• DocumentCode
    168884
  • Title

    Examples of pre-stack reverse-time migration applied to ground penetrate radar synthetic data

  • Author

    Linlin Lei ; Sixin Liu ; Lei Fu ; Xu Meng ; Junjun Wu

  • Author_Institution
    Coll. of Geo-exploration Sci. & Technol., Jilin Univ., Changchun, China
  • fYear
    2014
  • fDate
    June 30 2014-July 4 2014
  • Firstpage
    629
  • Lastpage
    632
  • Abstract
    Reverse-time migration (RTM) is used to handle complex velocity models including steeply dipping interfaces and dramatic variations in transverse velocity, which promises better imaging results compared with traditional migration methods such as Kirchhoff migration algorithm. RTM has been increasingly used in oil and gas seismic exploration. Based on the similarity of kinematics and dynamics between electromagnetic wave and elastic wave, we apply pre-stack RTM method to process Ground Penetrating Radar (GPR) data in this paper. Finite-difference time domain (FDTD) numerical method is used to simulate the electromagnetic wave propagation including forward and backward extrapolation, the cross-correlation imaging condition is used to obtain the final image. Evaluation is in the context of a complex geological structure model; the Gaussian random roughness surface is introduced to represent the underground layer interface; common offset radar data and multi-shot wide-angle reflection and refraction (WARR) radar data are synthesized. The migration results from electromagnetic wave pre-stack RTM show excellent coincidence with the true model.
  • Keywords
    elastic waves; electromagnetic wave propagation; extrapolation; finite difference time-domain analysis; geology; ground penetrating radar; surface roughness; FDTD; GPR; Gaussian random roughness surface; Kirchhoff migration; WARR; backward extrapolation; complex geological structure; complex velocity; dipping interfaces; dramatic variations; elastic wave; electromagnetic wave propagation; finite difference time domain; forward extrapolation; gas seismic exploration; ground penetrating radar; multishot wide-angle reflection and refraction; oil seismic exploration; pre-stack reverse-time migration; radar data; synthetic data; transverse velocity; underground layer interface; Data models; Geology; Imaging; Radar imaging; Receivers; Complex geological structure; GPR; Pre-stack RTM; WARR;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Ground Penetrating Radar (GPR), 2014 15th International Conference on
  • Conference_Location
    Brussels
  • Type

    conf

  • DOI
    10.1109/ICGPR.2014.6970501
  • Filename
    6970501