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Propagation of Radar Pulses from a Horizontal Dipole in Variable Dielectric Ground: A Numerical Approach

机译:可变介质中水平偶极子中雷达脉冲的传播:一种数值方法

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We numerically investigate the propagation of radar type short pulses from a horizontal dipole in the presence of some simple models of inhomogeneous ground with a flat surface. We use 3-dimensional (3-D) pseudospectral time domain (PSTD) and 2-D finite difference time domain forward modeling to determine the range and azimuth dependence of electric field components and to simulate events in a moveout profile. The models are: (ⅰ) a uniform half space with either high or low conductivity; (ⅱ) a vertical dielectric wedge; (ⅲ) a surface thin layer with a monocline wedge overlaid on the dielectric half space. Our homogeneous results agree with the analytical solutions, and more clearly show the significant vertical electric field component, which occurs for all models. The incorporation of an anomalous dielectric quadrant does not affect the air wave and only complicates ground wave propagation near the boundary. Modeling of a monocline dielectric wedge shows predictable subsurface reflections and refractions, some of which are highly dispersive events, depending on the direction of propagation. We present two field examples that appear to demonstrate some of our findings. We conclude that air waves make suitable references for moveout profiles regardless of dielectric complications, and that our results provide some insight into the interpretation of unique events seen in moveout profiles.
机译:我们在一些简单的具有平坦表面的不均匀地面模型的存在下,从水平偶极子的角度研究了雷达型短脉冲的传播。我们使用3维(3D)伪光谱时域(PSTD)和2D有限差分时域正演模型来确定电场分量的范围和方位角依赖性,并模拟运动剖面中的事件。这些模型是:(ⅰ)具有高或低电导率的均匀半空间; (ⅱ)垂直电介质楔; (ⅲ)在电介质半空间上覆盖有单斜楔的表面薄层。我们的均匀结果与解析解一致,并且更清楚地显示了所有模型中都存在的显着垂直电场分量。异常电介质象限的合并不会影响空气波,只会使边界附近的地波传播复杂化。单斜介质楔形物的建模显示出可预测的地下反射和折射,其中一些是高度分散的事件,具体取决于传播方向。我们提供了两个现场示例,这些示例似乎证明了我们的一些发现。我们得出的结论是,无论电介质复杂性如何,空气波都可以作为运动剖面的合适参考,并且我们的结果为解释运动剖面中出现的独特事件提供了一些见识。

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