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Bubble and free surface dynamics in shallow underwater explosion

机译:水下浅层爆炸中的气泡和自由表面动力学

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In this study, the volume-acceleration model was introduced to determine the initial conditions for bubble motion during underwater explosions. Subroutines, which define the initial and boundary conditions of the fluid field, were developed based on the MSCDYTRAN software. Numerical simulations were compared with the results of validated experimental data. The calculated shapes of the bubbles are in excellent agreement with the experimental results. Using the interaction between a bubble and a free surface as basis, we simulated and analyzed the dynamic behavior of a bubble near a free surface, including the ring rebound of the bubble and the spray dome of the free surface. The computed spray dome heights are consistent with the results from empirical formulas. The dynamic behavior of the bubble and the spray dome of the free surface were systematically studied and summarized in accordance with the principle that bubble motion and the spray dome are closely related to standoff distance. The results of this study may serve as reference for understanding bubbles formed by underwater explosions and those generated by laser. They also have valuable implications for correlative theory research and engineering calculations.
机译:在这项研究中,引入了体积加速模型来确定水下爆炸过程中气泡运动的初始条件。基于MSCDYTRAN软件开发了定义流场初始条件和边界条件的子例程。将数值模拟与经过验证的实验数据的结果进行了比较。气泡的计算形状与实验结果非常吻合。以气泡和自由表面之间的相互作用为基础,我们模拟和分析了气泡在自由表面附近的动力学行为,包括气泡的环回弹和自由表面的喷雾圆顶。计算得出的喷雾圆顶高度与经验公式的结果一致。根据气泡运动和喷雾圆顶与支座距离密切相关的原理,系统地研究和总结了气泡和自由表面的喷雾圆顶的动力学行为。研究结果可为理解水下爆炸形成的气泡和激光产生的气泡提供参考。它们对相关理论研究和工程计算也具有重要意义。

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