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Investigation of Couple Stress Fluid and Surface Roughness Effects in the Elastohydrodynamic Lubrication Problems using Wavelet-Based Decoupled Method

机译:基于小波解耦方法的弹性流体动力润滑问题中的应力流体和表面粗糙度耦合效应研究

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The standard decoupled method with Newton-generalized minimum residual procedure performs poorly or may break down when used to solve certain elastohydrodynamic lubrication problems. The authors Zargari et al ., 2007 presented decoupled and coupled methods in which the limitations of the decoupled method for some set of physical parameters and slight variation in these values (physical parameters) give a non-convergence solution. To overcome this aspect the wavelet-based preconditioners technique is used in this paper to solve the elastohydrodynamic lubrication problem. The effect of coupled stress fluids on elastohydrodynamic lubrication behavior in smooth, as well as rough, contact is investigated using the proposed method, numerically, in a low-speed-high load condition. The elastohydrodynamic lubrication characteristics computed for couple stress fluids are found to have strong dependence on the couple stress parameter, which shows the versatility and applicability of the proposed method.
机译:当用于解决某些弹性流体动力润滑问题时,采用牛顿广义最小残留程序的标准解耦方法效果不佳或可能失效。 Zargari等人,2007年提出了一种解耦和耦合方法,其中解耦方法对于某些物理参数集的局限性以及这些值(物理参数)的微小变化提供了一种非收敛解。为了克服这一方面,本文采用基于小波的预处理器技术来解决弹性流体动力润滑问题。在低速-高负载条件下,使用本文提出的方法,数值研究了耦合应力流体对光滑和粗糙接触中弹性流体动力润滑行为的影响。发现耦合应力流体的弹性流体动力润滑特性强烈依赖于耦合应力参数,这表明了该方法的通用性和适用性。

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