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Fluid Film Pressure Description in Finite Turbulent Lubricated Journal Bearings by Using the Warner's Theory

机译:通过使用华纳理论,流体膜压力描述在有限湍流润滑轴颈轴承中

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The purpose of this paper is to propose a method for the analytical description of the non-steady fluid film for the liquid-lubricated finite journal bearings operating in a fully developed turbulent regime. The analytical description takes in account a symmetrical rigid rotor supported on two lubricated journal bearings under the classical assumptions of the Reynolds theory. The proposed methodology represents an extension of the Warner's approach and allows to solve analytically in approximate way the equation governing the distribution of pressure in the bearing oil gap and then to obtain the analytical expressions for the unsteady fluid film forces giving particular attention to their continuity in the entire definition domain, introducing original analytical functions called "jump function". The proposed model allows not only to minimize the computation time without any significant loss of accuracy in the nonlinear dynamic analysis of rotors on turbulent journal bearings but also permits a better readability of the parameter effects on the system unsteady behavior.
机译:本文的目的是提出一种用于在完全发育的湍流状态下运行的液体润滑的有限轴承的非稳定流体膜的分析描述。分析描述考虑到在雷诺理论的经典假设下的两个润滑轴颈轴承上的对称刚性转子。所提出的方法代表了Warner的方法的延伸,并允许在轴承油间隙中的压力分布的平等方面分析地解决,然后获得不稳定的流体膜力的分析表达,特别关注它们的连续性整个定义域,引入名为“跳转功能”的原始分析函数。所提出的模型不仅可以最小化计算时间而在湍流期刊轴承的转子的非线性动态分析中没有任何显着的准确性损失,而且还允许更好地可读于对系统不稳定行为的参数效应。

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