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Underwater explosion of slender explosives: Directional effects of shock waves and structure responses

机译:细长炸药的水下爆炸:冲击波的定向效应和结构响应

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摘要

The shape of a high-explosive is an important factor to consider in the near-field and contact explosion, but this has been rarely studied previously. In this paper, we first conduct experiments to study the directional effects of the underwater explosion shock wave of slender explosives. A numerical model based on the multi-material arbitrary Lagrangian Eulerian (MM-ALE) technique is then developed to study the influence of the explosive slender ratio on the generated shock waves. The numerical model is validated by experiment data. Then, tests are conducted with constant-mass cylindrical explosives with slender ratios ranging from 2.0 to 9.2. By comparing with the center-detonated spherical explosive, the peak pressure, pulse duration, impulse and energy flux of the underwater explosion of slender explosives are analyzed in detail. Furthermore, the effectiveness of the fluid-structure interaction algorithm is verified through the experimental data of a plate subjected to underwater contact explosion. Finally, the response of plates subjected to the underwater explosion of a slender explosive at different azimuths is studied. The interaction between the plate and the directional loads is analyzed. We conclude that the loads and structure responses of the near-field underwater explosion of slender explosives are different from those of spherical explosives. The analyses and results provide a reference for the near-field underwater explosion loads and structural response studies.
机译:高爆炸物的形状是在近场和接触爆炸中要考虑的重要因素,但是以前很少对此进行研究。在本文中,我们首先进行实验以研究细长炸药的水下爆炸冲击波的定向效应。然后建立了基于多材料任意拉格朗日欧拉(MM-ALE)技术的数值模型,以研究爆炸细长比对产生的冲击波的影响。数值模型通过实验数据验证。然后,使用细长比从2.0到9.2的恒定质量圆柱形炸药进行测试。通过与中心引爆球形炸药比较,详细分析了细长炸药水下爆炸的峰值压力,脉冲持续时间,脉冲和能量通量。此外,通过水下接触爆炸板的实验数据验证了流固耦合算法的有效性。最后,研究了板在不同方位下受到细长炸药的水下爆炸的响应。分析了板与方向载荷之间的相互作用。我们得出的结论是,细长炸药的近场水下爆炸的载荷和结构响应与球形炸药不同。分析和结果为近场水下爆炸载荷和结构响应研究提供参考。

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