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首页> 外文期刊>Applied Mechanics and Engineering >THERMOSOLUTAL INSTABILITY IN COMPRESSIBLE VISCOELASTIC DUSTY FLUID THROUGH POROUS MEDIUM
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THERMOSOLUTAL INSTABILITY IN COMPRESSIBLE VISCOELASTIC DUSTY FLUID THROUGH POROUS MEDIUM

机译:多孔介质中可压缩粘弹性粉尘流体的热稳定性

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摘要

Thermosolutal instability in a compressible Walters B' viscoelastic fluid with suspended particles through a porous medium is considered. Following the linearized stability theory and normal mode analysis, the dispersion relation is obtained. For stationary convection, the Walters B' viscoelastic fluid behaves like a Newtonian fluid and it is found that suspended particles and medium permeability have a destabilizing effect whereas the stable solute gradient and compressibility have a stabilizing effect on the system. Graphs have been plotted by giving numerical values to the parameters to depict the stability characteristics. The stable solute gradient and viscoelasticity are found to introduce oscillatory modes in the system which are non-existent in their absence.
机译:考虑了可压缩的Walters B'粘弹性流体在通过多孔介质的悬浮颗粒中的热固溶不稳定性。遵循线性化稳定性理论和正态分析,获得了色散关系。对于固定对流,沃尔特斯B'粘弹性流体的行为类似于牛顿流体,并且发现悬浮颗粒和中等渗透性具有稳定作用,而稳定的溶质梯度和可压缩性则对系统具有稳定作用。通过给参数提供数值来绘制图表,以描述稳定性特征。发现稳定的溶质梯度和粘弹性会在系统中引入不存在的振荡模式。

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