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首页> 外文期刊>The Journal of the Acoustical Society of America >Propagation of coherent transverse waves: Influence of the translational and rotational subwavelength resonances
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Propagation of coherent transverse waves: Influence of the translational and rotational subwavelength resonances

机译:相干横波的传播:平移和旋转亚波长共振的影响

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摘要

The propagation of coherent transverse waves through a homogeneous elastic medium containing a set of spherical dense inclusions is an interesting topic. In such a material, in addition to the coherent longitudinal wave, two coherent transverse waves can propagate. The modeling used is based on the multiple scattering theory, which requires the scattering coefficients of the single scattering problem. These coefficients are calculated for moving rigid particles, leading to approximations of the two subwavelength dipolar resonances, one associated to a translational motion and the other to a rotational motion. Numerical simulations are carried out in order to compare the effective wavenumbers of the coherent elastic waves through the analysis of their phase velocity and attenuation. This comparison is performed for elastic and moving rigid spheres. It is shown that both dipolar resonances may have a great influence on the propagation of coherent transverse waves. (C) 2017 Acoustical Society of America.
机译:穿过包含一组球形密集夹杂物的均匀弹性介质的相干横波的传播是一个有趣的话题。在这种材料中,除了相干的纵波之外,两个相干的横波可以传播。所使用的建模基于多个散射理论,这需要单一散射问题的散射系数。计算用于移动刚性颗粒的这些系数,导致两个子波长偶极谐振的近似,与平移运动相关联,另一个是旋转运动。进行数值模拟,以便通过分析它们的相速度和衰减来比较相干弹性波的有效波数。对弹性和移动刚性球体进行这种比较。结果表明,双极共振可能对相干横波的传播产生很大影响。 (c)2017年声学社会。

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