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Investigation of acoustic scale effects and boundary effects for the similitude model of underwater complex shell-structure 被引量:3

Investigation of acoustic scale effects and boundary effects for the similitude model of underwater complex shell-structure
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摘要 In this paper, the acoustic scale effects and boundary effects for the similitude model of underwater complex shell-structure are investigated. The similitude conditions and relations between the similitude model and its prototype were studied in the references. This paper investigates the acoustic scale effects for the similitude model, which are influenced by loss factor, shear and rotatory inertia. At the same time, the boundary effects which are influenced by surface sound reflection are investigated in the experiment of similitude model. The results show that the acoustic scale effects may be controlled with model designing, the boundary effects can be controlled with experimental designing between the similitude model and its prototype. In this paper, the acoustic scale effects and boundary effects for the similitude model of underwater complex shell-structure are investigated. The similitude conditions and relations between the similitude model and its prototype were studied in the references This paper investigates the acoustic scale effects for the similitude model, which are influenced by loss factor, shear and rotatory inertia. At the same time, the boundary effects which are influenced by surface sound reflection are investigated in the experiment of similitude model. The results show that the acoustic scale effects may be controlled with model designing, the boundary effects can be controlled with experimental designing between the similitude model and its prototype.
出处 《Journal of Marine Science and Application》 2007年第1期31-35,共5页 船舶与海洋工程学报(英文版)
基金 Supported by Specialized Research Fund for the Doctoral Program of Higher Education Under Grant No. 20030317013.
关键词 水下复合壳体结构 相似模型 声学尺度效应 声学边界效应 acoustic scale effects acoustic boundary effects similitude
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