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Radiation force of an arbitrary acoustic beam on an elastic sphere in a fluid

机译:流体中弹性球体上任意声束的辐射力

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摘要

A theoretical approach is developed to calculate the radiation force of an arbitrary acoustic beam on an elastic sphere in a liquid or gas medium. First, the incident beam is described as a sum of plane waves by employing conventional angular spectrum decomposition. Then, the classical solution for the scattering of a plane wave from an elastic sphere is applied for each plane-wave component of the incident field. The net scattered field is expressed as a superposition of the scattered fields from all angular spectrum components of the incident beam. With this formulation, the incident and scattered waves are superposed in the far field to derive expressions for components of the radiation stress tensor. These expressions are then integrated over a spherical surface to analytically describe the radiation force on an elastic sphere. Limiting cases for particular types of incident beams are presented and are shown to agree with known results. Finally, the analytical expressions are used to calculate radiation forces associated with two specific focusing transducers.
机译:发展了一种理论方法来计算液体或气体介质中任意声束在弹性球体上的辐射力。首先,通过采用常规的角谱分解将入射光束描述为平面波之和。然后,将经典平面波从弹性球体散射的解决方案应用于入射场的每个平面波分量。净散射场表示为入射光束所有角谱分量的散射场的叠加。利用这种公式,入射波和散射波在远场中叠加,以得出辐射应力张量分量的表达式。然后将这些表达式整合到球面上,以分析性地描述弹性球体上的辐射力。给出了特定类型入射光束的极限情况,并显示出与已知结果一致。最后,解析表达式用于计算与两个特定聚焦换能器相关的辐射力。

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