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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experimental Analysis of an Axial Inducer Influence of the Shape of the Blade Leading Edge on the Performances in Cavitating Regime
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Experimental Analysis of an Axial Inducer Influence of the Shape of the Blade Leading Edge on the Performances in Cavitating Regime

机译:叶片前缘形状对空化状态下轴向感应器性能影响的实验分析

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摘要

The aim of this paper is to analyze, from experimental results, the influence of the shape of the leading edge and its sharpening on the cavitating behavior of an inducer. The studied inducer is designed according to a methodology developed at LEMFI. Successive cutting and sharpening (four cuts, which modify up to 20 percent of the blade chord at the tip), were made to modify the shape of the leading edge. For the various geometries, the experimental results obtained on the LEMFI test rig are presented as follows. Noncavitating Regime: Overall performances at 1450 rpm. Cavitating Regime: (1) The development of the cavitation versus the cavitation number, (2) the description of the various cavitation pictures, and (3) the pressure fluctuations measured at the wall at 150 mm downstream of the trailing edge for various flow rates and inlet pressures. The CFD simulations carried out under CFX-Blade Gen+on this range of inducers are presented to explain certain aspects observed.
机译:本文的目的是从实验结果分析前缘形状及其锐化对诱导剂空化行为的影响。研究的诱导剂是根据LEMFI开发的方法设计的。进行了连续的切割和磨锐(四个切割,最多可修改尖端的叶片弦的20%),以改变前缘的形状。对于各种几何形状,在LEMFI测试台上获得的实验结果如下所示。非空化状态:整体性能为1450 rpm。空化状态:(1)空化与空化数的关系;(2)对各种空化图的描述;(3)对于各种流速,在后缘下游150 mm处壁处测得的压力波动和入口压力。介绍了在CFX-Blade Gen +上对这一范围的诱导剂进行的CFD模拟,以解释观察到的某些方面。

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