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Influence of Thermodynamic Effect on Blade Load in a Cavitating Inducer

机译:热力学效应对空化诱导物中叶片载荷的影响

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摘要

Distribution of the blade load is one of the design parameters for a cavitating inducer. For experimental investigation of the thermodynamic effect on the blade load, we conducted experiments in both cold water and liquid nitrogen. The thermodynamic effect on cavitation notably appears in this cryogenic fluid although it can be disregarded in cold water. In these experiments, the pressure rise along the blade tip was measured. In water, the pressure increased almost linearly from the leading edge to the trailing edge at higher cavitation number. After that, with a decrease of cavitation number, pressure rise occurred only near the trailing edge. On the other hand, in liquid nitrogen, the pressure distribution was similar to that in water at a higher cavitation number, even if the cavitation number as a cavitation parameter decreased. Because the cavitation growth is suppressed by the thermodynamic effect, the distribution of the blade load does not change even at lower cavitation number. By contrast, the pressure distribution in liquid nitrogen has the same tendency as that in water if the cavity length at the blade tip is taken as a cavitation indication. From these results, it was found that the shift of the blade load to the trailing edge depended on the increase of cavity length, and that the distribution of blade load was indicated only by the cavity length independent of the thermodynamic effect.
机译:叶片载荷的分布是空化诱导剂的设计参数之一。对于对叶片载荷的热力学作用的实验研究,我们在冷水和液氮中进行了实验。在这种低温液中显着出现在空化上的热力学效应,尽管它可以在冷水中忽略。在这些实验中,测量沿叶片尖端的压力升高。在水中,压力几乎线性地从较高空化数到后缘上线性增加。之后,随着空化数减小,仅在后缘附近发生压力升高。另一方面,在液氮中,即使作为空化参数的空化数减少,压力分布也与水中的水中的水中的水相似。因为通过热力学效果抑制了空化生长,所以即使在较低的空化数下也不会改变叶片载荷的分布。相反,如果叶片尖端处的腔体长度作为空化指示,液氮中的压力分布具有与水中的趋势相同。从这些结果来看,发现叶片负载向后缘的偏移依赖于腔长的增加,并且叶片载荷的分布仅由腔长而非与热力学效果无关表示。

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