Numerical study of nonlinear mixed convection inside stagnation-point flow over surface-reactive cylinder embedded in porous media

Hong, K., Alizadeh, R., Valizadeh Ardalan, M., Nourbakhsh, A., Karimi, N. , Yang, Y. and Xiong, Q. (2020) Numerical study of nonlinear mixed convection inside stagnation-point flow over surface-reactive cylinder embedded in porous media. Journal of Thermal Analysis and Calorimetry, 141, pp. 1889-1903. (doi: 10.1007/s10973-019-09245-x)

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Abstract

Nonlinear mixed convection of heat and mass in a stagnation-point flow of an impinging jet over a solid cylinder embedded in a porous medium is investigated by applying a similarity technique. The problem involves a heterogenous chemical reaction on the surface of the cylinder and nonlinear heat generation in the porous solid. The conducted analysis considers combined heat and mass transfer through inclusions of Soret and Dufour effects and predicts the velocity, temperature and concentration fields as well as the average Nusselt and Sherwood number. It is found that intensification of the nonlinear convection results in development of higher axial velocities over the cylinder and reduces the thickness of thermal and concentration boundary layers. Hence, consideration of nonlinear convection can lead to prediction of higher Nusselt and Sherwood numbers. Further, the investigation reveals that the porous system deviates from local thermal equilibrium at higher Reynolds numbers and mixed convection parameter.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Karimi, Dr Nader
Authors: Hong, K., Alizadeh, R., Valizadeh Ardalan, M., Nourbakhsh, A., Karimi, N., Yang, Y., and Xiong, Q.
College/School:College of Science and Engineering > School of Engineering > Systems Power and Energy
Journal Name:Journal of Thermal Analysis and Calorimetry
Publisher:Springer
ISSN:1388-6150
ISSN (Online):1572-8943
Published Online:13 January 2020
Copyright Holders:Copyright © 2020 Akadémiai Kiadó, Budapest, Hungary
First Published:First published in Journal of Thermal Analysis and Calorimetry 141:1889–1903
Publisher Policy:Reproduced in accordance with the copyright policy of the publisher

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