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3D FDTD anisotropic and dispersive modeling for GPR using rotated staggered grid method

机译:旋转交错网格法对GPR的3D FDTD各向异性和色散建模

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摘要

The finite-difference time-domain (FDTD) method is widely used in numerical modeling of ground penetrating radar (GPR). The well-known Yee's method is the earliest and most popular FDTD method. However, using Yee's method to solve an anisotropic case requires considerable interpolation of electric fields (assuming media to be non-magnetic). In this paper we present a different approach called rotated staggered grid (RSG) method to simulate electromagnetic (EM) wave propagation in anisotropic and dispersive media. RSG-FDTD places electric field components on the same grid system and magnetic field components on the same grid system, however, half a spacing away. The RSG-FDTD method was first used in elastic wave modeling. It requires no interpolations of wave fields and is advantageous for modeling wave propagation in anisotropic media. In this paper, the 3D anisotropic and dispersive EM wave equations are presented, and the RSG-FDTD approximations are derived. The application of the new method is tested using homogeneous media models. To validate the proposed method, results are compared with those of GprMax, and good agreement is achieved. The common offset sections of complex cases with anisotropy and dispersion are also tested and are compared with the corresponding isotropic case.
机译:时域有限差分法(FDTD)被广泛应用于探地雷达(GPR)的数值模拟中。众所周知的Yee方法是最早且最受欢迎的FDTD方法。但是,使用Yee的方法来求解各向异性情况需要相当大的电场插值(假设介质是非磁性的)。在本文中,我们提出了一种称为旋转交错网格(RSG)方法的不同方法,用于模拟电磁波(EM)在各向异性和分散介质中的传播。 RSG-FDTD将电场分量放置在同一网格系统上,将磁场分量放置在同一网格系统上,但是相隔半个间距。 RSG-FDTD方法首先用于弹性波建模。它不需要波场的插值,并且有利于建模各向异性介质中的波传播。本文提出了3D各向异性和色散EM波方程,并推导了RSG-FDTD近似值。使用同质介质模型测试了新方法的应用。为了验证所提出的方法,将结果与GprMax的结果进行比较,并取得了良好的一致性。还测试了具有各向异性和色散的复杂情况的公共偏移截面,并与相应的各向同性情况进行了比较。

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