首页> 外文会议>National Conference on Mathematical Techniques and Applications >A Study of Mechanical Efficiency, Resistance, Pressure Gradient and Flow Rate of Magneto Hydro Dynamic Squeeze Film Characteristics between Finite Parallel Rectangular Plates with Surface Roughness Effect in a Porous Medium
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A Study of Mechanical Efficiency, Resistance, Pressure Gradient and Flow Rate of Magneto Hydro Dynamic Squeeze Film Characteristics between Finite Parallel Rectangular Plates with Surface Roughness Effect in a Porous Medium

机译:多孔介质表面粗糙度效应的有限平行矩形板磁体水电动态挤压膜特性机械效率,电阻,压力梯度和流速研究

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Surface roughness frequently often shortened to roughness, is a component of surface texture. Roughness assumes an imperative job in deciding a real object will interact with its condition. In this paper we examine about the impact of a porous parallel rectangular plates under the impact of magnetic field with inclination of strength B_0. The velocity in the porous medium having an exact solution is systematically determined, its conduct computationally examined with reference to the different governing parameter. The mechanically effectiveness of the bearing framework and the pressure gradient between the plates are additionally acquired logically and their conduct is computationally talked about.
机译:经常经常缩短到粗糙度的表面粗糙度是表面纹理的组成部分。粗糙度呈现决定真实对象的势在必行作业将与其条件进行交互。在本文中,我们在磁场的影响下探讨了多孔平行矩形板的撞击与强度B_0的倾斜。系统地确定具有精确溶液的多孔介质中的速度,其传导参考不同的控制参数计算。轴承框架的机械有效性和板之间的压力梯度依靠地获得,并且它们的行为在计算上讨论。

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