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Dispersion of axially symmetric waves in fluid-filled cylindrical shells

机译:流体填充圆柱壳中轴对称波的分散

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摘要

Acoustic waves normally incident on an elastic cylindrical shell can cause the excitation of circumferential elastic waves on the shell. These shells may be empty and fluid immersed, or fluid filled in an ambient medium of air, or doubly fluid loaded inside and out. Circumferential waves on such shells have been investigated for the case of aluminum shells, and their phase-velocity dispersion curves have been obtained for double fluid loading [Bao, Raju, and Überall, J. Acoust. Soc. Am. 105, 2704 (1999)]. Similar results were obtained for empty or fluid-filled brass shells [Kumar, Acustica 27, 317 (1972)]. We have extended the work of Kumar to the case of fluid-filled aluminum shells and steel shells imbedded in air. These cases demonstrate the existence of circumferential waves traveling in the filler fluid, exhibiting a certain simplicity of the dispersion curves of these waves. This is in striking contrast to the results for double (outside and inside) loading by two fluids of comparable density, where circumferential waves in both external and internal fluids were found, their interaction causing segmentation and repulsion phenomena of their dispersion curves. The condition of standing circumferential waves determines the eigenfrequency spectrum of the shell.
机译:通常入射在弹性圆柱壳上的声波会引起圆周弹性波在壳上的激发。这些外壳可能是空的且浸没了液体,或者液体填充到周围的空气中,或者内部和外部都加了双重液体。对于铝壳,已经研究了此类壳上的周向波,并针对双流体载荷获得了它们的相速度速度色散曲线[Bao,Raju,andÜberall,J. Acoust。 Soc。上午。 105,2704(1999)]。对于空的或充满流体的黄铜壳,也获得了相似的结果[Kumar,Acustica 27,317(1972)]。我们已经将Kumar的工作扩展到了充满空气的铝制外壳和钢制外壳的案例。这些情况说明了在填充液中传播的圆周波的存在,显示了这些波的色散曲线的某种简单性。这与密度相近的两种流体的双重(外部和内部)载荷结果形成鲜明对比,在该载荷中,发现内部和外部流体均产生圆周波,它们的相互作用导致其分散曲线发生分段和排斥现象。驻波的条件决定了壳体的本征频谱。

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