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EFFECTS OF WATER-ADMISSION ON THE PERFORMANCE OF A CENTRIFUGAL PUMP

机译:吸水率对离心泵性能的影响

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In order to improve the centrifugal pump performance at off-design operation condition, water-admission is introduced at the upstream of impeller inlet. This paper treats a centrifugal condensate pump with the specific speed of 216 min~(-1) •m~3/min•m. Both hydraulic and cavitation performance have been experimentally tested for the pump. For analysis, the three-dimensional cavitating turbulent flows are simulated based on RANS method and a homogeneous cavitation model for several water-admission cases. The results indicated that with the water-admission, the pump head and hydraulic efficiency increase with the water-admission pressure up to 70kPa. However, with the water-admission pressure larger than 70kPa, the pump performance drops due to a large flow rate induced upstream the pump impeller. It is also noted that the water admission is unfavorable for cavitation inception. According to the numerical result, there is a sudden increase of accumulated cavity volume inside the impeller with the water-admission pressure larger than 70kPa. Thus, the water-admission should be further studied to improve the cavitation performance.
机译:为了提高离心泵在非设计工况下的性能,在叶轮入口的上游引入了进水口。本文对离心式凝结水泵进行处理,其比转速为216 min〜(-1)•m〜3 / min•m。泵的液压性能和气蚀性能均已通过实验测试。为了进行分析,针对几种取水情况,基于RANS方法和均质空化模型,对三维空化湍流进行了模拟。结果表明,随着进水量的增加,进水压力达到70kPa时,泵的扬程和水力效率也随之提高。但是,在进水压力大于70kPa的情况下,由于泵叶轮上游产生的大流量导致泵性能下降。还应注意,进水不利于气穴的产生。根据数值结果,当进水压力大于70kPa时,叶轮内部的累积腔体积会突然增加。因此,应进一步研究水的渗透性,以改善空化性能。

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