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使用伪谱时域方法对热致光声波传播进行模拟。

Simulations of thermally induced photoacoustic wave propagation using a pseudospectral time-domain method.

作者信息

Sheu Yae-Lin, Li Pai-Chi

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 May;56(5):1104-12. doi: 10.1109/TUFFC.2009.1144.

Abstract

Most physical models used to evaluate thermally induced photoacoustic waves in biomedical applications are approximations based on assumptions necessary to obtain analytical results, such as thermal and stress confinements. In contrast, using numerical methods to solve the general photoacoustic wave equations gives detailed information on the wave phenomenon without requiring as many assumptions to be made. The photoacoustic wave generated by thermal expansion is characterized by the heat conduction theorem and the state, continuity, and Navier-Stokes equations. This study developed a numerical solution in axis-symmetric cylindrical coordinates using a pseudospectral time-domain scheme. The method is efficient for large-scale simulations since it requires only 2 grid points per minimum wavelength, in contrast to conventional methods such as the finite-difference time-domain method requiring at least 10-20 grid points. The numerical techniques included Berenger's perfectly matched layers for free wave simulations, and a linear-perturbation analytical solution was used to validate the simulation results. The numerical results obtained using 4 grid points per minimum wavelength in the simulation domain agreed with the theoretical estimates to within an absolute difference error of 3.87 x 10(-2) for a detection distance of 3.1 mm.

摘要

在生物医学应用中,大多数用于评估热致光声波的物理模型都是基于获得解析结果所需的假设的近似模型,例如热限制和应力限制。相比之下,使用数值方法求解一般的光声波方程可以在不需要太多假设的情况下给出关于波现象的详细信息。由热膨胀产生的光声波由热传导定理以及状态方程、连续性方程和纳维 - 斯托克斯方程来表征。本研究使用伪谱时域方案在轴对称圆柱坐标系中开发了一种数值解。该方法对于大规模模拟是有效的,因为与传统方法(如有限差分时域方法至少需要10 - 20个网格点)相比,它每个最小波长仅需要2个网格点。数值技术包括用于自由波模拟的Berenger完全匹配层,并且使用线性微扰解析解来验证模拟结果。在模拟域中每个最小波长使用4个网格点获得的数值结果与理论估计值在3.1毫米检测距离下的绝对差误差为3.87×10^(-2) 范围内一致。

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