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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Stability of an Axial Thrust Self-Balancing System
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Stability of an Axial Thrust Self-Balancing System

机译:轴向推力自平衡系统的稳定性

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摘要

Rocket pumps are characterized by high speed and high delivery pressure. Therefore, balancing of axial thrust acting on the rotor assembly is one of the most important factors. To realize complete axial thrust balancing, a balance piston-type axial-thrust self-balancing system is often used in rocket pumps. This axial thrust balance system acts dynamically as if it were a mass and spring system, although there is no mechanical spring. Sometimes, large amplitude axial vibration is observed in a liquid hydrogen turbopump. Too much vibration in the axial direction causes metal-to-metal rubbing, resulting in fatal accidents of rocket turbopumps. However, the cause of the vibration has not yet been clarified. In the present study, the self-balancing system was modeled by combining the mechanical structure and the fluid system in a calculation program of one-dimensional multidomain system analysis software. Stability of the system was investigated using this program and the possibility of existence of self-excited vibration was confirmed. Effects of geometry, fluids, viscous damping, radial pressure drop in the chamber, and orifice flow coefficients on the stability of the balance piston system were examined. As a result, it was concluded that large compressibility of liquid hydrogen was the cause of the large amplitude axial vibrations. With the results of analyses, methods to stabilize the system in order to suppress the axial vibration were suggested.
机译:火箭泵的特点是高速和高输送压力。因此,作用在转子组件上的轴向推力的平衡是最重要的因素之一。为了实现完全的轴向推力平衡,在火箭泵中经常使用平衡活塞式的轴向推力自平衡系统。尽管没有机械弹簧,该轴向推力平衡系统却像质量和弹簧系统一样动态地起作用。有时,在液态氢涡轮泵中观察到大幅度的轴向振动。轴向振动太大会导致金属之间的摩擦,从而导致火箭涡轮泵发生致命事故。但是,振动的原因尚未弄清。在本研究中,通过将机械结构和流体系统结合在一维多域系统分析软件的计算程序中,对自平衡系统进行了建模。使用该程序研究了系统的稳定性,并确认了存在自激振动的可能性。研究了几何形状,流体,粘性阻尼,腔室中的径向压降以及孔口流量系数对平衡活塞系统稳定性的影响。结果,得出结论,液态氢的大可压缩性是大振幅轴向振动的原因。根据分析结果,提出了稳定系统以抑制轴向振动的方法。

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