NUMERICAL SIMULATION OF ENTROPY GENERATION FOR CASSON FLUID FLOW THROUGH PERMEABLE WALLS AND CONVECTIVE HEATING WITH THERMAL RADIATION EFFECT

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY Journal of the Serbian Society for Computational Mechanics Pub Date : 2020-12-30 DOI:10.24874/JSSCM.2020.14.02.10
Obalalu Adebowale Martins, K. Issa, A. Abdulraheem, Ajala Olusegun Adebayo, Adeosun Adeshina Taofeeq, Oluwaseyi Aliu, Adebayo Lawal Lanre, Wahaab Adisa Fatai
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引用次数: 14

Abstract

In this work, the influence of entropy generation analysis for an electrically conducting Casson fluid flow with convective boundary conditions has been numerically studied. The governing equations are analyzed numerically using weighted residual methods. Subsequently, the residuals were minimized using two different approaches of weighted residual method namely collocation weighted residual method (CWRM) and Galerkin weighted residual method (GWRM) and computed numerically using MATHEMATICAL software. The impacts of governing parameters on Casson flow velocity, temperature profile, local skin friction, and Nusselt number were analysed. The obtained solutions were used to determine the heat transfer irreversibility and bejan number of the model. The results of the computation show that the effect of thermophysical properties such as thermal radiation parameter, suction/injection parameter, magnetic field parameter, radiation parameter, and Eckert number has a significant influence on Skin friction coefficient (Cf) and local Nusselt number (Nu) when compared to the Newtonian fluid. The findings from this study are relevant to advances in viscoelasticity and enhanced oil recovery.
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具有热辐射效应的CASSON流体渗流和对流加热熵产生的数值模拟
在这项工作中,数值研究了熵产生分析对具有对流边界条件的导电Casson流体流动的影响。采用加权残差法对控制方程进行了数值分析。随后,使用加权残差法的两种不同方法,即配置加权残差法(CWRM)和伽辽金加权残差方法(GWRM)最小化残差,并使用MATHEMATICAL软件进行数值计算。分析了控制参数对Casson流速、温度分布、局部表面摩擦和Nusselt数的影响。所获得的解用于确定模型的传热不可逆性和bejan数。计算结果表明,与牛顿流体相比,热辐射参数、抽吸/注入参数、磁场参数、辐射参数和埃克特数等热物理性质对皮摩擦系数和局部努塞尔数有显著影响。这项研究的发现与粘弹性和提高采收率的进展有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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