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Faster Calculation of the Low-Frequency Radiated Sound Power of Underwater Slender Cylindrical Shells

机译:水下细长圆柱壳低频辐射声功率的更快计算

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摘要

Based on the fact that beam-type modes play the main role in determining the sound radiation from an underwater thin slender (length-to-radius ratio L/a20) elastic cylindrical shell, an equivalent-beam method is proposed for calculating the low-frequency radiated sound power of underwater thin slender unstiffened and stiffened cylindrical shells. The natural bending frequencies of the cylindrical shell are calculated by analytical and numerical methods and used to solve equivalent Young's modulus of the equivalent beam. This approach simplifies the vibration problem of the three-dimensional cylindrical shell into that of a two-dimensional beam, which can be used to simplify the calculation process of radiated sound power. Added mass is used to approximate the fluid-structure coupling, further simplifying the calculation process. Calculation examples of underwater simply supported unstiffened and stiffened cylindrical shells verify the proposed method by comparison with analytical and numerical results. Finally, the effects of the size and spacing of the stiffeners on the sound radiation characteristics of underwater free-free stiffened cylindrical shells are discussed. The proposed method can be extended to the rapid calculation of the sound radiation characteristics of underwater slender complex cylindrical shells in the low-frequency range.
机译:基于波束型模式在确定水下细长(长半径比L/a>20)弹性圆柱壳声辐射方面起主要作用,提出了一种等效波束法计算水下细长无刚度和加筋圆柱壳的低频辐射声功率。通过解析和数值方法计算了圆柱壳的固有弯曲频率,并用于求解等效梁的等效杨氏模量。该方法将三维圆柱壳的振动问题简化为二维梁的振动问题,可用于简化辐射声功率的计算过程。增加的质量用于近似流固耦合,进一步简化了计算过程。通过水下简支无筋和加筋圆柱壳的计算算例,通过对比分析和数值计算结果验证了所提方法的正确性。最后,讨论了加劲肋的尺寸和间距对水下自由加筋圆柱壳声辐射特性的影响。所提方法可以推广到水下细长复杂圆柱壳在低频范围内声辐射特性的快速计算。

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  • 作者

    Tang Rui; Tian He; Shang Dajing;

  • 作者单位

    Harbin Engn Univ, Acoust Sci & Technol Lab, Harbin 150001, Peoples R China|Harbin Engn Univ, Minist Ind & Informat Technol, Key Lab Marine Informat Acquisit & Secur, Harbin 150001, Peoples R China|Harbin Engn Univ, Coll Underwater Acoust Engn, Harbin 1500;

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