不平衡和压差对垂直转子密封系统稳定性的影响

S. Roy Kimura, Tsuyoshi Inoue, Hiroo Taura, Akira Heya
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引用次数: 0

摘要

涡轮机械密封等流体元件中产生的旋转动力(RD)流体力会影响涡轮机械的稳定性并导致轴振动。为了弄清密封件对转子系统稳定性的影响,已经开展了多项研究。考虑到密封件中产生的 RD 流体力,许多研究对水平轴系统的转子动力学进行了调查,在这些研究中,使用 RD 系数通过特征值分析评估了水平轴系统的稳定性。然而,很少有研究对竖井系统进行分析。垂直轴的动态行为与水平轴有很大不同,因为在垂直轴系统中,转子的重量不会作用在密封件上。垂直轴系统通常容易因流体膜旋流而不稳定,而且轴旋流的振幅往往很大。当振幅较大时,RD 流体力无法使用 RD 系数在平衡点周围线性化。因此,垂直轴系统中出现的失稳和稳定现象无法通过特征值分析进行预测。流固耦合(FSI)分析需要考虑轴振动与密封件中产生的 RD 流体力之间的相互作用,以预测此类现象。本研究使用 FSI 分析法研究了不平衡和压差对受到密封中产生的 RD 流体力影响的垂直轴系统稳定性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Unbalance and Differential Pressure On the Stability of Vertical Rotor-seal System
The rotordynamic (RD) fluid force generated in fluid elements such as seals in turbomachinery affects the stability of turbomachinery and causes shaft vibrations. Various studies have been conducted to clarify the effects of seals on the stability of rotor systems. Many studies have investigated the rotor dynamics of horizontal shaft systems, considering the RD fluid force generated in the seals, and in these studies, the stability of horizontal shaft systems has been assessed via eigenvalue analysis using RD coefficients. However, few studies have analyzed vertical shaft systems. The dynamic behavior of vertical shafts differs significantly from that of horizontal shafts because the weight of the rotor does not act on the seal in a vertical shaft system. Vertical shaft systems are generally prone to instability because of the fluid film whirl, and the amplitude of the shaft whirl tends to be large. When the amplitude is large, the RD fluid force cannot be linearized around the equilibrium point using RD coefficients. Therefore, destabilization and stabilization phenomena that appear in vertical shaft systems cannot be predicted using eigenvalue analysis. Fluid-structure interaction (FSI) analysis that considers the interaction between the shaft vibration and the RD fluid force generated in seals is required to predict such phenomena. This study used FSI analysis to investigate the effects of unbalance and differential pressure on the stability of a vertical shaft system subjected to RD fluid force generated in the seal.
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