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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Application of CFD Analysis for Rotating Machinery—Part I: Hydrodynamic, Hydrostatic Bearings and Squeeze Film Damper
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Application of CFD Analysis for Rotating Machinery—Part I: Hydrodynamic, Hydrostatic Bearings and Squeeze Film Damper

机译:CFD分析在旋转机械中的应用-第一部分:流体动力,静压轴承和挤压膜阻尼器

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摘要

The traditional method for bearing and damper analysis usually involves a development of rather complicated numerical calculation programs that may just focus on a simplified and specific physical model. The application of the general CFD codes may make this analysis available and effective where complex flow geometries are involved or when more detailed solutions are needed. In this study, CFX-TASCflow is employed to simulate various fixed geometry fluid-film bearing and damper designs. Some of the capabilities in CFX-TASCflow are applied to simulate the pressure field and calculate the static and dynamic characteristics of hydrodynamic, hydrostatic, and hybrid bearings as well as squeeze film dampers. The comparison between the CFD analysis and current computer programs used in industry has been made. The results show reasonable agreement in general. Some of the possible reasons for the differences are discussed. It leaves room for further investigation and improvement on the methods of computation.
机译:轴承和阻尼器分析的传统方法通常涉及相当复杂的数值计算程序的开发,这些程序可能仅关注简化和特定的物理模型。在涉及复杂的流动几何形状或需要更详细的解决方案的情况下,通用CFD代码的应用可使该分析有效且有效。在这项研究中,CFX-TASCflow用于模拟各种固定几何形状的液膜轴承和阻尼器设计。 CFX-TASCflow中的某些功能可用于模拟压力场并计算流体动力,静液压和混合轴承以及挤压膜阻尼器的静态和动态特性。在CFD分析和当前工业上使用的计算机程序之间进行了比较。结果表明总体上是合理的。讨论了造成差异的一些可能原因。这为进一步研究和改进计算方法留下了空间。

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