Shale gas stratum geostress prediction method based on three-dimensional seismic data
A three-dimensional seismic and prediction method technology, applied in the field of shale gas geophysical exploration, can solve the problems of inability to simulate the formation state, inability to accurately evaluate the stress state of low-porosity and low-permeability shale gas formations, etc., to get rid of differences and inconsistencies. Accuracy, the effect of improving precision
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[0023] An embodiment of the present invention provides a method for predicting in-situ stress of a shale gas formation based on 3D seismic data. The specific implementation steps are as follows:
[0024] (1) Perform pre-stack elastic parameter inversion based on 3D pre-stack seismic data and logging data to obtain Young's modulus data volume and Poisson's ratio data volume. At present, the technology for inversion of elastic parameters using pre-stack seismic data is relatively mature. The present invention uses the method proposed by Wang Weihong and others (Wang Weihong, Lin Chunhua, Wang Jianmin, etc., Pre-stack elastic parameter inversion method and its application, Petroleum Geophysical Prospecting, 2009) Volume 48, Issue 5), and then calculate the Young's modulus E and Poisson's ratio μ data volume based on the elastic impedance data volume obtained from the inversion.
[0025] (2) Calculate the seismic layer velocity in the study area based on the three-dimensional post-stac...
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