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Title: Source-independent full waveform inversion of seismic data

Journal Article · · Geophysics
OSTI ID:840871

A rigorous full waveform inversion of seismic data has been a challenging subject partly because of the lack of precise knowledge of the source. Since currently available approaches involve some form of approximations to the source, inversion results are subject to the quality and the choice of the source information used. We propose a new full waveform inversion methodology that does not involve source spectrum information. Thus potential inversion errors due to source estimation can be eliminated. A gather of seismic traces is first Fourier-transformed into the frequency domain and a normalized wavefield is obtained for each trace in the frequency domain. Normalization is done with respect to the frequency response of a reference trace selected from the gather, so the complex-valued normalized wavefield is dimensionless. The source spectrum is eliminated during the normalization procedure. With its source spectrum eliminated, the normalized wavefield allows us construction of an inversion algorithm without the source information. The inversion algorithm minimizes misfits between measured normalized wavefield and numerically computed normalized wavefield. The proposed approach has been successfully demonstrated using a simple two-dimensional scalar problem.

Research Organization:
Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE Director. Office of Science. Office of Basic Energy Sciences. Engineering and Geosciences Division; Korea Science and Engineering Foundation R01-2001-000071-0 (US)
DOE Contract Number:
AC03-76SF00098
OSTI ID:
840871
Report Number(s):
LBNL-49934; R&D Project: 468103; TRN: US200512%%315
Journal Information:
Geophysics, Vol. 68, Issue 6; Other Information: Submitted to Geophysics: Volume 68, No.6; Journal Publication Date: 11-12/2003; PBD: 20 Mar 2002
Country of Publication:
United States
Language:
English

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