首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Free convective heat and mass transfer of magnetic bio-convective flow caused by a rotating cone and plate in the presence of nonlinear thermal radiation and cross diffusion
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Free convective heat and mass transfer of magnetic bio-convective flow caused by a rotating cone and plate in the presence of nonlinear thermal radiation and cross diffusion

机译:在存在非线性热辐射和交叉扩散的情况下,由旋转的圆锥体和平板引起的生物对流的自由对流热和质量传递

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摘要

This article explores the heat and mass transfer behaviour of magnetohydrodynamic free convective flow past a permeable vertical rotating cone and a plate filled with gyrotactic microorganisms in the presence of nonlinear thermal radiation, thermo diffusion and diffusion thermo effects. We presented dual solutions for the flow over a rotating cone and a rotating flat plate cases. Similarity variables are employed to convert the nonlinear partial differential equations into ordinary differential equations. Comparisons with previously published work are performed and results are found to be in excellent agreement. The resultant non-dimensional governing equations along with associated boundary conditions are solved numerically using Runge–Kutta and Newton’s methods. The impact of pertinent parameters on velocity, temperature, concentration and density of the motile microorganisms along with the friction factor, local Nusselt, Sherwood numbers and the local density of the motile microorganisms was determined and analyzed with the help of graphs and tables. Results proved that there is a significant variation of heat and mass transfer in the flow over a rotating cone and a plate. It is also found that the heat and mass transfer performance of the flow over a rotating cone is significantly high when compared with the flow over a rotating plate.
机译:本文探讨了在非线性热辐射,热扩散和扩散热效应存在下,磁流体动力学自由对流流过可渗透垂直旋转锥和装有回旋微生物的板的传热和传质行为。我们为旋转锥和旋转平板壳体上的流动提出了双重解决方案。使用相似变量将非线性偏微分方程转换为常微分方程。与以前发表的作品进行了比较,结果非常一致。使用Runge-Kutta和Newton方法对所得的无量纲控制方程以及相关的边界条件进行了数值求解。确定了相关参数对运动微生物的速度,温度,浓度和密度的影响,以及摩擦系数,局部Nusselt,Sherwood数和运动微生物的局部密度,并借助图形和表格进行了分析。结果证明,在旋转锥和平板上的流动中,传热和传质存在显着变化。还发现与旋转板上的流动相比,旋转圆锥上的流动的传热和传质性能非常高。

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