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Acoustic scattering by two spheres: Multiple scattering and symmetry considerations

机译:两个球体的声散射:多重散射和对称性考虑

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Acoustic scattering by two identical spheres is theoretically, numerically and experimentally studied by highlighting the role of the symmetries of the scatterer. Incident and scattered fields are expanded over the different irreducible representations of D-infinityh, the continuous symmetry group of the scatterer. Then, from the boundary conditions, one obtains for each irreducible representation an infinite system of linear complex algebraic equations where the unknown scattering coefficients are uncoupled. This feature greatly simplifies the treatment of the problem and speeds up calculations. Farfield form functions are computed in the cases of Neumann boundary conditions (rigid spheres) and elastic boundary conditions (elastic spheres immersed in water). A series of experiments based on ultrasonic spectroscopy is performed in the case of two stainless-steel spheres immersed in water. The comparison between the theoretical and the experimental results provides quite a good agreement. (C) 2001 Academic Press. [References: 20]
机译:通过突出散射体对称性的作用,对两个相同球体的声散射进行了理论,数值和实验研究。入射场和散射场扩展到D-无穷大(散射体的连续对称组)的不同不可约表示上。然后,从边界条件为每个不可约表示获得一个线性复代数方程的无限系统,其中未知散射系数是不耦合的。此功能极大地简化了问题的处理并加快了计算速度。在诺伊曼边界条件(刚性球体)和弹性边界条件(浸入水中的弹性球体)的情况下,计算远场形式函数。在将两个不锈钢球浸入水中的情况下,进行了一系列基于超声光谱的实验。理论和实验结果之间的比较提供了很好的一致性。 (C)2001学术出版社。 [参考:20]

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