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Interaction between the Underwater Explosion Bubble and the Structure

机译:水下爆炸气泡与结构的相互作用

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Based on the potential-flow assumption, BEM is applied to simulate the dynamic characteristics of underwater explosion bubble near boundaries and solve the interaction of bubble and elastic-plastic structure by coupling with FEM. A complete 3D program of underwater bubble analysis (UBA) is developed and the calculated error is within 10%. With this program, flat plate, cylinder and other simple structures are analyzed; the damages caused by retarded flow, pulsating pressure and jet and other loads on the structures are calculated, including different cases with free surface or without free surface. Results show that bubbles can cause great damage, and the specific cases can even cause greater damage. From the wall pressure and the stress curves of typical elements on the structure, it can be seen that the pressure peak occurs when the bubble collapses, which proves that the pressures caused by the bubble's collapse and jet can result in great structure's severe damage. It can provide reference for the research on the dynamic characteristics. The research in this paper aims to provide references for the correlated research on the dynamics of the underwater bubble.
机译:基于势流假设,应用边界元法模拟边界附近水下爆炸气泡的动力学特性,并结合有限元方法解决气泡与弹塑性结构的相互作用。开发了完整的3D水下气泡分析(UBA)程序,计算出的误差在10%以内。通过该程序,可以分析平板,圆柱体和其他简单结构;计算了由滞流,脉动压力和射流以及其他结构载荷引起的破坏,包括带有自由表面或没有自由表面的不同情况。结果表明,气泡会造成很大的损害,在特定情况下甚至会造成更大的损害。从墙体的压力和结构上典型单元的应力曲线可以看出,气泡破裂时会出现压力峰值,这证明气泡破裂和喷射所引起的压力会导致巨大的结构严重损坏。为动力学特性的研究提供参考。本文的研究旨在为水下气泡动力学的相关研究提供参考。

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