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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Resonance scattering of elastic waves by an elastic inclusion in an elastic matrix. Numerical calculations
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Resonance scattering of elastic waves by an elastic inclusion in an elastic matrix. Numerical calculations

机译:弹性基体中的弹性夹杂物对弹性波的共振散射。数值计算

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摘要

The scattering of an incident plane ultrasonic (longitudinal) wave by an elastic spherical inhomogeneity contained within an elastic matrix is studied. The emphasis is on the computation and analysis of basic multiple cases that result when different material behaviours are present in the matrix and in the inclusion. These calculations are useful in underwater acoustic applications. The behaviors are dominated by the soft or rigid backgrounds of the resonance scattering theory (RST). The first three multiple coefficients appearing in the expansions for the total elastodynamic fields developed around the inhomogeneity during the scattering process have been calculated in suitable frequency bands in all the cases considered. The examination of modulus, the real parts, and the imaginary parts of these (complex) coefficients under the RST approach allows the quantitative assessment of the conditions under which monopole or dipole resonances will occur and their relative magnitudes. The decomposition of the multiple coefficients into their resonance and background portions shows that it is the upward frequency shift of the background curves that controls the dominance of either radial (monopole) or translation (dipole) oscillations of the inclusion. This has an effect on the dispersion curves of the composite, which develop optical as well as acoustical branches. The real and imaginary parts of the multiple coefficients are respectively proportional to the attenuation and the effective wave speed in this simple inhomogeneous composite.
机译:研究了包含在弹性矩阵中的弹性球形不均匀性对入射平面超声(纵向)波的散射。重点是当矩阵和包含物中存在不同的材料行为时导致的基本多种情况的计算和分析。这些计算在水下声学应用中很有用。这些行为主要由共振散射理论(RST)的软性或刚性背景决定。在所有考虑的情况下,已经在合适的频带中计算了在散射过程中围绕不均匀性发展的总弹性动力学场的扩展中出现的前三个多重系数。在RST方法下检查这些(复数)系数的模量,实部和虚部,可以定量评估发生单极或偶极共振的条件及其相对幅度。将多个系数分解成其共振和本底部分表明,控制夹杂物的径向(单极)或平移(偶极)振荡的优势是背景曲线的向上频移。这会影响复合材料的色散曲线,从而形成光学和声学分支。在这种简单的非均匀复合材料中,多个系数的实部和虚部分别与衰减和有效波速成比例。

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