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Analysis of Acoustic Cavitation Surge in a Rocket Engine Turbopump

机译:火箭发动机涡轮泵的声空化浪涌分析

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In a liquid rocket engine, cavitation in an inducer of a turbopump sometimes causes instability phenomena when the inducer is operated at low inlet pressure. Cavitation surge (auto-oscillation), one such instability phenomenon, has been discussed mainly based on an inertia model assuming incompressible flow. When this model is used, the frequency of the cavitation surge decreases continuously as the inlet pressure of the turbopump decreases. However, we obtained an interesting experimental result in which the frequency of cavitation surge varied discontinuously. Therefore, we employed one-dimensional analysis based on an acoustic model in which the fluid is assumed to be compressible. The analytical result qualitatively corresponded with the experimental result.
机译:在液体火箭发动机中,当涡轮增压器的诱导器在低进口压力下运行时,有时会导致其不稳定现象。空化涌动(自激振荡)是这种不稳定性现象之一,主要基于假设不可压缩流动的惯性模型进行了讨论。当使用该模型时,随着涡轮泵的入口压力降低,气蚀浪涌的频率连续降低。但是,我们获得了有趣的实验结果,其中空化浪涌的频率不连续地变化。因此,我们基于声学模型采用了一维分析,其中流体被假定为可压缩的。分析结果在质量上与实验结果相符。

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