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Combined effect of suspended particles and rotation on thermosolutal convection in a viscoelastic fluid saturating a Darcy-Brinkman porous medium

机译:在达西-布林克曼多孔介质饱和的粘弹性流体中,悬浮颗粒和旋转对热固对流的综合影响

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摘要

In this paper, the combined effect of suspended (fine dust) particles and rotation on the onset of thermosolutal convection in an elastico-viscous fluid in a porous medium is studied. For the porous medium, the Brinkman model is employed and Rivlin-Ericksen model is used to characterize viscoelastic fluid. By applying normal mode analysis method, the dispersion relation has been derived and solved analytically. It is observed that the rotation, stable solute gradient, suspended particles, gravity field and viscoelasticity introduce oscillatory modes. For stationary convection, it is observed that the rotation, stable solute gradient have a stabilizing effect and suspended particles have a destabilizing effect on the system whereas Darcy number and medium permeability have stabilizing/destabilizing effects under certain conditions. The effects of rotation, stable solute gradient, suspended particles, Darcy number and medium permeability have also been shown graphically.
机译:本文研究了悬浮(细粉尘)颗粒和旋转对多孔介质中弹性粘液中热固对流开始的综合影响。对于多孔介质,采用Brinkman模型,使用Rivlin-Ericksen模型表征粘弹性流体。通过应用正态分析方法,色散关系得到了解析解。观察到旋转,稳定的溶质梯度,悬浮颗粒,重力场和粘弹性引入了振荡模式。对于固定对流,观察到旋转,稳定的溶质梯度具有稳定作用,悬浮颗粒对系统具有稳定作用,而达西数和中等渗透率在某些条件下具有稳定/去稳定作用。旋转,稳定的溶质梯度,悬浮颗粒,达西数和中等磁导率的影响也已通过图形显示。

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