首页> 外文会议>13th International Conference on Ground Penetrating Radar >Full-waveform inversion of crosshole ground penetrating radar data to characterize a gravel aquifer close to the Thur River, Switzerland
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Full-waveform inversion of crosshole ground penetrating radar data to characterize a gravel aquifer close to the Thur River, Switzerland

机译:跨孔地面穿透雷达数据的全波形反演,以表征瑞士瑟河附近的砾石含水层

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Imaging results of crosshole GPR can be significantly improved by using full-waveform inversion compared to conventional ray-based inversion schemes. A recently developed 2D finite difference time domain (FDTD) vectorial full-waveform crosshole radar inversion method was made more flexible to allow using an optimized acquisition setup that reduces the measurement speed and the computational cost. This improved algorithm was used to invert crosshole GPR data acquired within a gravel aquifer in northern Switzerland. Compared to the ray-based inversion, the results from the full-waveform inversion show significantly higher resolution images in the depth range of 6m – 10m. Comparison of the inversion results with borehole logs shows that porosity estimates obtained from Neutron-Neutron data correspond well with the GPR porosities derived from the permittivity distribution in the depth range 6 m – 10 m and that the trends are in good qualitative agreement. Furthermore, there is a good correspondence between the conductivity tomograms and natural Gamma logs at the boundary between the gravel layer and the underlying lacustrine clay sediments.
机译:与传统的基于射线的反演方案相比,使用全波形反演可以显着改善井间GPR的成像结果。最近开发的2D时域有限差分矢量(FDTD)矢量全波形交叉孔雷达反演方法更加灵活,可以使用优化的采集设置来降低测量速度和计算成本。这种改进的算法用于反转瑞士北部砾石含水层内采集的井间GPR数据。与基于射线的反演相比,全波形反演的结果显示,在6m至10m的深度范围内,图像分辨率更高。反演结果与钻孔测井结果的比较表明,从中子-中子数据获得的孔隙度估算值与在6 m-10 m深度范围内的介电常数分布得出的GPR孔隙率非常吻合,并且趋势具有良好的定性一致性。此外,在砾石层和下层湖相粘土沉积物之间的边界处,电导率断层图和天然伽马测井曲线之间具有良好的对应关系。

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