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Magnetohydrodynamic Fluctuating Free Convection Flow of Second-Grade Fluid Flow in a Porous Medium

机译:多孔介质中二级液体流动的磁力流体动力学波动流动

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摘要

The article’s objective is to study the magnetohydrodynamic fluctuating free convection flow of incompressible electrically conducting viscoelastic fluid in a porous medium in the presence of a pressure gradient. The flow is between two parallel plates; the lower plate is at rest, while the upper plate moves with a free stream velocity Ut. A uniform magnetic field of strength B0 is applied transversely to the fluid motion. The dimensional governing equations and physical initial and boundary conditions are nondimensionalized by inserting appropriate dimensionless variables. Furthermore, Lighthill’s method is used to obtain exact analytical solutions for the velocity, temperature, and concentration distributions. Finally, the influences of inserted parameters are studied through plots and discussed physically. The numerical results are calculated and presented in tabular form for skin friction. It is worth mentioning that when the viscoelastic parameter α1 tends to zero, the obtained general solution is reduced to Newtonian fluid, which shows the validity and correctness of our obtained exact solutions.
机译:本文的目的是在压力梯度存在下研究在多孔介质中在多孔介质中测量不可压缩的导电粘弹性流体的磁性动力学波动流。流动在两个平行板之间;下板静止,而上板用自由流速度UT移动。强度B0的均匀磁场横向于流体运动施加。通过插入适当的无量纲变量,尺寸控制方程和物理初始和边界条件是一种非主治化的。此外,Lighthill的方法用于获得速度,温度和浓度分布的精确分析解。最后,通过绘图研究了插入参数的影响并物理上讨论。计算数值结果,以表格形式呈现皮肤摩擦。值得一提的是,当粘弹性参数α1趋于为零时,所获得的一般溶液减少到牛顿流体,显示我们所获得的精确解决方案的有效性和正确性。

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