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Shock responses of a surface ship subjected to noncontact underwater explosions

机译:遭受非接触式水下爆炸的水面舰船的冲击响应

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摘要

In combat operations, a warship can be subjected to air blast and underwater shock loading, which if detonated close to the ship can damage the vessel form a dished for hull plating or more serious holing of the hull. This investigation develops a procedure which couples the nonlinear finite element method with doubly asymptotic approximation method, and which considers the effects of transient dynamic, geometrical nonlinear, elastoplastic material behavior and fluid-structure interaction. This work addresses the problem of transient responses of a 2000-ton patrol-boat subjected to an underwater explosion. The KSF = 0.8 is adopted to describe the shock severity. Additionally, the shock loading history along keel, the acceleration, velocity and displacement time histories are presented. Furthermore, the study elucidates the plastic zone spread phenomena and deformed diagram of the ship. Information on transient responses of the ship to underwater shock is useful in designing ship hulls so as to enhance their resistance to underwater shock damage.
机译:在战斗操作中,军舰可能会受到空气冲击和水下冲击载荷,如果在舰船附近起爆,可能会损坏船体,形成碟形的船体板或更严重的船体孔洞。这项研究开发了一种程序,该程序将非线性有限元方法与双渐近逼近方法相结合,并考虑了瞬态动力学,几何非线性,弹塑性材料行为和流固耦合的影响。这项工作解决了遭受水下爆炸的2000吨巡逻艇的瞬态响应问题。采用KSF = 0.8来描述电击的严重程度。此外,还介绍了沿龙骨的冲击载荷历史,加速度,速度和位移时间历史。此外,研究阐明了塑性区的扩散现象和船舶的变形图。有关船舶对水下冲击的瞬态响应的信息对于设计船体,以增强其抵抗水下冲击损害的能力很有用。

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