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Numerical and Experimental Study of a Ventilated Supercavitating Vehicle

机译:通风超空车的数值与实验研究

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In this paper, the ventilated supercavities are studied both numerically and experimentally. A slender rod is considered as the solid body which has a sharp edged disk at the nose as a cavitator and special ports for air ventilation. The experiments are conducted in a recirculating water tunnel. The simulations are provided for two different algorithms in free-surface treatment, both using the VOF method but one using Youngs' algorithm in the advection of the free-surface and the other without. The comparison between numerical simulations and experiments show that the numerical method using Youngs algorithm accurately simulates the physics of ventilated cavitation phenomena such as the cavity shape, the gas leakage and the re-entrant jet.
机译:在本文中,对通风超腔进行了数值和实验研究。细长杆被认为是实心体,其鼻尖有一个尖锐的圆盘作为气穴和特殊的通风口。实验在循环水隧道中进行。针对自由表面处理中的两种不同算法提供了仿真,两者均使用VOF方法,但一种使用Youngs算法进行自由表面平流,另一种则不使用。数值模拟与实验结果的比较表明,采用杨斯算法的数值方法可以准确地模拟通风空化现象的物理性质,如空洞形状,气体泄漏和折返射流。

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