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Investigation of Collapse Features of a Bubble near Target Surface of Different Sizes for Underwater Laser Propulsion

机译:水下激光推进不同尺寸目标表面附近气泡的塌陷特性研究

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In order to investigate the underwater laser propulsion, the collapse features of a laser-induced bubble near target surface of three different sizes are studied by the experiment based on the optical beam deflection method and the numerical simulation based on VOF method. The propelling force F and the impulse IB generated by the collapse bubble are calculated. The results show that the smaller the target surface is, the smaller the maximum bubble radius is. In addition, the smaller the target surface is, the more fiercely the bubble collapses, and the larger the pressure generated by the collapse bubble is. However, the smaller the target surface is, the smaller the peak value of F is. This occurs because F is the integral of the pressure over the area, where the impact of area is greater than the pressure. Furthermore, F decreases to negative after the maximum as a result of the shock wave generated by the collapse bubble propagating along the target surface.
机译:为了研究水下激光的推进力,通过基于光束偏转法的实验和基于VOF法的数值模拟,研究了三种不同尺寸的目标表面附近的激光气泡的塌陷特征。计算由破裂气泡产生的推进力F和脉冲IB。结果表明,目标表面越小,最大气泡半径越小。另外,目标表面越小,气泡破裂越剧烈,并且由破裂的气泡产生的压力越大。然而,目标表面越小,F的峰值越小。发生这种情况是因为F是该区域上压力的积分,其中区域的影响大于压力。此外,由于破裂气泡沿目标表面传播而产生的冲击波,F在最大值之后减小到负值。

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