Simultaneous pre-stack prediction of lithology,geofluids,and physical properties in deep tight sandstone reservoirs based on recharacterization of reflection coefficient approximation equation and Bayesian inversion strategyOA
Pre-stack seismic inversion is an important tool for the quantitative interpretation of complex reservoirs.However,the increasing demands of deep tight sandstone exploration require a more integrated characterization of lithology,physical properties,and geofluid.Current inversion methodologies often treat these reservoir parameters separately,leading to fragmented understanding and redundant workflows.This study proposes a novel pre-stack seismic inversion method that simultaneously estimates lithology and physical properties of deep tight sandstone reservoirs.Its core innovation lies in establishing a direct,rock-physics-based link between seismic response and multiple reservoir attributes.The specific process involves:(1)Conducting a comprehensive rock-physics analysis to identify parameters sensitive to lithology,permeability,and geofluid types;(2)Deriving a novel reflection coefficient approximation through parameter combinations and mathematical simplification,followed by accuracy verification and feasibility assessment for seismic inversion;and(3)Implementing a model-constrained iterative reweighting Bayesian inversion scheme to reliably estimate model parameters.The effectiveness and reliability of the method have been validated through model tests and field data applications.This approach enables the identification of favorable zones within tight sandstone reservoirs,offering a feasible and efficient solution for their integrated seismic interpretation.
Wenqiang Yang;Lijun Song;Yue Zhang;Si Wu
School of Earth Sciences and Engineering,Xi''an Shiyou University,Xi''an 710065,China Key Laboratory of Petroleum Resources Exploration and Evaluation,Gansu Province,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences,Lanzhou 730000,China Key Laboratory of Exploration Technologies for Oil and Gas Resources(Yangtze University),Ministry of Education,Wuhan 430100,ChinaSchool of Earth Sciences and Engineering,Xi''an Shiyou University,Xi''an 710065,ChinaNo.7 Oil Production Plant of Changqing Oil field Branch of PetroChina,Qingyang 745708,ChinaSinopec Geophysical Research Institute Co.,Ltd,Nanjing 211103,China
天文与地球科学
Deep tight sandstoneLithology predictionPhysical parameter inversionGeofluid discriminationPre-stack seismic inversion
《Natural Gas Industry B》 2026 (3)
P.280-299,20
supported by Scientific Research Program Funded by Education Department of Shaanxi Provincial Government(Grant No.25JK0612)the Open Fund of Key Laboratory of Exploration Technologies for Oil and Gas Resources(Yangtze University),Ministry of Education(Grant No.K2015-12)Key Laboratory of Petroleum Resources Exploration and Evaluation,Gansu Province,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences(Grant No.KLPREEGS-2025-02).
评论