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EXPERIMENTAL INVESTIGATION OF TURBULENT CAVITATING FLOWS IN A SMALL VENTURI NOZZLE

机译:小文丘里喷嘴中湍流空化流的实验研究

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The cavitating flows created in a small Venturi tube with throat cross section 4×15.34 mm~2 are investigated based on ultra-fast x-ray imaging. The instantaneous velocities of the liquid and vapor are measured simultaneously by tracking seeding particles and vapor structures respectively while the vapor volume fraction is derived from the different x-ray attenuation. Wavelet decomposition with appropriate thresholds is used to separate seeding particles from vapor structures, so that image cross-correlations could be applied on the two phases separately. This study presents data on mean velocity and void ratio field, statistical turbulent quantities in three different cavitation levels with the same reference velocity. A type of cavitation associated with a weak but persistent re-entrant jet is described. The comparison between the cavitation and the noncavitating flow shows that the averaged flow field is significantly altered by the presence of cavitation and the vapor formation near the throat area is observed to suppress velocity fluctuations.
机译:基于超快X射线成像,研究了在喉管横截面为4×15.34 mm〜2的小文丘里管中产生的空化流。通过分别跟踪晶种粒子和蒸气结构同时测量液体和蒸气的瞬时速度,而蒸气体积分数则来自不同的X射线衰减。使用具有适当阈值的小波分解将种子粒子与蒸汽结构分离,以便可以将图像互相关分别应用于两个相。这项研究提出了关于平均速度和空隙率场的数据,在相同参考速度的三个不同空化水平下的统计湍流量。描述了一种与弱但持久的折返射流相关的气蚀现象。空化流与非空化流之间的比较表明,由于存在空化,平均流场会发生显着变化,并且观察到在喉部区域附近会形成蒸汽,从而抑制了速度波动。

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