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Tunnel detection at Yuma Proving Ground, Arizona, USA - Part 2: 3D full-waveform inversion experiments

机译:隧道检测在尤马证明地面,亚利桑那州,美国 - 第2部分:3D全波形反演实验

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摘要

We have applied time-domain 3D elastic full-waveform inversion (FWI) to a known tunnel constructed 10 m below the surface with no distinguishing surface expressions. Multicomponent inversion experiments that use an initial model estimated from surface wave methods suggest that the vertical sources and the combination of vertical and longitudinal receivers result in the clearest image of the tunnel. We obtain an approximate 3D image of the tunnel using 24 vertical sources and 720 vertical and 720 longitudinal receivers. We find that increasing the number of vertical sources to 216 does not significantly improve the details of the tunnel. Further experimentation indicates that we can detect the tunnel using a reduced data set of 6-10 vertical sources and 216 vertical sensors. In addition, calculating the V-P/V-S ratio helps remove artifacts from the inverted model and highlights the location of the tunnel. We compare the 3D inversion results with the 2D FWI results for the same tunnel that we previously evaluated. The variety of successful inversion experiments suggest that FWI is capable of imaging shallow tunnels in desert geologies.
机译:我们将时域3D弹性全波形反转(FWI)施加到已知的隧道,在表面下方构造的10米,没有区分表面表达。使用从表面波方法估计的初始模型的多组分反演实验表明垂直源和垂直和纵向接收机的组合导致隧道的最清晰的图像。我们使用24垂直源和720垂直和720纵向接收器获得隧道的近似3D图像。我们发现将垂直源的数量增加到216不显着改善隧道的细节。进一步的实验表明,我们可以使用6-10个垂直源和216个垂直传感器的减小的数据集来检测隧道。此外,计算V-P / V-S比率有助于从反相模型中删除伪影,并突出显示隧道的位置。我们将3D反演结果与我们之前评估的相同隧道的2D FWI结果进行比较。各种成功的反演实验表明,FWI能够在沙漠地质中成像浅隧道。

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