Fast matching pursuit based multi-scale seismic inversion
- Song Pei (China University of Petroleum (East China)) | Xingyao Yin (China University of Petroleum (East China)) | Kun Li (China University of Petroleum (East China))
- Document ID
- Society of Exploration Geophysicists
- SEG International Exposition and Annual Meeting, 15-20 September, San Antonio, Texas, USA
- Publication Date
- Document Type
- Conference Paper
- 2019. Society of Exploration Geophysicists
- Seismic impedance, Inversion, Resolution, Sparse, Reservoir characterization
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- 1 since 2007
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Due to the band-limited characteristic of seismic data and noise pollution, seismic inversion shows the strong ill-posedness, thus conventional seismic inversion methods have inherent defects in recovering stratigraphic information of large-scale (low-frequency) and small-scale (high-frequency). To avoid the stratigraphic information of large-scale and small-scale are covered up in seismic inversion, the matching pursuit based multi-scale seismic inversion is proposed in this paper. Seismic data can be decomposed into different scales (frequency bands), and the resolution of inversion is raised by iterating inversion via multi-scale seismic inversion. The constraint of low frequency can improve resolution furtherly by proposed method. More precisely, low frequency information of P-wave impedance is obtained by large scale inversion. On this basis, high frequency information of P-wave impedance can be obtained by intermediate scale and small-scale inversion. The results of inversion show that the P-impedance can be obtained even by using smoothing model. The dependence of model accuracy of conventional inversion method is alleviated by the seismic inversion method of multi-scale seismic inversion. At last the 1-D model and seismic data are processed by proposed method to verify the validity and practicability of proposed method.
Presentation Date: Monday, September 16, 2019
Session Start Time: 1:50 PM
Presentation Time: 3:55 PM
Presentation Type: Oral
|File Size||779 KB||Number of Pages||5|
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