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Investigation on Vibro-acoustic Characteristics from Submerged Cylindrical Shell with Double Damping Layers

机译:双阻尼层埋圆柱壳的振动声特性研究

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The vibration and sound radiation from submerged cylindrical shell with double damping layers are presented. The cylindrical shell motion was described with classical thin shell theory. The double damping layers motion was described with the Navier viscoelasticity theory. For different Young's modulus parameters of double damping layers, the sound radiated power and the radial quadratic velocity of cylindrical shell models were calculated and analyzed. The results show that the sound radiated power and radial quadratic velocity are reduced to varying degrees due to double damping layers in a large frequency domain except low frequency. The double damping layer with soft inner layer and hard outer layer can make the sound radiated peaks move to high frequency, can help to reduce the radial quadratic velocity on outer surface of damping layer, and can help to reduce the vibration of model at anti-resonance frequency.
机译:提出了具有双阻尼层的浸没式圆柱壳的振动和声辐射。用经典薄壳理论描述了圆柱形壳运动。使用Navier Viscoelastity理论描述了双阻尼层运动。对于双阻尼层的不同杨氏模量参数,计算并分析了圆柱形壳体模型的声辐射功率和径向二次速度。结果表明,除了低频率之外的大频域中的双阻尼层,声辐射功率和径向二次速度降低到不同程度。具有柔软内层和硬外层的双阻尼层可以使声音辐射峰值移动到高频,可以帮助降低阻尼层外表面上的径向二次速度,并有助于降低抗体模型的振动共振频率。

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