Application of the stepwise amplitude consistency processing technique in splicing the large-scale profile of the Ordos Basin
XU Lei-Ming1,2(), LI Fei1,2, WANG Jian-Hua3, LI Mei1,2, CAO Yong-Liang1,2, WANG Hao-Kun1,2
1. National Engineering Laboratory of Low-permeability Oil & Gas Exploration and Development,Xi'an 710018,China 2. Exploration and Development Research Institute,SINOPEC Changqing Oilfield Branch,Xi'an 710018,China 3. Northwest Branch of Exploration and Development Research Institute,SINOPEC,Lanzhou 730020,China
The Ordos Basin boasts abundant deep oil and gas resources.Hence,establishing the tectonic framework of the entire basin based on high-precision seismic imaging processing and structural interpretation holds critical significance.This study investigated the amplitude consistency problem in processing the large-scale 2D spliced profile of the basin. It employed a six-step amplitude consistency processing flow for amplitude preservation,involving energy adjustment between shots,spherical diffusion compensation,surface-consistent amplitude compensation,frequency-division amplitude compensation,and amplitude normalization based on the fold number/offset distribution.The processing flow effectively eliminated the amplitude inconsistency caused by the differences of survey lines in surface excitation and receiving conditions,acquisition methods,observation systems,and instruments in different years.The obtained basin-scale 2D spliced profile provided a reliable data basis for establishing the tectonic framework of the basin,clarifying the tectonic patterns,fault characteristics,and stratigraphic distributions of the fourth and third members of the Ordovician Majiagou Formation and the underlying strata,and predicting the distribution of paleo-uplifts.Moreover,the technique used in this study serves as a reference for processing seismic data of other complex areas.
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XU Lei-Ming, LI Fei, WANG Jian-Hua, LI Mei, CAO Yong-Liang, WANG Hao-Kun. Application of the stepwise amplitude consistency processing technique in splicing the large-scale profile of the Ordos Basin. Geophysical and Geochemical Exploration, 2024, 48(6): 1643-1652.
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