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Circumferential-wave phase velocities for empty, fluid-immersed spherical metal shells

机译:空的,流体浸入的球形金属壳的周向波相速度

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摘要

In earlier studies of acoustic scattering resonances and of the dispersive phase velocities of surface waves that generate them [see, e.g., Talmant et al., J. Acoust. Soc. Am. 86, 278–289 (1989) for spherical aluminum shells] we have demonstrated the effectiveness and accuracy of obtaining phase velocity dispersion curves from the known acoustic resonance frequencies. This possibility is offered through the condition of phase matching after each complete circumnavigation of these waves [Überall et al., J. Acoust. Soc. Am. 61, 711–715 (1977)], which leads to a very close agreement of resonance results with those calculated from three-dimensional elasticity theory whenever the latter are available. The present investigation is based on the mentioned resonance frequency/elasticity theory connection, and we obtain comparative circumferential-wave dispersion-curve results for water-loaded, evacuated spherical metal shells of aluminum, stainless steel, and tungsten carbide. In particular, the characteristic upturn of the dispersion curves of low-order shell-borne circumferential waves (A or A0 waves) which takes place on spherical shells when the frequency tends towards very low values, is demonstrated here for all cases of the metals under consideration. ©2002 Acoustical Society of America.
机译:在较早的研究中,声散射共振和产生声散射共振的表面波的分散相速度[参见,例如,Talmant等人,J.Acoust。 Soc。上午。 [86,278–289(1989)对于球形铝壳],我们已经证明了从已知的声共振频率获得相速度色散曲线的有效性和准确性。在这些波每次完全绕行之后,通过相位匹配的条件提供了这种可能性[Überall等,J。Acoust。 Soc。上午。 61,711–715(1977)],这导致共振结果与三维弹性理论计算得出的结果非常接近。本研究基于提到的共振频率/弹性理论联系,我们获得了铝,不锈钢和碳化钨的水负压抽空球形金属壳的比较圆周波色散曲线结果。特别是,这里展示了当频率趋于非常低的值时,在球形壳上发生的低阶壳载圆周波(A或A0波)的色散曲线的特征性上升,在此情况下,对于所有情况下的金属考虑。 ©2002美国声学学会。

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