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一种改进的波矢量频域方法用于非线性波建模。

An improved wave-vector frequency-domain method for nonlinear wave modeling.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2014 Mar;61(3):515-24. doi: 10.1109/TUFFC.2014.2935.

Abstract

In this paper, a recently developed wave-vector frequency-domain method for nonlinear wave modeling is improved and verified by numerical simulations and underwater experiments. Higher order numeric schemes are proposed that significantly increase the modeling accuracy, thereby allowing for a larger step size and shorter computation time. The improved algorithms replace the left-point Riemann sum in the original algorithm by the trapezoidal or Simpson's integration. Plane waves and a phased array were first studied to numerically validate the model. It is shown that the left-point Riemann sum, trapezoidal, and Simpson's integration have first-, second-, and third-order global accuracy, respectively. A highly focused therapeutic transducer was then used for experimental verifications. Short high-intensity pulses were generated. 2-D scans were conducted at a prefocal plane, which were later used as the input to the numerical model to predict the acoustic field at other planes. Good agreement is observed between simulations and experiments.

摘要

本文通过数值模拟和水下实验,改进并验证了一种新的波矢量频域方法在非线性波建模中的应用。提出了更高阶的数值方案,显著提高了建模精度,从而可以采用更大的步长和更短的计算时间。改进的算法用梯形或辛普森积分替代了原始算法中的左点黎曼和。本文首先通过平面波和相控阵研究对模型进行数值验证。结果表明,左点黎曼和、梯形和辛普森积分的全局精度分别为一阶、二阶和三阶。然后,使用一个高度聚焦的治疗换能器进行实验验证。生成了短的高强度脉冲。在近场平面进行了二维扫描,然后将其作为输入到数值模型中,以预测其他平面的声场。模拟和实验之间观察到良好的一致性。

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