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Experimental and unsteady numerical research of a high-specific-speed pump for part-load cavitation instability:

机译:零件负荷空化泵的高特定速度泵的实验和不稳定数值研究:

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Net positive suction head peak is a well-known cavitation instability phenomenon in high-specific-speed pumps. Both non-cavitating performance and cavitating performance of a high-specific-speed pump were investigated by experiments and numerical simulations. According to the cavitating performance results, net positive suction head peak is found at 80% of nominal flow. The head curves of non-cavitating performance also have saddle-type instabilities near 70%–80% of nominal flow. Water vapor volume fraction distributions show that cavitation region at net positive suction head peak flow only covers 3% of the blade length when head drops 6%. It proves that net positive suction head peak is not caused by huge amounts of cavitation bubbles, which indicates that net positive suction head peak does not represent excessive cavitation. The velocity vector and pressure distribution plots reveal that net positive suction head peak is related to recirculation near the trailing edge. With inlet pressure decreasing, ...
机译:净正抽吸头峰是高特定速度泵的众所周知的空化不稳定现象。通过实验和数值模拟研究了高特定速泵的非空化性能和空化性能。根据空化性能结果,净阳性吸头峰位于标称流量的80%。非空化性能的头部曲线也具有鞍型不稳定性,在标称流量的70%-80%附近。水蒸气体积分量分布表明,当头部下降6%时,净正抽吸头峰值流动的空化区域仅占叶片长度的3%。它证明,净正吸头峰不会由大量的空化泡沫引起,这表明净正吸头峰值不代表过多。速度向量和压力分布图揭示了净正抽吸头峰与后缘附近的再循环有关。入口压力降低,......

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