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The Instability of an Electrohydrodynamic Viscous Liquid Micro-Cylinder Buried in a Porous Medium: Effect of Thermosolutal Marangoni Convection

机译:埋在多孔介质中的电动流体动力粘性液体微圆柱的不稳定性:热固溶Marangoni对流的影响

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摘要

The electrohydrodynamic (EHD) thermosolutal Marangoni convection of viscous liquid, in the presence of an axial electric field through a micro cylindrical porous flow, is considered. It is assumed that the surface tension varies linearly with both temperature and concentration. The instability of the interface is investigated for the free surface of the fluid. The expression of the free surface function is derived taking into account the independence of the surface tension of the heat and mass transfer. The transcendental dispersion relation is obtained considering the dependence of the surface tension on the heat and mass transfer. Numerical estimations for the roots of the transcendental dispersion relation are obtained indicating the relation between the disturbance growth rate and the variation of the wave number. It is found that increasing both the temperature and concentration at the axial microcylinder has a destabilizing effect on the interface, according to the reduction of the surface tension. The existence of the porous structure restricts the flow and hence has a stabilizing effect. Also, the axial electric field has a stabilizing effect. Some of previous analytical and experimental results are recovered upon appropriate data choices.
机译:考虑了在通过微圆柱多孔流的轴向电场的存在下,粘性液体的电流体动力学(EHD)热固溶Marangoni对流。假定表面张力随温度和浓度线性变化。对于流体的自由表面,研究了界面的不稳定性。自由表面功能的表达是考虑到传热和传质的表面张力的独立性而得出的。考虑到表面张力对传热和传质的依赖性,获得了先验的色散关系。获得了超越色散关系的根的数值估计,表明了扰动增长率与波数变化之间的关系。已经发现,随着表面张力的降低,增加轴向微圆柱体处的温度和浓度对界面具有不稳定作用。多孔结构的存在限制了流动,因此具有稳定作用。而且,轴向电场具有稳定作用。选择适当的数据后,可以恢复以前的一些分析和实验结果。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第8期|416562.1-416562.14|共14页
  • 作者单位

    Department of Mathematics, Faculty of Education, Ain Shams University, Roxy, Cairo 11511, Egypt;

    Department of Mathematics, Faculty of Education, Ain Shams University, Roxy, Cairo 11511, Egypt;

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