首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >EHL film thickness computations at low speeds: risk of artificial trends as a result of poor accuracy and implications for mixed lubrication modelling
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EHL film thickness computations at low speeds: risk of artificial trends as a result of poor accuracy and implications for mixed lubrication modelling

机译:低速下的EHL膜厚计算:由于精度低和混合润滑建模的影响而导致人为趋势的风险

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摘要

When numerical and experimental results are compared to validate elasto-hydrodynamic lubrication (EHL) models, it is of utmost importance that grid-converged results are used. In particular at low speeds and high loads, solutions obtained using grids that are not sufficiently dense will exhibit an artificial trend that does not represent the behaviour of the continuous modelling equations. As it coincides with a trend observed in experiments this may lead to the erroneous conclusion that the theoretical model on which the numerical simulations are based is accurate. This risk is illustrated in detail. It is further shown that EHL models based on the Reynolds equation in a steady state circular contact predicts a positive film thickness as long as the grid used in the calculations is sufficiently dense. This has significant implications for the validity of results obtained using mixed lubrication models based on a Reynolds model and a film thickness threshold.
机译:当比较数值结果和实验结果以验证弹性流体动力润滑(EHL)模型时,使用网格收敛的结果至关重要。特别是在低速和高负载下,使用密度不够高的网格获得的解将呈现出无法代表连续建模方程的行为的人为趋势。由于它与实验中观察到的趋势一致,因此可能导致错误的结论,即数值模拟所基于的理论模型是准确的。详细说明了这种风险。进一步表明,只要在计算中使用的网格足够密集,基于稳态循环接触中的雷诺方程的EHL模型就能预测出正的膜厚。这对于使用基于雷诺模型和膜厚阈值的混合润滑模型获得的结果的有效性具有重大意义。

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