滑移和倾斜磁场对多孔通道中非混相流体(耦合应力流体和杰弗里流体)流动的影响

Punnamchandar Bitla, Fekadu Yemataw Sitotaw
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引用次数: 2

摘要

本文研究了耦合应力流体和杰弗里流体两种不混相流体在多孔通道中的流动。用滑移边界条件代替经典的边界无滑移条件,使边界条件更加真实和有意义。此外,我们利用倾斜磁场对流体流动的影响。一对应力流体和杰弗里流体分别在水平多孔通道的I区和II区相邻流动。利用上下边界滑移条件和流体-流体界面条件对无量纲化控制方程进行了解析求解。得到了两个区域速度分量的封闭解析表达式。研究了滑移参数、哈特曼数、耦合应力参数、杰弗里参数、倾角和达西数对两个区域速度分量的影响。在没有滑移、耦合应力参数和杰弗里参数的情况下,得到了极限情况并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Slip and Inclined Magnetic Field on the Flow of Immiscible Fluids (Couple Stress Fluid and Jeffrey Fluid) in a Porous Channel
In this paper, we study the flow of two immiscible fluids namely, couple stress fluid and Jeffrey fluid in a porous channel. Instead of the classical no-slip conditions on the boundaries, we used slip boundary conditions, which are more realistic and meaningful. In addition, we used inclined magnetic field effects on the fluid flow. The couple stress fluid and Jeffrey fluid are flowing adjacent to each other in the region I and in the region II, respectively, of the horizontal porous channel. The nondimensionalized governing equations are solved analytically by using slip conditions at the lower and upper boundaries and interface conditions at the fluid-fluid interface. The analytical expressions for the velocity components in both regions are obtained in closed form. The effects of slip parameter, Hartmann number, couple stress parameter, Jeffrey parameter, angle of inclination, and Darcy number on velocity components in both regions are investigated. In the absence of slip, couple stress parameter, and Jeffrey parameters, limiting cases are obtained and discussed.
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