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首页> 外文期刊>International Journal of Mechanical Sciences >The finite volume solution of the Reynolds equation of lubrication with film discontinuities
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The finite volume solution of the Reynolds equation of lubrication with film discontinuities

机译:具有膜间断的雷诺兹润滑方程的有限体积解

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摘要

The present work deals with the numerical solution of the Reynolds equation of lubrication in the specific case where the film thickness is discontinuous. The present approach is obtained within the framework of a finite volume discretization and enables concentrated inertia effects to be taken into account, as described by a generalized Bernoulli equation. The classic finite volume formulation is included as a special case when discontinuities are absent. Some numerical examples show that the conservative properties of the finite volume discretization are maintained even when the pressure field is discontinuous. A typical application shows that the film discontinuities should always be taken into account in a consistent physical manner in order to eliminate the awkward question of their impact on global results of technological interest.
机译:在膜厚度不连续的特定情况下,本工作涉及润滑的雷诺方程的数值解。如由广义伯努利方程所描述的,本方法是在有限体积离散化的框架内获得的,并且使得能够考虑集中的惯性效应。当不连续的情况下,经典的有限体积公式作为一种特殊情况包括在内。一些数值示例表明,即使在压力场不连续的情况下,有限体积离散化的保守性质也得以保持。一个典型的应用表明,应始终以一致的物理方式考虑薄膜的不连续性,以消除它们对整体技术利益影响的尴尬问题。

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