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Generalized theory of resonance scattering (GTRS) using the translational addition theorem for spherical wave functions

机译:使用平移加法定理的球面波函数的广义共振散射理论(GTRS)

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The generalized theory of resonance scattering (GTRS) by an elastic spherical target in acoustics is extended to describe the arbitrary scattering of a finite beam using the addition theorem for the spherical wave functions of the first kind under a translation of the coordinate origin. The advantage of the proposed method over the standard discrete spherical harmonics transform previously used in the GTRS formalism is the computation of the off-axial beam-shape coefficients (BSCs) stemming from a closed-form partial-wave series expansion representing the axial BSCs in spherical coordinates. With this general method, the arbitrary acoustical scattering can be evaluated for any particle shape and size, whether the particle is partially or completely illuminated by the incident beam. Numerical examples for the axial and off-axial resonance scattering from an elastic sphere placed arbitrarily in the field of a finite circular piston transducer with uniform vibration are provided. Moreover, the 3-D resonance directivity patterns illustrate the theory and reveal some properties of the scattering. Numerous applications involving the scattering phenomenon in imaging, particle manipulation, and the characterization of multiphase flows can benefit from the present analysis because all physically realizable beams radiate acoustical waves from finite transducers as opposed to waves of infinite extent.
机译:扩展了声学中弹性球形目标的共振散射(GTRS)的广义理论,以在坐标原点平移的情况下,使用第一类球面波函数的加法,描述了有限束的任意散射。相对于先前在GTRS形式主义中使用的标准离散球形谐波变换,该方法的优势在于计算出了代表轴BSC的闭合形式的部分波序列展开所产生的离轴波束形状系数(BSC)。球坐标。使用这种通用方法,可以评估任意粒子形状和大小的任意声散射,无论粒子是被入射光束部分还是完全照射。提供了数值示例,该数值示例来自任意放置在具有均匀振动的有限圆形活塞换能器领域的弹性球体的轴向和离轴共振散射。此外,3-D共振方向图说明了这一理论并揭示了散射的某些特性。由于所有可物理实现的光束都从有限的换能器发出声波,而不是无限范围的波,因此涉及到成像,粒子处理和多相流表征的散射现象的许多应用都可以从本分析中受益。

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