节点文献

水下爆炸空化效应作用下全船响应的并行计算(英文)

Parallel Computing of the Underwater Explosion Cavitation Effects on Full-scale Ship Structures

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 宗智赵延杰叶帆李海涛陈岗

【Author】 Zhi Zong1, Yanjie Zhao1, Fan Ye2, Haitao Li1 and Gang Chen1 1. School of Naval Architecture Engineering, Dalian University of Technology, Dalian 116024, China 2. Marine Design & Research Institute of China, Shanghai 200011, China

【机构】 School of Naval Architecture Engineering,Dalian University of TechnologyMarine Design & Research Institute of China

【摘要】 As well as shock wave and bubble pulse loading, cavitation also has very significant influences on the dynamic response of surface ships and other near-surface marine structures to underwater explosive loadings. In this paper, the acoustic-structure coupling method embedded in ABAQUS is adopted to do numerical analysis of underwater explosion considering cavitation. Both the shape of bulk cavitation region and local cavitation region are obtained, and they are in good agreement with analytical results. The duration of reloading is several times longer than that of a shock wave. In the end, both the single computation and parallel computation of the cavitation effect on the dynamic responses of a full-scale ship are presented, which proved that reloading caused by cavitation is non-ignorable. All these results are helpful in understanding underwater explosion cavitation effects.

【Abstract】 As well as shock wave and bubble pulse loading, cavitation also has very significant influences on the dynamic response of surface ships and other near-surface marine structures to underwater explosive loadings. In this paper, the acoustic-structure coupling method embedded in ABAQUS is adopted to do numerical analysis of underwater explosion considering cavitation. Both the shape of bulk cavitation region and local cavitation region are obtained, and they are in good agreement with analytical results. The duration of reloading is several times longer than that of a shock wave. In the end, both the single computation and parallel computation of the cavitation effect on the dynamic responses of a full-scale ship are presented, which proved that reloading caused by cavitation is non-ignorable. All these results are helpful in understanding underwater explosion cavitation effects.

【基金】 Supported by the National Natural Science Foundation of China(Grant No.50921001);National Key Basic Research Special Foundation of China(Grant No.2010CB832704);Scientific Project for High-tech Ships:Key Technical Research on the Semi-planning Hybrid Fore-body Trimaran;Doctoral Research Foundation of Liaoning Province(Grant No.20091012)
  • 【文献出处】 Journal of Marine Science and Application ,船舶与海洋工程学报(英文版) , 编辑部邮箱 ,2012年04期
  • 【分类号】U661
  • 【被引频次】4
  • 【下载频次】112
节点文献中: 

本文链接的文献网络图示:

本文的引文网络