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首页> 外文期刊>Journal of Physics Communications >Acoustic radiation force on a cylindrical particle near a planar rigid boundary
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Acoustic radiation force on a cylindrical particle near a planar rigid boundary

机译:在平面刚性边界附近的圆柱粒子上的声辐射力

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The aim of this investigation is to provide improved mathematical series expansions of the longitudinal and transverse acoustic radiation forces for a rigid cylindrical particle in 2D of arbitrary cross-section located near a planar rigid wall. Incident plane progressive waves with variable angle of incidence are considered in a non-viscous fluid. The multiple scattering effects occurring between the particle and the rigid boundary are described using the partial-wave decomposition in cylindrical coordinates, the method of images and the translational addition theorem. Initially, an effective acoustic field incident on the particle is defined, which includes the primary incident field, the reflected waves from the flat wall and the scattered field from the image object. Subsequently, the incident effective field along with the scattered field from the object are utilized to obtain closed-form mathematical expressions for the longitudinal and transverse radiation force functions, based on a scattering approach in the far-field. The radiation force vector components are formulated in partialwave series in cylindrical coordinates, which involve the incidence angle, the expansion coefficients of the scatterer and its image, and the distance from the center of mass of the particle to the boundary. Numerical examples for a rigid circular cylinder are considered. Computations for the longitudinal and transverse non-dimensional radiation force functions are performed. Emphasis is given on varying the size of the particle, the incidence angle of the source field and the particle-wall distance. Depending on the particle-wall distance and incidence angle, zero-longitudinal and transverse force components arise, thus, the particle becomes unaffected by the linear momentum transfer. Moreover, pushing or pulling forces between the particle and wall are predicted depending on the particle-wall distance, the incidence angle and size parameter. The results may find possible applications in the development of acousto-fluidic devices, acoustic levitation of particles nearby a boundary, cloaking/ invisibility, and underwater acoustics to name a few areas, where most investigations resort initially to numerical simulations to guide the experimental design processes.
机译:这项研究的目的是为位于平面刚性壁附近的任意横截面的二维硬圆柱颗粒提供纵向和横向声辐射力的改进的数学级数展开。在非粘性流体中考虑了入射角可变的入射平面渐进波。使用圆柱坐标系中的部分波分解,图像方法和平移加定理,描述了粒子与刚性边界之间发生的多重散射效应。最初,定义了入射到粒子上的有效声场,该场包括主入射场,来自平壁的反射波和来自图像对象的散射场。随后,基于远场中的散射方法,利用入射有效场以及来自对象的散射场来获得纵向和横向辐射力函数的闭合形式的数学表达式。辐射力矢量分量在圆柱坐标系中以分波序列形式表示,涉及入射角,散射体及其图像的膨胀系数以及从粒子质心到边界的距离。考虑了刚性圆柱体的数值示例。进行纵向和横向无量纲辐射力函数的计算。重点是改变粒子的大小,源场的入射角和粒子与壁的距离。取决于粒子壁的距离和入射角,会出现零纵向和横向力分量,因此粒子不受线性动量传递的影响。此外,取决于粒子壁的距离,入射角和尺寸参数来预测粒子与壁之间的推力或拉力。这些结果可能会在声流体装置的开发,边界附近的颗粒的声悬浮,隐身/隐形和水下声学等领域中找到可能的应用,其中大部分研究最初都是通过数值模拟来指导实验设计过程的。

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