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首页> 外文期刊>Journal of Sound and Vibration >Pseudo-Gaussian cylindrical acoustical beam - Axial scattering and radiation force on an elastic cylinder
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Pseudo-Gaussian cylindrical acoustical beam - Axial scattering and radiation force on an elastic cylinder

机译:伪高斯圆柱声束-弹性圆柱上的轴向散射和辐射力

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Making use of the addition theorem for the cylindrical wave functions and the complex-source-point method in cylindrical coordinates, an exact solution to the Helmholtz equation is derived, which corresponds to a tightly focused (or collimated) cylindrical quasi-Gaussian beam with arbitrary waist. The solution is termed "quasi-Gaussian" to make a distinction from the standard Gaussian beam solution obtained in the paraxial approximation. The advantage of introducing this new solution is the efficient and fast computational modeling of tightly focused or quasi-collimated cylindrical wave-fronts depending on the dimensionless waist parameter kw_0, where k is the wavenumber of the acoustical radiation. Moreover, a closed-form partial-wave series expansion is obtained for the incident field, which has the property that the axial scattering (i.e. along the direction of wave propagation) and the axial acoustic radiation force (which is a time-averaged quantity) on a cylinder, can be calculated without any approximations in the limit of linear acoustical waves in a nonviscous fluid. Examples are found where the extinction in the radiation force function plot is found to be correlated with conditions giving reduction of the backscattering from an elastic cylinder. Those results are useful in beam-forming design, particle manipulation in acoustic tweezers operating with focused cylindrical beams, and the prediction of the scattering and radiation forces on a cylindrical particle or liquid bridges.
机译:利用圆柱波函数的加法定理和圆柱坐标中的复源点法,推导了Helmholtz方程的精确解,该方程对应于任意聚焦的紧密聚焦(或准直)圆柱准高斯光束腰部。该解决方案被称为“准高斯”解决方案,以区别于近轴近似中获得的标准高斯光束解决方案。引入此新解决方案的优势在于,根据无量纲的腰部参数kw_0,对紧密聚焦或准准直的圆柱波阵面进行高效,快速的计算建模,其中k是声辐射的波数。此外,对于入射场获得闭合形式的分波系列展开,其具有以下特性:轴向散射(即沿波传播方向)和轴向声辐射力(为时间平均量)在非粘性流体中,可以在圆柱体上计算线性声波极限时没有任何近似值。发现了一些示例,其中发现了辐射力函数图中的消光与降低弹性圆柱体的反向散射的条件相关。这些结果可用于波束形成设计,使用聚焦圆柱束工作的声镊中的粒子操纵以及预测圆柱粒子或液体桥上的散射力和辐射力。

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