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Resonance scattering and radiation force calculations for an elastic cylinder using the translational addition theorem for cylindrical wave functions

机译:使用圆柱波函数的平移加法定理计算弹性圆柱体的共振散射和辐射力

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The standard Resonance Scattering Theory (RST) of plane waves is extended for the case of any two-dimensional (2D) arbitrarily-shaped monochromatic beam incident upon an elastic cylinder with arbitrary location using an exact methodology based on Graf’s translational addition theorem for the cylindrical wave functions. The analysis is exact as it does not require numerical integration procedures. The formulation is valid for any cylinder of finite size and material that is immersed in a nonviscous fluid. Partial-wave series expansions (PWSEs) for the incident, internal and scattered linear pressure fields are derived, and the analysis is further extended to obtain generalized expressions for the on-axis and off-axis acoustic radiation force components. The wave-fields are expressed using generalized PWSEs involving the beam-shape coefficients (BSCs) and the scattering coefficients of the cylinder. The off-axial BSCs are expressed analytically in terms of an infinite PWSE with emphasis on the translational offset distance d. Numerical computations are considered for a zeroth-order quasi-Gaussian beam chosen as an example to illustrate the analysis. Acoustic resonance scattering directivity diagrams are calculated by subtracting an appropriate background from the expression of the scattered pressure field. In addition, computations for the radiation force exerted on an elastic cylinder centered on the axis of wave propagation of the beam, and shifted off-axially are analyzed and discussed.
机译:平面波的标准共振散射理论(RST)适用于任意二维(2D)任意形状的单色光束入射到具有任意位置的弹性圆柱体的情况,该方法使用精确的方法基于圆柱的Graf平移加法定理波函数。该分析是精确的,因为它不需要数值积分程序。该配方对于任何尺寸有限且浸入非粘性流体中的材料的圆柱体均有效。推导了入射,内部和散射线性压力场的分波级数展开(PWSE),并进一步扩展了分析以获得轴上和轴外声辐射力分量的通用表达式。使用包含波束形状系数(BSC)和圆柱体的散射系数的广义PWSE来表示波场。离轴BSC可以用无限的PWSE来解析表示,重点是平移偏移距离d。考虑以零阶准高斯光束为例来说明分析的数值计算。通过从散射压力场的表达式中减去适当的背景来计算声共振散射方向图。此外,分析和讨论了辐射力施加到以光束的波传播轴为中心并沿轴向偏移的弹性圆柱体上的计算。

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