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A numerical study of non-collinear wave mixing and generated resonant components

机译:非共线波混频和产生的谐振分量的数值研究

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Interaction of two non-collinear nonlinear ultrasonic waves in an elastic half-space with quadratic non linearity is investigated in this paper. A hyperbolic system of conservation laws is applied here and a semi-discrete central scheme is used to solve the numerical problem. The numerical results validate that the model can be used as an effective method to generate and evaluate a resonant wave when two primary waves mix together under certain resonant conditions. Features of the resonant wave are analyzed both in the time and frequency domains, and variation trends of the resonant waves together with second harmonics along the propagation path are analyzed. Applied with the pulse-inversion technique, components of resonant waves and second harmonics can be independently extracted and observed without distinguishing times of flight. The results show that under the circumstance of non-collinear wave mixing, both sum and difference resonant components can be clearly obtained especially in the tangential direction of their propagation. For several rays of observation points around the interaction zone, the further it is away from the excitation sources, generally the earlier the maximum of amplitude arises. From the parametric analysis of the phased array, it is found that both the length of array and the density of element have impact on the maximum of amplitude of the resonant waves. The spatial distribution of resonant waves will provide necessary information for the related experiments. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文研究了非线性半空间中两个非共线非线性超声波的相互作用,它们具有二次非线性。这里采用双曲守恒律系统,并使用半离散中心方案来解决数值问题。数值结果验证了该模型可以作为在某些共振条件下将两个初级波混合在一起时产生和评估共振波的有效方法。分析了共振波的时域和频域特征,分析了共振波的变化趋势以及沿传播路径的二次谐波。结合脉冲反转技术,可以独立提取和观察共振波和二次谐波的成分,而无需区分飞行时间。结果表明,在非共线混波的情况下,尤其是在其传播的切线方向上,谐振分量和差分谐振分量都可以清晰地获得。对于相互作用区域周围的几条观察点射线,它离激发源越远,通常振幅的最大值越早出现。从相控阵的参数分析中可以发现,阵长和单元密度都对谐振波振幅的最大值产生影响。共振波的空间分布将为相关实验提供必要的信息。 (C)2016 Elsevier B.V.保留所有权利。

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