Resonant Acoustic Scattering by Spherical Air-Filled Elastic Shells Submerged in a Fluid: Comparison of Theory and Experiment

E. Chernokozhin, Iris Roger-Eitan, A. Gleizer, A. Boag
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Abstract

Theoretical model of acoustic scattering by submerged thin elastic air-filled spherical shells is compared with the results of direct measurements in an underwater test facility. Elastic resonances arising in elastic shells significantly affect the scattering, as demonstrated both theoretically and experimentally. Measurements were carried out in two frequency ranges. Two kinds of resonances—extensional and bending—were expected. In the low-frequency range, a predicted sharp drop in back scattering is observed, which corresponds to an extensional resonance mode. In the high frequency region, an expected wide resonance zone with enhanced scattering was found, although differing from the theoretically predicted distribution of resonances, which may be attributed to slight imperfection of the shell used in the experiment.
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球形充气弹性壳在流体中的共振声散射:理论与实验的比较
将弹性充气薄球壳水下声散射的理论模型与水下试验装置的直接测量结果进行了比较。理论和实验都证明了弹性壳中产生的弹性共振对散射有显著影响。测量在两个频率范围内进行。预期有两种共振:伸展共振和弯曲共振。在低频范围内,观察到预测的反向散射急剧下降,这对应于一个扩展共振模式。在高频区,虽然与理论预测的共振分布不同,但发现了预期的宽共振区,散射增强,这可能是由于实验中使用的壳有轻微的缺陷。
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