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Influence of the empirical coefficients of cavitation model on predicting cavitating flow in the centrifugal pump

机译:空化模型的经验系数对预测离心泵中空化流量的影响

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ABSTRACT The phenomenon of cavitation is an unsteady flow, which is nearly inevitable in pump. It would degrade the pump performance, produce vibration and noise and even damage the pump. Hence, to improve accuracy of the numerical prediction of the pump cavitation performance is much desirable. In the present work, a homogenous model, the Zwart-Gerber-Belamri cavitation model, is considered to investigate the influence of the empirical coefficients on predicting the pump cavitation performance, concerning a centrifugal pump. Three coefficients are analyzed, namely the nucleation site radius, evaporation and condensation coefficients. Also, the experiments are carried out to validate the numerical simulations. The results indicate that, to get a precise prediction, the approaches of declining the initial bubble radius, the condensation coefficient or increasing the evaporation coefficient are all feasible, especially for declining the condensation coefficient, which is the most effective way.
机译:摘要空化现象是不稳定的流动,这在泵中几乎是不可避免的。这会降低泵的性能,产生振动和噪音,甚至损坏泵。因此,非常需要提高泵气蚀性能的数值预测的准确性。在目前的工作中,考虑使用均质模型Zwart-Gerber-Belamri空化模型来研究经验系数对预测离心泵的空化性能的影响。分析了三个系数,即成核位点半径,蒸发系数和凝结系数。此外,进行实验以验证数值模拟。结果表明,为了得到精确的预测,减小初始气泡半径,减小凝结系数或增大蒸发系数的方法都是可行的,特别是对于减小凝结系数而言,这是最有效的方法。

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