Frequency-domain least-squares generalized internal multiple imaging with the energy norm

Author:

Wang Guanchao12ORCID,Guo Qiang3ORCID,Alkhalifah Tariq4ORCID,Wang Shangxu2ORCID

Affiliation:

1. China Railway Design Corporation, National Engineering Laboratory for Digital Construction and Evaluation Technology of Urban Rail Transit, Tianjin 300251, China.(corresponding author).

2. China University of Petroleum, State Key Laboratory of Petroleum Resources and Prospecting, Changping, Beijing 102249, China..

3. Formerly in King Abdullah University of Science and Technology, KAUST; Currently in Shearwater Geoservices..

4. King Abdullah University of Science and Technology, KAUST, Thuwal 23955, Saudi Arabia..

Abstract

Recorded seismic data contain various types of scattered energy, including those corresponding to multiples. Traditional imaging techniques are focused on single-scattering events and, thus, may fail to image crucial structures, such as salt flanks and faults that sometimes are illuminated only by the multiple scattered energy. The recently introduced generalized internal multiple imaging (GIMI) method offers an opportunity to image multiples by projecting the recorded data back into the subsurface, followed by an interferometric crosscorrelation of the subsurface wavefield with the recorded data. During this process, the interferometric step converts the first-order scattering to a tomographic component and the double-scattering forms the primary reflectivity. Dealing with a large volume of data consisting of full wavefields over the image space renders the interferometric step computationally expensive in the time domain. To make the implementation of GIMI tractable, we formulate its frequency-domain version. Moreover, we use the energy norm imaging condition to separate the reflectivity portion from the tomographic component. We demonstrate these features with numerical experiments.

Funder

National Key Research Development Program of China

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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