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An Equivalent Beam Method for Calculating the Sound Radiation of Underwater Cylindrical Shells

机译:一种计算水下圆柱壳体声辐射的等效光束方法

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A method for calculating the sound radiation of underwater cylindrical shells in low frequency band by using the equivalent beams is investigated in this paper. The vibrations of cylindrical shells with large length-to-radius ratio L/a>10 are similar to those of beams in very low frequency band, in which underwater sound radiation characteristics of cylindrical shells are mainly dominated by beam-type modes. If the structural parameters and boundary conditions of a beam model are same as those of a cylindrical shell, the radiated sound power levels will be correspondence in low frequency band. However, One-dimensional beam theoretical model only considers about the transverse displacement, the coupling effects of displacements in other directions are neglected. Only the first order beam-type modal frequency, not the other higher orders, of cylindrical shells can be predicted precisely by one-dimensional beam theoretical model. To solve this problem, an equivalent beam theoretical model is established, in which different Young's modulus values of the equivalent beam model are searched to make the beam-type modal frequencies identical to those obtained by cylindrical shell theoretical model. For convenience, the interaction between the structures and water is approximated to added mass. The results show that the equivalent Young's modulus values are mainly dominated by the length-to-radius ratio for cylindrical shells, and the effect of the shell thickness on those can be neglected. The efficient and accurate numerical solutions are presented to validate the proposed method.
机译:本文研究了一种通过使用等效光束计算低频带中水下圆柱壳的声辐射的方法。圆柱壳的具有大的长度 - 半径比L /> 10的振动是在非常低的频带,在该圆柱壳的水下声辐射特性主要由束型模式为主类似于梁。如果光束模型的结构参数和边界条件与圆柱壳的结构相同,则辐射声功率水平将是低频带的对应。然而,一维光束理论模型仅考虑横向位移,忽略了其他方向上位移的耦合效应。只有一维光束理论模型,只能准确地预测第一阶光束型模态频率,而不是其他较高的圆柱形壳体的圆柱形壳。为了解决这个问题,建立了等效光束理论模型,其中搜索了等效光束模型的不同年轻模量值,以使光束型模频频率与由圆柱形壳理论模型获得的相同。为方便起见,结构和水之间的相互作用近似以增加质量。结果表明,等效的杨氏模量值主要由圆柱形壳的长度到半径比导,并且壳体厚度在这些壳体上可以忽略。提出了高效和准确的数字解决方案以验证所提出的方法。

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