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水下等离子体声源聚焦性能仿真及误差分析(英文)
引用本文:马天,黄建国,雷开卓,陈建峰,张群飞.水下等离子体声源聚焦性能仿真及误差分析(英文)[J].船舶与海洋工程学报,2010,9(1):75-80.
作者姓名:马天  黄建国  雷开卓  陈建峰  张群飞
作者单位: 
摘    要:Focused underwater plasma sound sources are being applied in more and more fields. Focusing performance is one of the most important factors determining transmission distance and peak values of the pulsed sound waves. The sound source’s components and focusing mechanism were all analyzed. A model was built in 3D Max and wave strength was measured on the simulation platform. Error analysis was fully integrated into the model so that effects on sound focusing performance of processing-errors and installation-errors could be studied. Based on what was practical, ways to limit the errors were proposed. The results of the error analysis should guide the design, machining, placement, debugging and application of underwater plasma sound sources.

关 键 词:等离子体  聚焦性能  性能评价  声源  水下  模拟  三维模型  脉冲峰值
收稿时间:30 June 2006

Simulating underwater plasma sound sources to evaluate focusing performance and analyze errors
Tian Ma,Jian-guo Huang,Kai-zhuo Lei,Jian-feng Chen,Qun-fei Zhang.Simulating underwater plasma sound sources to evaluate focusing performance and analyze errors[J].Journal of Marine Science and Application,2010,9(1):75-80.
Authors:Tian Ma  Jian-guo Huang  Kai-zhuo Lei  Jian-feng Chen  Qun-fei Zhang
Institution:(1) Department of Mechanical Engineering, Tokyo University of Science, 1-3 Kagurazaka Shinjuku-ku, Tokyo 162-8601, Japan
Abstract:Focused underwater plasma sound sources are being applied in more and more fields. Focusing performance is one of the most important factors determining transmission distance and peak values of the pulsed sound waves. The sound source’s components and focusing mechanism were all analyzed. A model was built in 3D Max and wave strength was measured on the simulation platform. Error analysis was fully integrated into the model so that effects on sound focusing performance of processing-errors and installation-errors could be studied. Based on what was practical, ways to limit the errors were proposed. The results of the error analysis should guide the design, machining, placement, debugging and application of underwater plasma sound sources.
Keywords:underwater plasma sound source  focusing sound field  error analysis  3D Max
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