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Two-dimensional axisymmetric numerical simulation of supercritical phase conjugation of ultrasound in active solid media

机译:固体介质中超声超临界相共轭的二维轴对称数值模拟

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摘要

In the present study a two-dimensional axisymmetric numerical model is developed for supercritical parametric phase conjugation of ultrasound in a solid active element of cylindrical shape and finite length. The pseudospectral time domain algorithm (PSTD) is used owing to its efficiency to model large-scale problems. PSTD solves elastic wave equation in time-dependent heterogeneous isotropic and axisymmetric anisotropic solids using FFTs for high order approximation of the spatial differential operator on staggered grid, and a fourth-order Adams-Bashforth time integrator. In order to truncate the computational domain absorbing boundary conditions are introduced with complex frequency shifted perfectly matched layers. This procedure is highly effective at absorbing signals of long time-signature. The free surface of the active ceramic rod is introduced through the method of images. A systematic study of the influence of lateral limitations of the active medium on parametric wave phase conjugation of sound is made. It is shown that retro-focusing of the incident pulse takes place even in the case of mode conversions inside the active zone. Nevertheless, amplitude and form of the obtained conjugate pulse depend on the simulated configuration. Numerical simulation correctly describes the parametric amplification and retro-focusing of ultrasound observed in experiments. (c) 2005 Acoustical Society of America.
机译:在本研究中,开发了二维轴对称数值模型,用于圆柱形状和有限长度的固态有源元件中超声的超临界参数相位共轭。由于伪谱时域算法(PSTD)的效率高,因此可以对大型问题进行建模。 PSTD使用FFT对交错网格上的空间微分算符进行高阶近似,并使用四阶Adams-Bashforth时间积分器来求解时间相关的各向同性和轴对称各向异性固体中的弹性波方程。为了截断计算域,引入了具有复杂频移完美匹配层的吸收边界条件。该过程在吸收长时间签名的信号方面非常有效。活性陶瓷棒的自由表面通过图像方法引入。系统地研究了活性介质的横向限制对声参波相位共轭的影响。结果表明,即使在有源区内进行模式转换的情况下,也会发生入射脉冲的后聚焦。然而,所获得的共轭脉冲的幅度和形式取决于模拟配置。数值模拟正确地描述了实验中观察到的超声的参数放大和后聚焦。 (c)2005年美国声学学会。

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