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The whipping response of a fluid filled cylindrical shell subjected to an underwater explosion

机译:充液圆柱壳在水下爆炸下的鞭打响应

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摘要

Fluid filled structure widely exists in the field of ship and ocean engineering, but the investigation concerned with the whipping response of a fluid filled structure subjected to an underwater explosion is very less. A numerical model considering the effect of an internal fluid is established in this paper. In the implementation of the numerical model, the doubly asymptotic approximation for the external fluid is used to model the external fluid domain, the doubly asymptotic approximation for the internal fluid is used to model the internal fluid domain, and the dynamic response of the structure is simulated by the finite element method. After that, the numerical model is validated against the analytical solution. The numerical result agrees well with the analytical result. Finally, the whipping response of a fluid filled cylindrical shell subjected to an underwater explosion is investigated and the influence of the internal fluid on the whipping response is analyzed. The main results are as follows. The existence of the internal fluid makes the maximum relative displacement decrease, as the density of the internal fluid and the sound speed within the internal fluid increase, the maximum of the maximum relative displacement decreases. (C) 2016 Elsevier Ltd. All rights reserved.
机译:充满流体的结构在船舶和海洋工程领域中广泛存在,但是与遭受水下爆炸的充满流体的结构的鞭打响应有关的研究很少。建立了考虑内部流体影响的数值模型。在数值模型的实现中,外部流体的双渐近逼近用于外部流体域建模,内部流体的双渐近逼近用于内部流体域建模,并且结构的动力响应为用有限元法模拟。之后,针对解析解验证数值模型。数值结果与分析结果吻合良好。最后,研究了充液圆柱壳在水下爆炸时的鞭打响应,并分析了内部流体对鞭打响应的影响。主要结果如下。内部流体的存在使最大相对位移减小,随着内部流体的密度和内部流体内的声速的增加,最大相对位移的最大值减小。 (C)2016 Elsevier Ltd.保留所有权利。

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