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Heat and Mass Transfer Effect on MHD Flow of a Viscoelastic Fluid through a Porous Medium Bounded by an Oscillating Porous Plate in Slip Flow Regime

机译:通过滑动流动状态下振动多孔板界面的多孔介质对粘弹性流体MHD流动的热量和传质效应

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摘要

Unsteady flow of an eclectically conducting and incompressible viscoelastic liquid of the Walter model with simultaneous heat and mass transfer near an oscillating porous plate in slip flow regime under the influence of a transverse magnetic field of uniform strength is presented. The governing equations of the flow field are solved by a regular perturbation method for small elastic parameter, and the expressions for the velocity, temperature, concentration, skin friction , the heat flux in terms of the Nusselt number , and the rate of mass transfer in terms of the Sherwood number are obtained. The effects of the important flow parameters on the dynamics are discussed. Findings of the study reveal that the rarefaction parameter accelerates the fluid particles in the flow domain. Elastic parameter contributes to sudden fall of the velocity near the plate. Magnetic force contributes to greater skin friction as the time elapses. Destructive reaction reduces, whereas generative reaction enhances the concentration distribution.
机译:在同时加热和滑移流区的均匀强度的横向磁场的影响下的振荡多孔板附近传质沃尔特模型的折衷进行和不可压缩粘弹性液体的非定常流被呈现。流场的控制方程由用于小的弹性参数常规摄动法解决,并且对于速度,温度,浓度,皮肤摩擦,在努塞尔数方面的热通量,和传质的速率的表达式获得了舍伍德数量方面。讨论在动态的重要流量参数的影响。该研究的结果显示,该稀疏参数加速流体颗粒在流域。弹性参数有助于板附近的速度的突然下降。磁力有助于更大的摩擦皮肤随着时间的流逝。破坏性反应减少,而生成反应提高了浓度分布。

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    S. N. Sahoo;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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