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Numerical study of surface roughness and magnetic field between rough and porous rectangular plates

机译:粗糙矩形板与多孔矩形板表面粗糙度和磁场的数值研究

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摘要

This paper theoretically examines the combined effects of surface roughness and magnetic field between two rectangular parallel plates of which the upper plate has roughness structure and the lower plate has porous material in the presence of transverse magnetic field. The lubricating fluid in the film region is assumed to be Newtonian fluid (linearly viscous and incompressible fluid). This model consists of mathematical formulation of the problem with appropriate boundary conditions and solution numerically by finite difference based multigrid method. The generalized average modified Reynolds equation is derived for longitudinal roughness using Christensen's stochastic theory which assumes that the height of the roughness asperity is of the same order as the mean separation between the plates. We obtain the bearing characteristics such as pressure distribution and load carrying capacity for various values of roughness, Hartmann number, and permeability parameters. It is observed that the pressure distribution and load carrying capacity were found to be more pronounced for increasing values of roughness parameter and Hartmann number; whereas these are found to be decreasing for increasing permeability compared to their corresponding classical cases. The physical reasons for these characters are discussed in detail. © 2013 Ramesh B. Kudenatti et al.
机译:本文从理论上研究了两个矩形平行板之间的表面粗糙度和磁场的综合影响,在横向磁场存在下,两个矩形平行板的上板具有粗糙结构,下板具有多孔材料。假定膜区域中的润滑流体是牛顿流体(线性粘性和不可压缩流体)。该模型由具有适当边界条件的问题的数学公式组成,并通过基于有限差分的多重网格方法进行数值求解。利用克里斯滕森的随机理论推导了纵向粗糙度的广义平均修正雷诺方程,该理论假设粗糙度粗糙体的高度与板之间的平均间隔相同。我们获得各种粗糙度值,哈特曼数和渗透率参数的轴承特性,例如压力分布和承载能力。可以发现,随着粗糙度参数和哈特曼数的增加,压力分布和承载能力更加明显。与相应的经典案例相比,随着渗透率的提高,这些指标正在下降。这些字符的物理原因将详细讨论。 ©2013 Ramesh B.Kudenatti等。

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