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Heterogeneous Multiscale Methods for modelling surface topography in Elastohydrodynamic Lubrication line contacts

机译:用于对弹性流体动力润滑线接触中的表面形貌进行建模的异质多尺度方法

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摘要

A multiscale method for the Elastohydrodynamic Lubrication (EHL) of line contacts is derived based on the Heterogeneous Multiscale Methods. Periodicity applies to the topographical features and lubricant flow, data is homogenised over a range of variables at a micro-scale and coupled into a macro-scale model. This is achieved using flow factors as calculated from metamodels, which themselves evolve with the solution procedure. Results are given for an idealised topography and illustrate significant deviations from smooth surface assumptions as quantified by the flow factors. Improvements in the accuracy and efficiency with previous work and large fluctuations due to micro-EHL are also presented. Validation of the multiscale method with a deterministic topography is provided demonstrating good accuracy and efficiency.
机译:基于异质多尺度方法,推导了线接触件的弹性流体动力润滑(EHL)的多尺度方法。周期性适用于地形特征和润滑剂流动,数据在微观尺度上的一系列变量范围内均质化,并耦合到宏观尺度模型中。这是通过使用根据元模型计算的流量因子来实现的,流量因子本身会随着求解过程而发展。给出了理想化地形的结果,并说明了与由流量因子量化的光滑表面假设的显着偏差。还介绍了先前工作的准确性和效率的提高以及由于微型EHL引起的较大波动。提供了具有确定性地形的多尺度方法验证,证明了其良好的准确性和效率。

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