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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >On the Influence of Gas Content on the Rotordynamic Force Coefficients of a Three-Wave (Air in Oil) Annular Seal for Multiple Phase Pumps
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On the Influence of Gas Content on the Rotordynamic Force Coefficients of a Three-Wave (Air in Oil) Annular Seal for Multiple Phase Pumps

机译:关于气体含量对多相泵三波(油)环形密封件的旋转力系数的影响

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摘要

Subsea multiphase pumps must operate reliably with a process fluid transitioning from a pure liquid, to a mixture of gas and liquid, and to eventually just gas; and pressure seals controlling secondary leakage paths are important for both pump efficiency and dynamic stability considerations, in particular, for flows with a sizable gas volume fraction (GVF). Early work advances a three-wave shape seal that generates significant direct stiffness and hence aids to increase the natural frequency of a vertical pump. This paper details dynamic load tests and produces rotordynamic force coefficients for the wavy-seal operating with a gas in liquid mixture made of air in light ISO VG 10 oil. For operation with pure liquid, GVF = 0, a stiffness (K), damping (C), and added mass (M) model fully characterizes the test article. For operation with a mixture, the seal dynamic stiffness coefficients vary greatly with excitation frequency; the direct dynamic stiffness hardens while the cross coupled stiffness decreases as the whirl frequency approaches shaft speed and then increases for super synchronous frequency. For operation with GVF from 0.1 to 0.8, the seal produces a large positive centering dynamic stiffness. Notably, the seal direct damping coefficient does not depend on frequency though reduces continuously as the inlet GVF increases from 0 to 1 (all gas). The current research adds relevant test data and unique dynamic force coefficients to the design selection of seals in multiphase pumps.
机译:海底多相泵必须可靠地与从纯液体过渡到气体和液体的处理流体,并最终只是气体;控制次级泄漏路径的压力密封对于泵效率和动态稳定性考虑,特别是具有可相同的气体体积分数(GVF)的流动是重要的。早期工作前进是一种三波形密封,产生显着的直接刚度,因此有助于增加垂直泵的固有频率。本文详细说明了动态负载测试,并为波纹密封的波浪密封产生带有液体混合物中的气体的波浪密封的旋转动力系数,其在轻的ISO Vg 10油中的空气中。为了用纯液体,GVF = 0,刚度(k),阻尼(C),并添加质量(M)模型的操作完全表征了测试制品。为了用混合物进行操作,密封动态刚度系数随着激励频率而变化很大;当旋转频率接近轴速度时,交叉耦合刚度降低,直接动态刚度硬化,然后增加超级同步频率。对于GVF的操作,从0.1至0.8的操作,密封件产生大的正中心动态刚度。值得注意的是,密封直接阻尼系数不依赖于频率,但随着入口GVF从0到1(所有气体)增加而连续减小。目前的研究将相关的测试数据和独特的动态力系数添加到多相泵中的密封件的设计选择中。

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