首页> 外文会议>International Symposium on Fluid Machinery and Fluid Engineering(ISFMFE); 20041201-03; Beijing(CN) >EFFECT OF INLET CONDITION ON CAVITATION PERFORMANCE OF A CENTRIFUGAL IMPELLER WHICH HAS GEOMETRIES SUITABLE FOR A MINI PUMP
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EFFECT OF INLET CONDITION ON CAVITATION PERFORMANCE OF A CENTRIFUGAL IMPELLER WHICH HAS GEOMETRIES SUITABLE FOR A MINI PUMP

机译:进口条件对适合微型泵的离心叶轮空化性能的影响

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摘要

A mini turbo-pump, whose impeller size is around 5~50 mm in outlet-diameter, is in increasing demand for various heat controlling systems. Under those operating conditions, cavitation is likely to appear and to cause unstable operation and performance drop. Thus, the hydraulic performance including cavitation performance is of great importance. In the preceding study, the authors demonstrated that the greater number of vanes, such as twelve, is preferable for a mini impeller, though they didn't discuss the proposal from the viewpoint of cavitation. To treat this issue, the present study is carried out using two 34 mm dia. impellers, one of which is called as Imp. C having twelve long vanes and the other is Imp. C1 having six long vanes and the six short like splitter vanes. In other words, the objective is to clarify the effect of inlet blockage on the cavitation performance experimentally and numerically. Typical results are as follows: (1) Imp. C has a little bit better cavitation performance than Imp. C1. (2) We had better consider not only the inlet blockage but also the flow uniformity at the impeller inlet when we design a mini pump having high cavitation performance.
机译:微型涡轮泵的叶轮尺寸在出口直径为5〜50 mm左右,对各种热控制系统的需求不断增长。在这些操作条件下,很可能会出现气穴现象,并导致不稳定的操作和性能下降。因此,包括气蚀性能的水力性能非常重要。在先前的研究中,作者证明,对于微型叶轮,最好使用更多数量的叶片,例如十二个,尽管他们没有从气蚀的角度讨论该建议。为了解决这个问题,本研究使用两个直径为34 mm的直径进行。叶轮,其中之一称为Imp。具有十二个长叶片的C,另一个为Imp。 C1具有六个长叶片和六个短的类似分裂叶片。换句话说,目的是通过实验和数值澄清入口阻塞对气蚀性能的影响。典型结果如下:(1)Imp。 C具有比Imp更好的气蚀性能。 C1。 (2)在设计具有高气蚀性能的小型泵时,我们不仅要考虑入口堵塞问题,还要考虑叶轮入口处的流动均匀性。

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