Tunnel detection at Yuma Proving Ground, Arizona, USA — Part 1: 2D full-waveform inversion experiment

Author:

Wang Yao1ORCID,Miller Richard D.2,Peterie Shelby L.2ORCID,Sloan Steven D.3ORCID,Moran Mark L.3,Cudney Harley H.3,Smith James A.4ORCID,Borisov Dmitri4ORCID,Modrak Ryan5,Tromp Jeroen4

Affiliation:

1. University of Kansas, Department of Mathematics, Lawrence, Kansas, USA.(corresponding author).

2. University of Kansas, Kansas Geological Survey, Lawrence, Kansas, USA..

3. U.S. Army Engineer Research and Development Center, Vicksburg, Mississippi, USA..

4. Princeton University, Princeton, New Jersey, USA..

5. University of Alaska Fairbanks, Juneau, Alaska, USA..

Abstract

We have applied time domain 2D full-waveform inversion (FWI) to detect a known 10 m deep wood-framed tunnel at Yuma Proving Ground, Arizona. The acquired seismic data consist of a series of 2D survey lines that are perpendicular to the long axis of the tunnel. With the use of an initial model estimated from surface wave methods, a void-detection-oriented FWI workflow was applied. A straightforward [Formula: see text] quotient masking method was used to reduce the inversion artifacts and improve confidence in identifying anomalies that possess a high [Formula: see text] ratio. Using near-surface FWI, [Formula: see text] and [Formula: see text] velocity profiles were obtained with void anomalies that are easily interpreted. The inverted velocity profiles depict the tunnel as a low-velocity anomaly at the correct location and depth. A comparison of the observed and simulated waveforms demonstrates the reliability of inverted models. Because the known tunnel has a uniform shape and for our purposes an infinite length, we apply 1D interpolation to the inverted [Formula: see text] profiles to generate a pseudo 3D (2.5D) volume. Based on this research, we conclude the following: (1) FWI is effective in near-surface tunnel detection when high resolution is necessary. (2) Surface-wave methods can provide accurate initial S-wave velocity [Formula: see text] models for near-surface 2D FWI.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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