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Comparison of predictions with test results for rotordynamic coefficients of a four-pocket gas damper seal

机译:四腔气体阻尼器密封件转子动力系数的预测结果与测试结果的比较

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摘要

Experiments and field applications have demonstrated that multiple-pocket gas damper seals effectively eliminate subsynchronous vibration and attenuate imbalance response at the critical speeds in turbomachinery. A one-control volume, turbulentbulk-flow model for the prediction of the seal leakage and rotordynamic force coefficients of centered multiple-pocket damper seals is hereby detailed. Comparisons of numerical predictions with experimental force coefficients for a four-pocket damper seal are presented. The bulk-flow model and experiments indicate the seal direct stiffness and damping force coefficients are insensitive to journal speed while the cross-coupled stiffnesses increase slightly. However, the current model overpredicts the direct damping coefficient and underpredicts the direct stiffness coefficient for increasing test pressure ratios. Computed results show that the force coefficients of multiple-pocket gas damper seals are also functions of the rotor excitation frequency.
机译:实验和现场应用表明,多腔气体阻尼器密封件可有效消除次同步振动,并在涡轮机械的临界转速下减弱不平衡响应。本文详细介绍了一种用于预测中心多腔阻尼器密封件的密封件泄漏量和转子动力系数的单控制体积湍流模型。介绍了四腔减震器密封件的数值预测与实验力系数的比较。大流量模型和实验表明,密封件的直接刚度和阻尼力系数对轴颈速度不敏感,而交叉耦合刚度则略有增加。但是,当前模型为提高测试压力比而高估了直接阻尼系数,而低估了直接刚度系数。计算结果表明,多腔气体阻尼器密封件的力系数也是转子励磁频率的函数。

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