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Predicting underwater sound radiation and directivity pattern of vibrating structures in deep and shallow water

机译:深层浅水中振动结构的水下声辐射和方向性模式

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Noise and vibration simulation using classical methods such as Finite Element Method (FEM), Boundary Element Method (BEM) and Statistical Energy Analysis (SEA) are well integrated into standard design processes in the automotive, aerospace and train industry. In the marine industry, simulation starts to occupy a key role in product design as vibro-acoustics and environmental requirements are becoming increasingly demanding. This paper discusses new advances in marine vibro-acoustic predictions and in particular the effect of water loading of hull panels and underwater sound radiation. A newly developed wavelet based sound radiation formulation is used to load hull panels with sea water which allows for the computation of the ship's water loaded natural frequencies and modal damping. This allows proper vibration level predictions on the hull panels for a wide range of frequencies. This paper also presents an innovative use of Fast Multipole Boundary Element Method (FMM-BEM) to predict underwater sound radiation of vibrating structures in deep or shallow waters. Several application examples using a 70 m luxury yacht model are also described.
机译:使用经典方法(如有限元方法(FEM),边界元法(BEM)和统计能量分析(SEA)的噪声和振动仿真在汽车,航空航天和火车行业中的标准设计过程中综合。在海洋工业中,仿真开始占据产品设计中的关键作用,因为振动声学和环境要求越来越苛刻。本文讨论了海洋振动声学预测的新进展,特别是船体板和水下声辐射水荷的影响。一种新开发的基于小波的声辐射配方用于装载带海水的船体面板,允许计算船舶的水负载自然频率和模态阻尼。这允许在船体面板上进行适当的振动水平预测,以获得各种频率。本文还介绍了快速多极边界元法(FMM-BEM)的创新使用,以预测深层或浅水区振动结构的水下声辐射。还描述了几种应用示例,使用了70米豪华游艇模型。

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