Full-intensity waveform inversion

Author:

Liu Yike1ORCID,He Bin1ORCID,Lu Huiyi1,Zhang Zhendong2ORCID,Xie Xiao-Bi3,Zheng Yingcai4ORCID

Affiliation:

1. Institute of Geology and Geophysics, Key Laboratory of Petroleum Resource Research, Chinese Academy of Sciences, Beijing, China.(corresponding author); .

2. King Abdullah University of Science and Technology, Thuwal, Saudi Arabia..

3. University of California at Santa Cruz, Santa Cruz, California, USA..

4. University of Houston, Houston, Texas, USA..

Abstract

Many full-waveform inversion schemes are based on the iterative perturbation theory to fit the observed waveforms. When the observed waveforms lack low frequencies, those schemes may encounter convergence problems due to cycle skipping when the initial velocity model is far from the true model. To mitigate this difficulty, we have developed a new objective function that fits the seismic-waveform intensity, so the dependence of the starting model can be reduced. The waveform intensity is proportional to the square of its amplitude. Forming the intensity using the waveform is a nonlinear operation, which separates the original waveform spectrum into an ultra-low-frequency part and a higher frequency part, even for data that originally do not have low-frequency contents. Therefore, conducting multiscale inversions starting from ultra-low-frequency intensity data can largely avoid the cycle-skipping problem. We formulate the intensity objective function, the minimization process, and the gradient. Using numerical examples, we determine that the proposed method was very promising and could invert for the model using data lacking low-frequency information.

Funder

Statoil Petroleum

National Natural Science Foundation of China

The National Oil and Gas Major Project of China

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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