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First and Second Law Analysis for the MHD Flow of Two Immiscible Couple Stress Fluids between Two Parallel Plates

机译:两块平行板之间两种不混溶的耦合应力流体的MHD流动的第一定律和第二定律分析

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This paper aims to analyze the heat transfer by the first and second laws of thermodynamics for the flow of two immiscible couple stress fluids inside a horizontal channel under the action of an imposed transverse magnetic field. The plates of the channel are maintained at constant and different temperatures higher than that of the fluid. The flow region consists of two zones, the flow of the heavier fluid taking place in the lower zone. No slip condition is taken on the plates and continuity of velocity, vorticity, shear stress, couple stress, temperature, and heat flux are imposed at the interface. The velocity and temperature distributions are derived analytically and these are used to compute the dimensionless expressions for the entropy generation number and Bejan number. The results are presented graphically. It is observed that the imposed magnetic field reduces the entropy production rate near the plates.
机译:本文旨在通过热力学第一定律和第二定律分析在横向磁场作用下水平通道内两种不混溶的偶应力流的流动。通道的板保持恒定且温度高于流体的温度。流动区域由两个区域组成,较重的流体在下部区域流动。板上没有滑动条件,并且在界面处施加了速度,涡度,剪切应力,耦合应力,温度和热通量的连续性。通过分析得出速度和温度分布,这些速度和温度分布用于计算熵生成数和Bejan数的无量纲表达式。结果以图形方式显示。观察到强加的磁场降低了板附近的熵产生率。

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