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High-resolution water content estimation from surface-based ground-penetrating radar reflection data by impedance inversion

机译:利用阻抗反演从地基探地雷达反射数据中高分辨率估算含水量

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摘要

Mapping hydrological parameter distributions in high resolution is essential to understand and simulate groundwater flow and contaminant transport. Of particular interest is surface-based ground-penetrating radar (GPR) reflection imaging in electrically resistive sediments because of the expected close link between the subsurface water content and the dielectric permittivity, which controls GPR wave velocity and reflectivity. Conventional tools like common midpoint (CMP) velocity analysis provide physical parameter models of limited resolution only. We present a novel reflection amplitude inversion workflow for surface-based GPR data capable of resolving the subsurface dielectric permittivity and related water content distribution with markedly improved resolution. Our scheme is an adaptation of a seismic reflection impedance inversion scheme to surface-based GPR data. Key is relative-amplitude-preserving data preconditioning including GPR deconvolution, which results in traces with the source-wavelet distortions and propagation effects largely removed. The subsequent inversion for the underlying dielectric permittivity and water content structure is constrained by in situ dielectric permittivity data obtained by direct-push logging. After demonstrating the potential of our novel scheme on a realistic synthetic data set, we apply it to two 2-D 100 MHz GPR profiles acquired over a shallow sedimentary aquifer resulting in water content images of the shallow (3-7 m depth) saturated zone having decimeter resolution.
机译:高分辨率绘制水文参数分布图对于理解和模拟地下水流量和污染物迁移至关重要。由于地下含水量和介电常数之间存在紧密的联系,这将控制GPR波的速度和反射率,因此人们特别关注电阻沉积物中的基于地面的探地雷达(GPR)反射成像。诸如中点(CMP)速度分析之类的常规工具仅提供分辨率有限的物理参数模型。我们为基于表面的GPR数据提供了一种新颖的反射幅度反演工作流程,能够解决地下介电常数和相关水含量分布,且分辨率得到显着提高。我们的方案是地震反射阻抗反演方案对基于地面的GPR数据的改编。关键是保留相对振幅的数据预处理,包括GPR解卷积,这会导致迹线中的源小波失真和传播效应大大消除。底层介电常数和水含量结构的后续反演受到直接推压测井获得的原位介电常数数据的限制。在现实的合成数据集上证明了我们的新方案的潜力后,我们将其应用于在浅水沉积含水层上获得的两个2-D 100 MHz GPR剖面图,从而得出浅水区(深度3-7 m)的含水量图像具有分米的分辨率。

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  • 来源
    《Water resources research》 |2012年第8期|p.W08505.1-W08505.16|共16页
  • 作者单位

    Institut fuer Erd- und Umweltwissenschaften, Universitaet Potsdam, Potsdam, Germany,Department of Geosciences, Geophysics, Freie Universitaet Berlin, Berlin, Germany, Institute of Geophysics, ETH Zurich, Sonneggstr. 5, CH-8092 Zurich, Switzerland;

    Institut fuer Erd- und Umweltwissenschaften, Universitaet Potsdam, Potsdam, Germany;

    UFZ, Department Monitoring and Exploration Technologies, Helmholtz Centre for Environmental Research, Leipzig, Germany,Center of Applied Geoscience, University of Tuebingen, Tuebingen, Germany;

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