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Extension of transonic flow computational concepts in the analysis of cavitated bearings

机译:跨音速流动计算概念在空化轴承分析中的扩展

摘要

An analogy between the mathematical modeling of transonic potential flow and the flow in a cavitating bearing is described. Based on the similarities, characteristics of the cavitated region and jump conditions across the film reformation and rupture fronts are developed using the method of weak solutions. The mathematical analogy is extended by utilizing a few computational concepts of transonic flow to numerically model the cavitating bearing. Methods of shock fitting and shock capturing are discussed. Various procedures used in transonic flow computations are adapted to bearing cavitation applications, for example, type differencing, grid transformation, an approximate factorization technique, and Newton's iteration method. These concepts have proved to be successful and have vastly improved the efficiency of numerical modeling of cavitated bearings.
机译:描述了跨音速势流的数学模型与空化轴承中的流之间的类比。基于相似性,使用弱溶液方法开发了空化区域的特征以及跨膜重整和破裂前沿的跳跃条件。通过利用跨音速流的一些计算概念对空化轴承进行数值模拟,可以扩展数学类比。讨论了减震和减震的方法。跨音速流计算中使用的各种过程适用于轴承气蚀应用,例如类型差异,网格转换,近似因式分解技术和牛顿迭代方法。这些概念已被证明是成功的,并且极大地提高了空化轴承数值建模的效率。

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