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Study of the cavitating instability on a grooved Venturi profile

机译:开槽文丘里管轮廓上的空化不稳定性研究

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摘要

Instabilities of a partial cavity developed on a hydrofoil, a converging-diverging step, or in an interblade channel have already been investigated in many previous works. The aim of this study is to evaluate a passive control method of the sheet cavity. According to operating conditions, cavitation can be described by two different regimes: an unstable regime with a cloud cavitation shedding and a stable regime with only a pulsating sheet cavity. Avoiding cloud cavitation can limit structure damage since this regime is less aggressive. The surface condition of a converging-diverging step is here studied as a solution to control the cavitation regime. This study discusses the effect of longitudinalgrooves on the developed sheet cavity. Analyzes conducted with laser Doppler velocimetry, visualizations, and pressure measurements show that the grooves geometry, and especially the groove depth act on the sheet cavity dynamics and can even suppress the cloud cavitation shedding.
机译:在许多先前的工作中已经研究了在水翼,会聚-发散步骤或叶片间通道中形成的局部空腔的不稳定性。这项研究的目的是评估板腔的被动控制方法。根据工作条件,可以通过两种不同的方式描述空化:具有云状空化脱落的不稳定状态和仅具有脉动片状腔的稳定状态。避免云汽蚀可以限制结构损坏,因为这种方式的攻击性较小。本文研究了收敛-发散步骤的表面条件,以此作为控制气穴状态的解决方案。这项研究讨论了纵向槽对发达的板腔的影响。用激光多普勒测速仪进行的分析,可视化和压力测量表明,凹槽的几何形状,尤其是凹槽深度会影响板腔动力学,甚至可以抑制云气蚀现象。

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