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Nonlinear Analysis of Rotordynamic Fluid Forces in the Annular Plain Seal by Using Extended Bulk-Flow Analysis: Influence of Static Eccentricity and Whirling Amplitude

机译:环形大面积密封中旋转动力流体的非线性分析-使用扩展的大流量分析:静态偏心率和回旋幅度的影响

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摘要

Rotor-dynamic fluid force (RD fluid force) of turbomachinery is one of the causes of the shaft vibration problem. Bulk flow theory is the method for analyzing this RD fluid force, and it has been widely used in the design stage of machine. The conventional bulk flow theory has been carried out under the assumption of concentric circular shaft's orbit with a small amplitude. However, actual rotating machinery's operating condition often does not hold this assumption, for example, existence of static load on the machinery causes static eccentricity. In particular, when such a static eccentricity is significant, the nonlinearity of RD fluid force may increase and become non-negligible. Therefore, conventional bulk flow theory is not applicable for the analysis of the RD fluid force in such a situation. In this paper, the RD fluid force of the annular plain seal in the case of circular whirling orbit with static eccentricity is investigated. The case with both the significant static eccentricity and the moderate whirling amplitude is considered, and the perturbation analysis of the bulk-flow theory is extended to investigate the RD fluid force in such cases. In this analysis, the assumption of the perturbation solution is extended to both static terms and whirling terms up to the third order. Then, the additional terms are caused by the coupling of these terms through nonlinearity, and these three kinds of terms are considered in the extended perturbation analysis of the bulk flow theory. As a result, a set of nonlinear analytical equations of the extended perturbation analysis of the bulk flow theory, for the case with both the significant static eccentricity and the moderate whirling amplitude, is deduced. The RD fluid force for such cases is analyzed, and the occurrence of constant component, backward synchronous component, and super-harmonic components in the RD fluid force is observed in addition to the forward synchronous component. The representation of RD fluid force coefficients (RD coefficients) are modified for the case with significant static eccentricity, and the variation of RD fluid force coefficients for the magnitude of static eccentricity is analyzed. These analytical results of RD fluid force and its RD coefficients are compared with the numerical results using finite difference analysis and experimental results. As a result, the validity of the extended perturbation analysis of the bulk-flow theory for the case with both the significant static eccentricity and the moderate whirling amplitude is confirmed.
机译:涡轮机械的转子动力流体力(RD流体力)是轴振动问题的原因之一。大流量理论是分析RD流体力的一种方法,已在机械设计阶段得到了广泛的应用。常规的整体流动理论是在假设同心圆轴的振幅较小的情况下进行的。但是,实际的旋转机械的运行状态通常不符合此假设,例如,机械上存在静载荷会导致静偏心。特别是,当这种静态偏心率很大时,RD流体力的非线性可能会增加并且变得不可忽略。因此,在这种情况下,常规的体积流理论不适用于RD流体力的分析。本文研究了具有静态偏心的圆形回旋轨道情况下环形滑动密封件的RD流体力。考虑了具有显着的静态偏心率和适度的回旋幅度的情况,并且扩展了体积流理论的扰动分析以研究这种情况下的RD流体力。在此分析中,摄动解的假设扩展到静态项和旋转项,直到三阶。然后,附加项是由于这些项之间通过非线性耦合而引起的,并且在体流理论的扩展摄动分析中考虑了这三种项。结果,推导了对于大流量静态偏心率和适度回旋幅度的情况,对体积流理论的扩展摄动分析的一组非线性解析方程。分析了这种情况下的RD流体力,除了正向同步分量外,还观察到RD流体力中恒定分量,后向同步分量和超谐波分量的出现。对具有较大静态偏心率的情况修改了RD流体力系数(RD系数)的表示形式,并分析了RD流体力系数随静态偏心率大小的变化。使用有限差分分析和实验结果,将这些RD流体力及其RD系数的分析结果与数值结果进行了比较。结果,对于具有显着的静态偏心率和适度的回旋幅度的情况,证实了对大流量理论的扩展摄动分析的有效性。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2019年第2期|021017.1-021017.8|共8页
  • 作者单位

    Nagoya Univ, Dept Mech Syst Engn, Chikusa Ku, Furo Cho, Nagoya, Aichi 4648603, Japan;

    Nagoya Univ, Dept Mech Syst Engn, Chikusa Ku, Furo Cho, Nagoya, Aichi 4648603, Japan;

    Nagoya Univ, Dept Mech Syst Engn, Chikusa Ku, Furo Cho, Nagoya, Aichi 4648603, Japan;

    Muroran Inst Technol, 27-1 Mizumoto Cho, Muroran, Hokkaido 0508585, Japan;

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