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Cavitation in a Shaft-less Double Suction Centrifugal Miniature Pump

机译:无轴双吸离心微型泵中的气蚀

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Based on the consideration that the cavitation would affect the operation stability of miniature pumps, the 3-D turbulent cavitating flow in a test pump was simulated by using a mixed cavitation model and k-ω SST turbulence model. In order to investigate the influence of inlet geometry parameters on the cavitation performance of the miniature pump, two more impellers are designed for comparison. Based on the results, the following conclusions are drawn: 1) Cavitation performance of the double suction shaft-less miniature pump having different impeller is equivalent to the centrifugal pump having ordinary size, though the flow passage at impeller inlet is small; 2) The miniature pump having radial impeller can produce much higher pump head, but lower cavitation performance than that having the impeller based on the conventional design method; 3) It is believed that by applying the double suction design, the miniature pump achieved relatively uniform flow pattern upstream the impeller inlet, which is favorable for improving cavitation performance.
机译:基于空化会影响微型泵的运行稳定性的考虑,使用混合空化模型和k-ωSST湍流模型模拟了测试泵中的3-D湍流空化流。为了研究进口几何参数对微型泵的气蚀性能的影响,设计了另外两个叶轮进行比较。根据这些结果,可以得出以下结论:1)尽管叶轮入口处的流道很小,但叶轮不同的双无轴无轴微型泵的汽蚀性能与普通尺寸的离心泵相当。 2)与传统设计方法的叶轮相比,具有径向叶轮的微型泵可产生更高的扬程,但空化性能却较低; 3)相信通过采用双吸设计,微型泵在叶轮入口上游实现了相对均匀的流型,这有利于提高空化性能。

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