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Impact of viscous dissipation and Dufour on MHD natural convective flow past an accelerated vertical plate with Hall current

机译:Impact of viscous dissipation and Dufour on MHD natural convective flow past an accelerated vertical plate with Hall current

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The present research work concentrates on viscous dissipation, Dufour, and heat source on an unsteady magnetohydrodynamics natural convective flow of a viscous, incompressible, and electrically conducting fluid past an exponentially accelerated infinite vertical plate in the existence of a strong magnetic field. The presence of the Hall current induces a secondary flow in the problem. The distinguishing features of viscous dissipation and heat flux produced due to gradient of concentration included in the model along with heat source as they are known to arise in thermal-magnetic polymeric processing. The flow equations are discretized implicitly using the finite difference method and solved using MATLAB fsolve routine. Numerical values of the primary and secondary velocities, temperature, concentration, skin friction, Nusselt number, and Sherwood number are illustrated and presented via graphs and tables for various pertinent parametric values. The Dufour effect was observed to strengthen the velocity and temperature profile in the flow domain. In contrast, due to the impact of viscous dissipation, the local Nusselt number reduces. The study also reveals that the inclusion of the chemical reaction term augments the mass transfer rate and diminishes the heat transfer rate at the plate.
机译:目前的研究工作集中于粘性杜福尔耗散,在一个热源不稳定的磁流体动力学自然对流流的粘性、不可压缩和过去一个导电流体指数加速无限竖直板在强磁场的存在。当前诱发二次的大厅流的问题。由于产生的粘性耗散和热通量的梯度浓度中随着热源模型,因为它们是已知的出现在热磁聚合物加工。流方程离散隐式使用有限差分方法和解决使用MATLAB fsolve例行公事。主要和次要的速度,温度、浓度、表面摩擦,努塞尔数和舍伍德数插图,通过图和表对各种相关的参数值。杜福尔观察效果加强流速度和温度曲线域。耗散,当地努塞尔特数减少。研究还表明,包容的化学反应项增加传质率,减少传热速率盘子里。

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