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COMPUTATIONAL ANALYSES OF INSTABILITIES AND TRANSIENTS IN VALVE AND PIPING SYSTEMS

机译:阀门和管路系统中的不稳定性和瞬态的计算分析

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摘要

Valve and piping systems in rocket propulsion systems and testing facilities are constantly subject to dynamic events resulting from the timing of valve motion leading to unsteady fluctuations in pressure and mass flow. Such events can also be accompanied by cavitation, resonance, system vibration leading to catastrophic failure. High-fidelity dynamic computational simulations of valve operation can yield important information of valve response to varying flow conditions. Prediction of transient behavior related to valve motion can serve as guidelines for valve scheduling, which is of crucial importance in engine operation and testing. Feed components operating in cryogenic regimes can also experience cavitation based instabilities leading to large scale shedding of vapor clouds and pressure oscillations. In this paper, we present simulations of the diverse unsteady phenomena related to valve and feed systems that include valve stall, valve timing studies as well as cavitation instabilities in components utilized in the test loop.
机译:火箭推进系统和测试设施中的阀门和管道系统会不断受到动态事件的影响,这些动态事件是由阀门运动的时机导致的,从而导致压力和质量流量的不稳定波动。此类事件还可能伴有气蚀,共振,系统振动,从而导致灾难性故障。阀门操作的高保真动态计算仿真可以得出重要的阀门信息,以应对变化的流动条件。与气门运动有关的瞬态行为的预测可以用作气门调度的准则,这对发动机的运行和测试至关重要。在低温状态下运行的进料成分也可能会遇到基于空化的不稳定性,从而导致蒸气云的大量脱落和压力波动。在本文中,我们对与阀门和进料系统相关的各种不稳定现象进行了仿真,包括阀门失速,阀门正时研究以及在测试回路中使用的组件中的气穴不稳定性。

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