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A Design to Improve the Effective Damping Characteristics of Hole-Pattern-Stator Annular Gas Seals

机译:改善孔型定子环形气密封件有效阻尼特性的设计

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摘要

Predictions are presented for hole-pattern-stator seals for which the hole depth is varied axially, showing that various depth patterns can significantly improve damping performance in terms of both increasing the seal's effective damping and reducing its crossover frequency-the frequency at which effective damping changes from positive to negative. Test results are presented for the seal with the best variable hole depth (VHD) pattern showing an increase in peak damping by a factor of 1.6 over a constant hole depth (CHD) design versus predictions of 2.7. The crossover frequency is reduced by approximately 40%. The VHD seal has a significant negative static stiffness that probably arises from a friction-factor-jump phenomenon, not flow path divergence. The VHD seal leaks less than a comparable CHD design.
机译:给出了孔深度沿轴向变化的孔型定子密封件的预测结果,表明各种深度型式都可以通过提高密封件的有效阻尼和降低其交叉频率(有效阻尼的频率)来显着改善阻尼性能。从正变为负。给出了具有最佳可变孔深(VHD)模式的密封件的测试结果,该结果表明,在恒定孔深(CHD)设计中,峰值阻尼增加了1.6倍,而预测值为2.7。交叉频率降低了约40%。 VHD密封件具有明显的负静态刚度,这很可能是由摩擦系数跳跃现象而不是流路发散引起的。 VHD密封件的泄漏少于同类的CHD设计。

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