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Heat and mass transport performance of MHD elastico‐viscous fluid flow over a vertically oriented magnetized surface with magnetic and thermo diffusions

机译:磁流体动力的热量和质量输运性能elastico粘性流体在垂直面向磁化磁场和表面热扩散

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Abstract The key objective in this study is to examine the heat and mass transport behavior of magnetohydrodynamic elastic‐viscous fluid flow over a vertically oriented magnetized surface placed in a uniform permeable regime with magnetic and thermo diffusions. The fluid is partially ionized and permeated to flow in the presence of a strong magnetic field domain. Hence the Hall current effect is considered in this investigation. The significance of rotation and induced magnetic field on the flowing nature are also scrutinized in this study. The mathematical model of the problem is converted to a similar model by introducing suitable nondimensional variables. To obtain the closed‐form solutions of the flow leading equations, the regular perturbation analysis is utilized. For the exhibition of results, figures and tables are generated with the assistance of scientific computation software MATHEMATICA. Computed results are validated with the existing result in the limiting case. Such an investigation is important in evaluating the flow characteristics of low magnetic diffusive viscoelastic fluid. A noteworthy result seen is that magnetic diffusion significantly controls the fluid flow by altering the magnetic drag force. Mass diffusion factor brings an increase in the fluid velocity. Furthermore, we observed that the surface current density along the principal flow direction is significantly reduced by magnetic diffusion and mass diffusion factor.
机译:摘要本研究的主要目标检查的热量和质量传输行为磁流体动力弹性非粘性流体在一个面向垂直磁化表面放置在一个统一的透水政权磁场和热扩散。部分电离和渗透流动拥有一个强大的磁场领域。被认为是在这个大厅目前的效果调查。感应磁场的流动性质在本研究也关注。问题转化为一个类似的模型模型通过引入合适的无量纲变量。前流方程,常规扰动分析是利用。展览的结果、数据和表科学的协助下生成的数学计算软件。结果与现有结果进行验证极限情况。重要的在评估流动特性低磁扩散的粘弹性流体。值得注意的结果是,磁扩散明显控制流体通过改变磁阻力。使流体速度的增加。此外,我们观察到的表面电流沿着主要流向是密度大大减少了磁扩散和大规模扩散的因素。

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