Darcian porous medium

Hiremath, A; Reddy, GJ; Beg, OA

Computational unsteady flow analysis for third-grade fluid from an isothermal vertical cylinder through a Darcian porous medium Thumbnail


Authors

A Hiremath

GJ Reddy



Abstract

The present paper describes a mathematical model for free-convective laminar incompressible boundary layer flow of a third-grade fluid of the Reiner-Rivlin differential type, external to a uniformly heated semi-infinite vertical cylinder embedded in a two-dimensional porous medium. Assuming a homogenous-isotropic porous medium, simulation of bulk drag effects at low Reynolds number is conducted with the Darcy model. The resulting partial
differential equation boundary value problem is normalized using suitable transformation variables. The highly non-linear time-dependent coupled conservation equations along with boundary conditions are solved computationally with an optimized Crank-Nicolson finite difference code. Validation with previous studies is included. The heat transport and skin friction coefficients are computed for different values of emerging non-dimensional parameters.
Furthermore, steady-state and transient fluid-flow variables are shown graphically. An enhanced fluid velocity is observed for increased Darcy number and the reverse trend is computed for higher values of third-grade viscoelastic parameter. Also, the rate of heat transfer is observed to increase with greater Darcy number and a reduction in third-grade viscoelastic parameter. A key
observation which is drawn from the present study is that for third-grade fluid the flow variables deviate significantly from a hot cylindrical wall as compared to a Newtonian fluid. The study is relevant to thermal polymer coating applications in aerospace materials processing.

Citation

Hiremath, A., Reddy, G., & Beg, O. (2019). Computational unsteady flow analysis for third-grade fluid from an isothermal vertical cylinder through a Darcian porous medium. Heat Transfer - Asian Research, 48(7), 2752-2772. https://doi.org/10.1002/htj.21511

Journal Article Type Article
Acceptance Date May 28, 2019
Online Publication Date Aug 26, 2019
Publication Date Aug 26, 2019
Deposit Date May 29, 2019
Publicly Available Date Aug 26, 2020
Journal Heat Transfer - Asian Research
Print ISSN 1099-2871
Publisher Wiley
Volume 48
Issue 7
Pages 2752-2772
DOI https://doi.org/10.1002/htj.21511
Publisher URL https://doi.org/10.1002/htj.21511
Related Public URLs https://onlinelibrary.wiley.com/journal/15231496

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HEAT TRANSFER ASIAN RESEARCH 3RD GRADE VISCOELASTIC THERMAL ENROBING DARCY FLOW may 28th 2019 accepted.pdf (855 Kb)
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