Frontiers in Environmental Science (Oct 2022)

Fast iterative method for seismic wave travel time calculation under undulating surface conditions

  • Meng Li,
  • Meng Li,
  • Jian Zhang,
  • Jian Zhang,
  • Hui Sun,
  • Fuliu Gao,
  • Chenglang Wang,
  • Ruoge Xu,
  • Xiaoyan Zhao,
  • Jun Zhou

DOI
https://doi.org/10.3389/fenvs.2022.1028452
Journal volume & issue
Vol. 10

Abstract

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Seismic wave travel time is an important seismic attribute information and is widely used in various seismic forward and inversion methods, including seismic migration imaging, seismic tomography, seismic wave forward modeling and other core seismic data processing methods. The accuracy and efficiency of the travel time algorithm are important for the above methods. In the practical application of seismic exploration, it is often carried out under the condition of undulating surface, which has a significant impact on the travel time calculation. Therefore, it is of great significance to study an efficient and high-precision travel time calculation method that can adapt to undulating surface condition. In this paper, Fast iterative method (FIM) is modified to a topography travel time calculation method. The method employs an iterative method to solve the equation of function to obtain seismic wave travel time by maintaining a narrow band called the active list, and the algorithm can update all grid nodes in the active list at a time. We will verify the travel time computing power of the FIM method through several different velocity models.

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