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Prediction of Cavitation Intensity and Erosion Area in Centrifugal Pump by Using Cavitating Flow Simulation with Bubble Flow Model

机译:基于气泡流模型的空化模拟预测离心泵的空化强度和冲蚀面积

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We developed a numerical simulation code and a method of estimation for predicting the cavitation erosion in pumps. Cavitation erosion is closely related to cavitation intensity based on bubble dynamics. A “bubble flow model” simulates detailed bubble behavior in a cavitating flow. Cavitation intensity was estimated by analyzing the bubble pressure and bubble nuclei distribution in a centrifugal pump. We simulated the impulsive bubble pressure that varied in microseconds. The impulsive pressure was considered to be related to actual bubble collapse, which caused cavitation erosion. The erosion area was experimentally detected using a paint method. The predicted high cavitation intensity area agreed well with the experimental erosion area, since the predicted and experimental areas were both located between the shroud and mid-point of the blade near the leading edge. Our code was thus effective for estimating the cavitation intensity and predicting the erosion area around the impeller of a centrifugal pump.
机译:我们开发了一种数值模拟代码和一种估算方法,以预测泵中的气蚀。基于气泡动力学,空蚀与空蚀强度密切相关。 “气泡流模型”可模拟空化流中的详细气泡行为。通过分析离心泵中的气泡压力和气泡核分布来估算空化强度。我们模拟了以微秒为单位变化的脉冲气泡压力。脉冲压力被认为与实际气泡破裂有关,气泡破裂导致气蚀。使用涂漆方法通过实验检测侵蚀区域。预测的高空化强度区域与实验侵蚀区域非常吻合,因为预测和实验区域均位于前缘附近的叶片罩和中点之间。因此,我们的代码对于估算空化强度和预测离心泵叶轮周围的腐蚀面积有效。

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