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Effects of cross diffusion and heat generation on mixed convective MHD flow of Casson fluid through porous medium with non-linear thermal radiation

机译:交叉扩散和生热对卡森流体通过非线性热辐射的多孔介质混合对流MHD流动的影响

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摘要

In the present work, two-dimensional mixed convection Casson fluid flow past an infinite plate in a porous medium is performed under the effects of a uniform magnetic field. Characteristics of heat transfer and mass transfer are analyzed with non-linear thermal radiation, cross-diffusion, chemical reaction, heat generation and, heat absorption. The governing partial differential equations are remodeled into ordinary differential equations using similarity transformation. The homotopy analysis method is implemented to solve the governing dimensionless system of ordinary differential equations. The behavior of different physical parameters is shown graphically. The numerical values of Skin friction, Nusselt number, and Sherwood number are presented in a tabular form. Obtained outcomes are compared with earlier studies in the special case and strong agreement is noted. From graphical representation, it is concluded that velocity and temperature distribution increases with the mixed convection parameter and buoyancy force parameter. An increasing value of Casson fluid parameter, magnetic field parameter, chemical reaction parameter, and diffusion-thermo parameter tends to reduced velocity and temperature profiles. In most of the engineering and real-world problems, skin friction is not desirable, so it can be decreased by decreasing the values of magnetic field parameter, non-linear thermal radiation parameter, heat generation parameter, and temperature ratio parameter.
机译:在目前的工作中,二维混合对流Casson流体在均匀磁场的作用下流过多孔介质中的无限板。通过非线性热辐射,交叉扩散,化学反应,生热和吸热来分析传热和传质的特征。使用相似变换将控制的偏微分方程重新建模为常微分方程。实施同伦分析方法来解决常微分方程的控制无量纲系统。图形显示了不同物理参数的行为。皮肤摩擦力,努塞尔数和舍伍德数的数值以表格形式显示。将获得的结果与特殊情况下的早期研究进行比较,并指出强烈的一致性。从图形表示可以得出结论,速度和温度分布随对流参数和浮力参数的增加而增加。 Casson流体参数,磁场参数,化学反应参数和扩散热参数的值增加,往往会降低速度和温度分布。在大多数工程和实际问题中,皮肤摩擦是不希望的,因此可以通过减小磁场参数,非线性热辐射参数,生热参数和温度比参数的值来减小它。

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