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Fracture characterization with GPR: A comparative study

机译:GPR骨折特征的比较研究

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Provided that the frequency of the GPR antenna is properly selected, detecting rock fractures is generally an achievable task because most of the investigated rocks are resistive. On the other hand, fractures can be generally envisaged as thin-beds embedded in a homogenous rock formation, thus yielding a complex reflection pattern caused by the reverberation of the GPR signal back and forth within the bed. As a result, dedicated approaches must be developed in order to extract quantitative information about fracture properties, i.e. thickness and permittivity of filling material, encoded in the thin-bed response. This work presents a comparison of two approaches for fracture characterization that we recently tested on synthetic, lab as well as field datasets. Although both approaches rely on amplitude and phase information in the frequency domain, their strategies significantly differ. The first one is based on common-offset data and involves deterministic deconvolution, while the second one processes common-midpoint reflections according to an amplitude-and-phase-variation-with-offset inversion. We test the performance of both approaches on a lab specimen scanned with high frequency antennas. Our aim is to identify shortcomings and advantages of the tested approaches, and to evaluate their outcomes according to the needs of possible field applications, in terms of acquisition time and accuracy.
机译:只要正确选择GPR天线的频率,检测岩石破裂通常是可以实现的任务,因为大多数被调查的岩石都是电阻性的。另一方面,通常可以将裂缝想象为埋在同质岩石地层中的薄层,从而产生由GPR信号在层内来回混响引起的复杂反射模式。结果,必须开发专用的方法以便提取关于薄壁响应中编码的断裂特性的定量信息,即填充材料的厚度和介电常数。这项工作对我们最近在合成,实验室以及现场数据集上测试的两种裂缝表征方法进行了比较。尽管这两种方法都依赖于频域中的幅度和相位信息,但是它们的策略却大不相同。第一个基于公共偏移数据并涉及确定性反卷积,而第二个则根据具有偏移的幅度和相位变化来处理公共中点反射。我们在用高频天线扫描的实验室样本上测试这两种方法的性能。我们的目的是发现测试方法的缺点和优势,并根据可能的现场应用的需求(在采集时间和准确性方面)评估其结果。

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