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Salient features of Dufour and Soret effect in radiative MHD flow of viscous fluid by a rotating cone with entropy generation

机译:旋转锥体旋转锥辐射MHD流体辐射MHD辐射效应的俯冲特征

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Background: Here physical characteristics of convective magnetohydrodynamic flow of viscous liquid subject to a rotating cone are discussed. Dissipation, Joule heating, thermal flux and heat generation/absorption are scrutinized in energy expression. Physical aspects of diffusion-thermo and thermo diffusion effect are deliberated. Thermo-diffusion is the mechanisms of transportation in which particles are transferred in a multi-factor mixture determined by temperature gradient. Furthermore irreversibility analysis is considered.Method: Nonlinear partial differential system are reduced to ordinary one with the help of similarity variables. Here we implemented ND solve technique to get numerical results for given nonlinear system.Results: Characteristics of influential variables for entropy optimization, velocity, concentration, Bejan number and temperature are scrutinized. Numerical outcomes of gradient of velocity and Nusselt and Sherwood numbers are examined through tabulated form. Velocity components are declined against higher velocity slip parameters. For larger estimation of heat generation and radiation parameters the temperature is upsurges. Entropy generation and Bejan number are boost up via rising values of diffusion and radiation parameters. For larger estimation of Brinkman number both Bejan number and entropy rate have opposite effect. Comparative studies of the current and previous results are discussed in tabularized form and have a good agreement. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:背景:这里讨论了经受旋转锥体的粘性液体的对流磁力流体动力学流动的物理特性。耗散,焦耳加热,热量通量和发热/吸收在能量表达中仔细审查。分解扩散热和热扩散效果的物理方面。热扩散是运输机制,其中颗粒在通过温度梯度确定的多因素混合物中转移。此外,还考虑了不可逆转的分析。方法:在相似度变量的帮助下,非线性偏差系统减少到普通的差分系统。在这里,我们实施了ND求解技术,以获得给定非线性系统的数值结果。结果:筛选熵优化,速度,浓度,BEJAN数和温度的有影响变量的特征。通过制表形式检查速度和NUSERET和舍伍德数的梯度梯度的数值结果。速度分量较高速度滑移参数。对于较大估计的发热和辐射参数,温度是升高的。熵生成和Bejan号通过扩散和辐射参数的上升值提升。对于Brinkman编号的较大估计,Bejan数量和熵率都有相反的效果。对当前和以前结果的比较研究以表明形式讨论,并具有良好的一致性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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