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Fracture Imaging in Weathered Granitic Quarries Using GPR Data

机译:使用GPR数据对风化花岗岩采石场进行骨折成像

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We study a granite rock quarry, partially covered by a weathering cap, situated at the State of Bahia (Brazil). The aim was to understand the spatial distribution of fracture surfaces inside the rock and distinguish quickly intact marketable granite areas in order to improve quarry management. To interpret the real data, we use a finite-difference scheme to simulate 2D ground penetrating radar data by solving the damped wave equation. The synthetic GPR sections reveals how a conductive clayey overburden (20 mS/m) masks the real position of the fractures in the granite. The algorithm shows clearly the increase in attenuation with the increase of the frequency, and also with the thickness increase of the weathering cover; which is also responsible for the pull-down effect on reflectors below. The results of the modeling have a good agreement with the actual data.
机译:我们研究了位于巴伊亚州(巴西)的花岗岩石矿,部分被风化帽覆盖。目的是了解岩石内部裂缝表面的空间分布,并迅速区分完好无损的可销售花岗岩区域,以改善采石场管理。为了解释真实数据,我们使用有限差分方案通过求解阻尼波方程来模拟二维探地雷达数据。合成的GPR剖面揭示了导电粘土覆盖层(20 mS / m)如何掩盖花岗岩中裂缝的真实位置。该算法清楚地显示出衰减随频率的增加而增加,并且随风化覆盖层的厚度增加而增加。这也对下面的反射镜产生下拉效应。建模结果与实际数据吻合良好。

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