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Analysis and testing for rotordynamic coefficients of turbulent annular seals with different, directionally homogeneous surface-roughness treatment for rotor and stator elements

机译:对转子和定子元件进行不同方向均匀的表面粗糙度处理的湍流环形密封件转子动力学系数的分析和测试

摘要

A theory is presented, based on a simple modification of Hirs' turbulent lubrication equations, to account for different but directionally-homogeneous surface roughness treatments for the rotor and stator of annular seals. The theoretical results agree with von Pragenau's predictions that a damper seal which uses a smooth rotor and a rough stator yields more net damping than a conventional seal which has the same roughness for both the rotor and stator. Experimental results for four stators confirm that properly-designed roughened stators yield higher net damping values and substantially less leakage than seals with smooth surfaces. The best seal from both damping and leakage viewpoints uses a round-hole-pattern stator. Initial results for this stator suggest that, within limits, seals can be designed to yield specified ratios of stiffness to damping.
机译:提出了一种理论,该理论基于对Hirs湍流润滑方程式的简单修改,以解释环形密封件的转子和定子的不同但方向均匀的表面粗糙度处理。理论结果与冯·普拉根瑙(von Pragenau)的预测一致,即使用光滑转子和粗糙定子的阻尼器密封件比具有相同转子和定子粗糙度的常规密封件产生的净阻尼更大。四个定子的实验结果证实,与具有光滑表面的密封件相比,经过适当设计的粗化定子可产生更高的净阻尼值,并且泄漏量也更少。从阻尼和泄漏的角度来看,最好的密封都是使用圆孔型定子。该定子的初步结果表明,在限定范围内,可以设计密封件以产生规定的刚度与阻尼比。

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    Childs D. W.; Kim C. H.;

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  • 年度 1984
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