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Sound fields focused by a biconcave acoustic lens for normal and oblique incidence

机译:双凹声透镜聚焦的声场可产生正常和倾斜入射

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In this report, a sound pressure field focused by a biconcave lens was investigated using the wave theory and the numerical methods of the parabolic equation (PE) method and finite difference time domain (FDTD) method for normal incidence. For oblique incidence, the hybrid method which combines ray theory and wave theory was used in the calculation. The experimental data were compared with the theoretical results shown above. The experimental on-axis characteristics around the focal point agreed well with the calculated results but disagreed with the results for in front and behind the focal region. It was found that the second peak existed behind the focal point for normal incidence, though there is no second peak in the theoretical results by the analytical method and the FDTD method. After the numerical analysis by the hybrid method and the PE method, the second peak was found at the same position as the experiment. This was thought to be caused by the influence of the edge of the lens, which has a finite size. The dependence of convergent characteristics for oblique incidence was also compared with the results by the hybrid method.
机译:在本报告中,使用波理论和抛物线方程(PE)方法(PE)方法(PE)方法(PE)方法(PE)方法(PE)方法(FDTD)方法来研究由双发镜镜镜头的声压场进行研究。为了倾斜入射,在计算中使用了结合光线理论和波理论的混合方法。将实验数据与上面所示的理论结果进行比较。焦点周围的实验性对轴特性与计算结果相加,但在焦点区域前后的结果不同意。发现第二峰存在于正常发病率的焦点后面,尽管通过分析方法和FDTD方法在理论结果中没有第二峰。通过混合方法和PE方法进行数值分析,在与实验相同的位置发现第二峰。这被认为是由镜头边缘的影响引起的,这具有有限尺寸。将收敛特性对倾斜发射的依赖性与杂化方法的结果进行比较。

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