Vibration and radiation from underwater structure in shallow water

Wei Li, Y. Chai, Qifan Zhang, Renchao Ji
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引用次数: 1

Abstract

Prediction of vibration and radiation from large underwater structures is one of the most important research contents in engineering. The cylindrical shell structure is most common structure in engineering, and it is the main component of submarine at the same time. Shells with structural similarity have similar properties due to the similarity principle. Free vibration of the simple cylindrical shell in shallow waters with proper structure mesh and flow field gird is firstly carried out with the usage of finite element method (FEM). The comparison between the FEM result, analytical solution and experimental results gets a satisfactory agreement, indicating the accuracy of FEM approach when used in the fluid-structure interaction problem. A stiffened cylindrical shell structure in shallow waters, taking consideration of the surface and bottom of the waters, is also studied. The natural frequency data and radiation results provide assessment of the influences of water depth, free surface and rigid boundary occurring in the fluid-structure interaction process. The acoustic response in infinite water domain is calculated in parallel. The result shows that the impact of surface, bottom and depth in water on the structure vibration response and the acoustic radiation cannot be ignored, which could provide experimental and numerical introduction in underwater vibration and radiation prediction or measurement.
浅水水下结构的振动与辐射
大型水下结构的振动与辐射预测是工程领域的重要研究内容之一。筒壳结构是工程上最常见的结构,同时也是潜艇的主要部件。由于相似原理,结构相似的壳具有相似的性质。首先采用有限元法,在适当的结构网格和流场网格条件下,对浅海中简单圆柱壳的自由振动进行了分析。有限元计算结果与解析解和实验结果的比较得到了满意的结果,表明了有限元方法在求解流固耦合问题时的准确性。本文还研究了一种考虑水面和底部的浅水加劲柱壳结构。固有频率数据和辐射结果可用于评价流固耦合过程中出现的水深、自由面和刚性边界的影响。并行计算了无限水域的声响应。结果表明,水面、底部和水深对结构振动响应和声辐射的影响是不可忽视的,可为水下振动和辐射的预测或测量提供实验和数值介绍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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