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首页> 外文期刊>Journal of Mechanical Science and Technology >Impeller inlet geometry effect on performance improvement for centrifugal pumps
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Impeller inlet geometry effect on performance improvement for centrifugal pumps

机译:叶轮进口几何形状对离心泵性能改善的影响

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摘要

This research treats the effect of impeller inlet geometry on performance improvement for a boiler feed pump, who is a centrifugal pump having specific speed of 183 m·m3min?1·min?1 and close type impeller with exit diameter of 450 mm. The hydraulic performance and cavitation performance of the pump have been tested experimentally. In order to improve the pump, five impellers have been considered by extending the blade leading edge or applying much larger blade angle at impeller inlet compared with the original impeller. The 3-D turbulent flow inside those pumps has been analyzed basing on RNG k-? turbulence model and VOF cavitation model. It is noted that the numerical results are fairly good compared with the experiments. Based on the experimental test and numerical simulation, the following conclusions can be drawn: (1) Impeller inlet geometry has important influence on performance improvement in the case of centrifugal pump. Favorite effects on performance improvement have been achieved by both extending the blade leading edge and applying much larger blade angle at impeller inlet; (2) It is suspected that the extended leading edge have favorite effect for improving hydraulic performance, and the much larger blade angle at impeller inlet have favorite effect for improving cavitation performance for the test pump; (3) Uniform flow upstream of impeller inlet is helpful for improving cavitation performance of the pump.
机译:本研究研究了叶轮入口几何形状对锅炉给水泵性能改善的影响,该给水泵是比速为183 m·m3 min?1 ·min?1 的离心泵出口直径为450毫米的封闭式叶轮。泵的液压性能和气蚀性能已通过实验测试。为了改善泵,与原来的叶轮相比,已经考虑了五个叶轮,方法是延长叶片前缘或在叶轮入口处施加更大的叶片角度。这些泵内部的3D湍流已基于RNG k-?进行了分析。湍流模型和VOF空化模型。注意,数值结果与实验相比是相当好的。基于实验测试和数值模拟,可以得出以下结论:(1)叶轮进口几何形状对离心泵性能的提高有重要影响。通过延长叶片前缘并在叶轮入口处施加更大的叶片角度,可以达到对性能改善的最佳效果。 (2)怀疑延长的前缘对改善水力性能有最佳效果,而叶轮入口处较大的叶片角对改善试验泵的气蚀性能有有利效果; (3)叶轮入口上游的均匀流动有助于提高泵的气蚀性能。

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