首页> 外文会议>Proceedings of the 2002 ASME Joint U.S.-European Fluids Engineering Conference >A STUDY ON THE UNSTABLE COUPLING BETWEEN PUMPS AND HYDRAULIC CIRCUITS WITH ENTRAPPED GAS POCKETS
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A STUDY ON THE UNSTABLE COUPLING BETWEEN PUMPS AND HYDRAULIC CIRCUITS WITH ENTRAPPED GAS POCKETS

机译:夹带气体泵与液压回路不稳定耦合的研究

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摘要

A theoretical and experimental study has been conducted on the mass oscillation instability in hydraulic systems with entrapped gas pockets and pumps with positive slope in the head curve. The theoretical study was composed of an analysis of the critical conditions for the instability to develop, followed by the numerical resolution of the fundamental equations that govern the phenomenon, assuming unsteady one-dimensional flow, in order to simulate the limit cycle oscillations of the unstable system. Additionally a series of laboratory tests was conducted on a conventional centrifugal pump, with variation of the initial volume of an entrapped air pocket in the circuit. As expected from the predictions of the theoretical model, instability was found to developed with pressure amplitude oscillations and frequency dependent on the amount of entrapped air.
机译:对夹带气穴的液压系统和扬程曲线为正斜率的泵的质量振荡不稳定性进行了理论和实验研究。理论研究包括对不稳定发展的关键条件的分析,然后是控制该现象的基本方程的数值解析,并假设不稳定的一维流动,以模拟不稳定的极限循环振荡。系统。另外,在传统的离心泵上进行了一系列的实验室测试,改变了回路中截留的气穴的初始体积。正如理论模型的预测所期望的那样,发现不稳定性会随着压力幅度振荡和频率的增加而变化,而该幅度和频率取决于所夹带的空气量。

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