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Numerical study of viscoelastic micropolar heat transfer from a vertical cone for thermal polymer coating

Madhavi, K; Prasad, VR; Rao, AS; Beg, OA; Kadir, A

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Authors

K Madhavi

VR Prasad

AS Rao



Abstract

A mathematical model is developed to study laminar, nonlinear, non-isothermal, steady-state free convection boundary layer flow and heat transfer of a micropolar viscoelastic fluid from a vertical isothermal cone. The Eringen model and Jeffery’s viscoelastic model are combined to simulate the non-Newtonian characteristics of polymers, which constitutes a novelty of the present work. The transformed conservation equations for linear momentum, angular momentum and energy are solved numerically under physically viable boundary conditions using a finite difference scheme (Keller Box method). The effects of Deborah number (De), Eringen vortex viscosity parameter (R), ratio of relaxation to retardation times (λ), micro-inertia density parameter (B), Prandtl number (Pr) and dimensionless stream wise coordinate (ξ) on velocity, surface temperature and angular velocity in the boundary layer regime are evaluated. The computations show that with greater ratio of retardation to relaxation times, the linear and angular velocity are enhanced whereas temperature (and also thermal boundary layer thickness) is reduced. Greater values of the Eringen parameter decelerate both the linear velocity and micro-rotation values and enhance temperatures. Increasing Deborah number decelerates the linear flow and Nusselt number whereas it increases temperatures and boosts micro-rotation magnitudes. The study is relevant to non-Newtonian polymeric thermal coating processes.

Citation

Madhavi, K., Prasad, V., Rao, A., Beg, O., & Kadir, A. (2018). Numerical study of viscoelastic micropolar heat transfer from a vertical cone for thermal polymer coating. Nonlinear Engineering, 8(1), 449-460. https://doi.org/10.1515/nleng-2018-0064

Journal Article Type Article
Acceptance Date Aug 3, 2018
Online Publication Date Nov 9, 2018
Publication Date Nov 9, 2018
Deposit Date Oct 25, 2018
Publicly Available Date Nov 9, 2019
Journal Nonlinear Engineering - Modeling and Application
Print ISSN 2192-8029
Publisher De Gruyter
Volume 8
Issue 1
Pages 449-460
DOI https://doi.org/10.1515/nleng-2018-0064
Publisher URL https://doi.org/10.1515/nleng-2018-0064
Related Public URLs https://www.degruyter.com/view/j/nleng
Additional Information Projects : Non-Newtonian thermal polymer coating simulation

Files

E__usir nonlinear eng MICROPOLARVISCO CONE OCT 2018_NONLINEAR ENGINEERING accepted Micropolar Viscoelastic Thermal Polymer Coating Flow 2018 Aug.pdf (1.3 Mb)
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