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3D Numerical investigation of pressure field of an orifice compensated hydrostatic bearing

机译:孔板补偿静压轴承压力场的三维数值研究

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摘要

In recent years, much attention has been given to hydrostatic/hybrid journal bearings in research due to their wide spread engineering applications, such as: high speed turbomachinery, machine tools spindles, cryogenic equipment, and precision grinding. However, the activity toward improved understanding of the flow regimes and the associated pressure pattern in the recess flow phenomena is still needed. The objective of this work is to provide an understanding of the influence of regime flow in recess on the pressure field of hydrostatic bearing flat pad fed by orifice restrictor and orifice inertia. 3D Reynolds averaged Navier Stokes equations with the SST-k omega turbulence model are applied in order to investigate the effects of pressure supply, dynamic viscosity and recess depths on the pressure profile. The finite volume method implemented in the ANSYS-CFX software is used. To prove the robustness of CFD code, a comparison of the numerical results and the Reynolds equation is performed at very deep recess. The results exhibit very good agreements between CFD and Reynolds equation methods. On the other hand, the several cases treated in this work contribute also to analyze and to explain the main reasons providing the inertia and the Rayleigh effect in recess flow.
机译:近年来,静压/混合径向轴承因其广泛的工程应用而受到研究关注,例如:高速涡轮机械、机床主轴、低温设备和精密磨削。然而,仍然需要开展活动,以提高对凹槽流动现象中的流动状态和相关压力模式的理解。本工作的目的是了解凹槽中的状态流对由孔板限制器和孔板惯性供给的静压轴承平垫压力场的影响。采用SST-k omega湍流模型的三维雷诺平均纳维尔斯托克斯方程,研究了供压、动态粘度和凹陷深度对压力剖面的影响。使用ANSYS-CFX软件中实现的有限体积方法。为了证明CFD代码的鲁棒性,在非常深的凹槽中对数值结果和雷诺方程进行了比较。结果表明,CFD和雷诺方程方法之间有很好的一致性。另一方面,本文处理的几个案例也有助于分析和解释在凹槽流中提供惯性和瑞利效应的主要原因。

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