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Analytical Study of Cavitation Surge in a Hydraulic System

机译:液压系统中空化波动的分析研究

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摘要

In order to clarify effects of an accumulator, pipe lengths and gradients of pressure and suction performances on cavitation surge, one-dimensional stability analyses of cavitation surge were performed in hydraulic systems consisting of an upstream tank, an inlet pipe, a cavitating pump, a downstream pipe, and a downstream tank. An accumulator located upstream or downstream of the cavitating pump was included in the analysis. Increasing the distance between the upstream accumulator and the cavitating pump enlarged the stable region. On the other hand, decreasing the distance between the downstream accumulator and the cavitating pump enlarged the stable region. Furthermore, the negative gradient of a suction performance curve and the positive gradient of a pressure performance curve cause cavitation surge.
机译:为了阐明蓄能器,管的长度以及压力和吸力性能的梯度对气蚀浪涌的影响,在液压系统中对气蚀浪涌进行了一维稳定性分析,该液压系统由上游水箱,进口管,空化泵,下游管道和下游水箱。分析中包括位于气穴泵上游或下游的蓄能器。上游蓄能器和气穴泵之间的距离增加,扩大了稳定区域。另一方面,减小下游蓄能器与气穴泵之间的距离可扩大稳定区域。此外,抽吸性能曲线的负梯度和压力性能曲线的正梯度引起空化浪涌。

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