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A Numerical and Experimental Study of Wall Pressure Caused by an Underwater Explosion Bubble

机译:水下爆炸气泡引起壁压力的数值和实验研究

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The bubble dynamics behaviors and the pressure in the wall center are investigated through experimental method and numerical study. In the experiment, the dynamics of an underwater explosion (UNDEX) bubble beneath a rigid wall are captured by high-speed camera and the wall pressure in the wall center is measured by pressure transducer. To reveal the process and mechanism of the pressure on a rigid wall during the first bubble collapse, numerical studies based on boundary element method (BIM) are applied. Numerical results with two different stand-off parameters (gamma = 0.38 and gamma = 0.90) show excellent agreement with experiment measurements and observations. According to the experimental and the numerical results, we can conclude that the first peak is caused by the reentrant jet impact and the following splashing effect enlarged the duration of the first jet impact. When gamma = 0.38, the splashing jet has a strong impact on the minimum volume bubble, a number of tiny bubbles, formed like bubble ring, are created and collapse more rapidly owing to the surrounding high pressure and emit multi shock waves. When gamma = 0.90, the pressure field around the bubble is low enough only a weak rebounding bubble peak occurs.
机译:通过实验方法和数值研究,研究了气泡动力学行为和壁中心压力。在实验中,通过高速摄像机捕获刚性壁下的水下爆炸(UNDEX)气泡的动力学,并通过压力传感器测量壁中心的壁压力。为了揭示第一次气泡破裂过程中刚性壁上压力的过程和机理,应用了基于边界元方法(BIM)的数值研究。具有两个不同的对峙参数(伽玛= 0.38和伽玛= 0.90)的数值结果显示与实验测量和观察结果非常吻合。根据实验和数值结果,我们可以得出结论,第一个峰值是由折返式射流冲击引起的,随后的喷溅效应扩大了第一个射流冲击的持续时间。当gamma = 0.38时,飞溅的射流对最小体积的气泡有强烈影响,由于周围的高压,会形成许多像气泡环一样形成的微小气泡,并迅速崩溃并发出多重冲击波。当gamma = 0.90时,气泡周围的压力场足够低,仅会出现一个弱反弹的气泡峰。

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