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Electrohydrodynamic dispersion with interphase mass transfer in a poorly conducting couple stress fluid bounded by porous layers

机译:具有相间质量传递的电流体动力学分散在由多孔层界定的导电性差的偶合应力流体中

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摘要

Exact analysis of miscible dispersion of solute with interphase mass transfer in a poorly conducting couple stress fluid flowing through a rectangular channel bounded by porous layers is considered because of its application in many practical situations. The generalized dispersion model of Sankarasubramanian and Gill is used, which brings into focus the exchange coefficient, the convective coefficient and the dispersion coefficient. The exchange coefficient comes into picture due to the interphase mass transfer and independent of solvent fluid viscosity. It is observed that the convective coefficient increases with an increase in the porous parameter while it decreases with an increase in the couple stress parameter. The dispersion coefficient is plotted against wall reaction parameter for different values of porous parameter and couple stress parameter. It is noted that the dispersion coefficient decreases with an increase in the value of couple stress parameter but increases with porous parameter.
机译:由于它在许多实际情况中的应用,因此考虑了在流经多孔层界定的矩形通道的导电性差的耦合应力流体中,溶质与相间传质的溶混性的精确分析。使用Sankarasubramanian和Gill的广义色散模型,重点讨论了交换系数,对流系数和色散系数。由于相间传质并且与溶剂流体的粘度无关,交换系数是重要的。可以看出,对流系数随多孔参数的增加而增加,而随耦合应力参数的增加而减小。针对多孔参数和耦合应力参数的不同值,针对壁反应参数绘制了弥散系数。注意,色散系数随着耦合应力参数值的增加而减小,但随着多孔参数的增加而增大。

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