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首页> 外文期刊>Journal of Tribology >Lobatto point quadrature for thermal lubrication problems involving compressible lubricants. EHL applications
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Lobatto point quadrature for thermal lubrication problems involving compressible lubricants. EHL applications

机译:Lobatto点正交解决涉及可压缩润滑剂的热润滑问题。 EHL申请

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摘要

Refined solutions of thermal lubrication problems generally require fine mesh and many iteration steps. To resolve these difficulties, Elrod and Brewe proposed an efficient algorithm based on the use of a Lobatto point version of the Gauss quadrature, which is typically twice as fast as the other quadrature methods. The original Lobatto algorithm was only applied for incompressible hydrodynamic lubrication. This paper presents a Lobatto point quadrature algorithm which is applicable for thermal elastohy-drodynamic lubrication (EHL) problems where both density and viscosity of the lubricant are taken to be temperature and pressure dependent and the transverse velocity term in the energy equation is obtained from the continuity equation. Within this approach, the unknown temperature across the film is written in a series of Legendre polynomials. Regardless of the order of the series expansions, the thermal Reynolds equation can explicitly contain only the information from the first three Legendre polynomials, i.e., data from up to a second-order polynomial. Use of the Lobatto point calculation method has resulted in accuracy without the use of a larger number of grid points.
机译:精炼的热润滑问题解决方案通常需要精细的网格划分和许多迭代步骤。为了解决这些困难,Elrod和Brewe提出了一种高效的算法,该算法基于高斯正交的Lobatto点版本的使用,该算法通常是其他正交方法的两倍。原始的Lobatto算法仅适用于不可压缩的流体动力润滑。本文提出了一种Lobatto点积分算法,该算法适用于热弹塑性动态润滑(EHL)问题,其中润滑剂的密度和粘度都与温度和压力有关,并且从方程中获得能量方程中的横向速度项。连续性方程。在这种方法下,整个薄膜的未知温度被写入一系列勒让德多项式。无论级数展开的顺序如何,热雷诺方程都可以明确地仅包含来自前三个勒让德多项式的信息,即最多包含二阶多项式的数据。使用Lobatto点计算方法可以提高准确性,而无需使用大量网格点。

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