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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Rotordynamic Characteristics Prediction for Hole-Pattern Seals Using Computational Fluid Dynamics
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Rotordynamic Characteristics Prediction for Hole-Pattern Seals Using Computational Fluid Dynamics

机译:基于计算流体力学的孔型密封件转子动力学特性预测

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摘要

The experimental setup for a hole-pattern seal is modeled using computational fluid dynamics (CFD) and results compared with measured test data and bulk flow model (ISOTSEAL) predictions. The inlet swirl boundary condition for prior CFD analyses of this test case have either been assumed or based on pi tot-tube measurements. In this paper, the validity of each is investigated by including radial inlet nozzles with the inlet plenum in the model geometry. A transient mesh deformation technique with multiple frequency journal excitations is used to determine frequency-dependent rotordynamic coefficients. This multifrequency excitation method is validated against single frequency sinusoidal journal excitation. An empirical limit on the number of frequencies that can be packed in a multifrequency excitation signal to provide a reasonable estimate of rotordynamic coefficients is provided. Rotordynamic coefficients estimated using CFD compare well with measured rotordynamic coefficients. For the given test data, the ISOTSEAL bulk flow model does not provide good correlation for cross-coupled stiffness if the measured swirl ratio at the inlet of the seal is used in the prediction. However, improvement in correlation for cross-coupled stiffness is obtained if the swirl ratio found from CFD analysis is used in the bulk flow model, indicating that pitot-tube measurements of swirl may not be accurate.
机译:使用计算流体动力学(CFD)对孔型密封的实验装置进行建模,并将结果与​​测得的测试数据和大流量模型(ISOTSEAL)预测进行比较。已经对此测试案例进行了先前CFD分析的进气涡流边界条件已被假定,或者是基于pi-tot管的测量结果。在本文中,通过在模型几何体中包括径向进气喷嘴和进气室来研究每种方法的有效性。具有多个频率轴颈激励的瞬态网格变形技术用于确定与频率相关的转子动力学系数。该多频激励方法针对单频正弦轴颈激励进行了验证。提供了对可以打包在多频激励信号中以提供合理的转子动力系数估计值的频率数量的经验限制。使用CFD估算的转子动力系数与测得的转子动力系数具有很好的对比。对于给定的测试数据,如果在预测中使用了在密封件进口处测得的涡流比,则ISOTSEAL整体流量模型无法提供良好的交叉耦合刚度相关性。但是,如果在大流量模型中使用从CFD分析获得的涡流比,则可以改善交叉耦合刚度的相关性,这表明皮托管的涡流测量可能不准确。

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    《Journal of Engineering for Gas Turbines and Power》 |2020年第2期|021004.1-021004.16|共16页
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    Product Development Elliott Group 901 North Fourth Street Jeannette PA 15644;

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