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Prediction of Sound Radiation from Submerged Cylindrical Shell Based on Dominant Modes

机译:基于主导模式的浸没式圆柱壳体辐射的预测

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摘要

A sound radiation calculation method by using dominant modes is proposed to predict the sound radiation from a cylindrical shell. This method can provide an effective way to quickly predict the sound radiation of the structure by using as few displacement monitoring points as possible on the structure surface. In this paper, modal analyses of a submerged cylindrical shell are carried out by taking the vibration mode of a cylindrical shell in a vacuum, as a set of orthogonal bases. The modal sound radiation efficiency and modal contributions to sound radiation power are presented, and comparison results show that a few modes dominantly contribute to the sound radiation power at low frequencies. These modes, called dominantly radiated structural modes in this paper, are applied to predict the sound radiation power of submerged cylindrical shells by obtaining the modal participant coefficients and sound radiation efficiency of these dominant modes. Aside from the orthogonal decomposition method, a method of solving displacement modal superposition equations is proposed to extract the modal participant coefficients, because few modes contribute to the vibration displacement near the resonant frequencies. Some simulations of cylindrical shells with different boundaries are conducted, and the number of measuring points required are examined. Results show that this method, based on dominant modes, can well predict the low-frequency sound radiation power of submerged cylindrical shells. In addition, compared with the boundary element method, this method can better reduce the number of required measuring points significantly. The data of these important modes can be saved, which can help to predict the low-frequency sound radiation of the same structure faster in the future.
机译:提出了一种通过使用显性模式的声辐射计算方法来预测来自圆柱形壳体的声辐射。该方法可以提供一种有效的方法来通过在结构表面上使用尽可能少量的位移监测点来快速预测结构的声辐射。在本文中,通过在真空中取代圆柱形壳的振动模式来进行浸没式圆柱壳的模态分析,作为一组正交碱基。呈现了模态声辐射效率和对声辐射功率的模态贡献,并且比较结果表明,几种模式以低频率的声音辐射功率贡献。本文中的这些模式称为主导辐射的结构模式,应用通过获得这些优势模式的模态参与者系数和声辐射效率来预测浸没式圆柱形壳体的声辐射功率。除了正交分解方法之外,提出了一种求解位移模态叠加方程的方法以提取模态参与系数,因为少量模式有助于谐振频率附近的振动位移。进行了一些具有不同边界的圆柱形壳的模拟,检查所需测量点的数量。结果表明,该方法基于主导模式,可以很好地预测埋圆柱壳的低频声辐射功率。另外,与边界元素法相比,该方法可以更好地减少所需测量点的数量。可以保存这些重要模式的数据,这有助于预测未来更快地预测相同结构的低频声辐射。

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