中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Mechanism of fault slippage in the underground gas storage and preliminary application in the Shuang 6 UGS in China

文献类型:期刊论文

作者Song, Yujia3,4; Liu, Hejuan3,4; Min, Zhongshun2; Liu, Mancang1; Qiu, Xiaosong1; Liu, Jianjun3,4; Yang, Chunhe3,4
刊名GEOENERGY SCIENCE AND ENGINEERING
出版日期2025-08-01
卷号251页码:17
关键词Fault reactivation Underground gas storage Hydro-mechanical simulation Critical pressure perturbation Shuang 6
ISSN号2949-8929
DOI10.1016/j.geoen.2025.213881
英文摘要The mechanical stability of faults is crucial for the safe operation of underground gas storage (UGS). The complex fault systems, strong heterogeneity and anisotropy of geological formations, associating with uncertainty of in-situ stress state after long-term exploitation of oil or gas reservoirs and multiple cycles of injection and production, making it particularly challenging to ensure the safe and efficient operation of the UGS in depleted gas reservoirs. This study investigates the Shuang 6 UGS in the Liaohe basin, NE China, employing a hydro-mechanical coupling approach through both simplified simulation modeling and field case analysis. Systematic parametric studies are carried out to illustrate the effect of key factors on fault slippage. Based on the results of fluid migration and geomechanical responses, an advanced critical pressure perturbation method is proposed to evaluate the risk of fault failure. The findings indicate the following: (1) The fault stress profile exhibites greater complexity than pore pressure due to geomechanical interactions between formations with contrasting properties on hanging wall and footwall; (2) The Delta P in the advanced critical pressure perturbation method provides quantifiable criteria for slip risk evaluation; (3) Low injection rates, small difference in Young's modulus between laminated formations, a high permeable fault zone, and damage zone, as well as simultaneous injection or withdrawal on both sides of the fault, may reduce the risk of fault failure; (4) Specific risk-prone areas are identified in the Xing II/III formation and the right side of Faults 2/3 in the SX block of the Shuang 6 UGS. These insights offer practical guidance for UGS design and operational safety management.
资助项目National Natural Science Founda-tion of China[U22A20166] ; Excellent Young Scientists Fund Program of National Natural Science Foundation of China[52122403] ; Natural Science Foundation of Wuhan[2024040701010062]
WOS研究方向Energy & Fuels ; Engineering
语种英语
WOS记录号WOS:001472890400001
出版者ELSEVIER
源URL[http://119.78.100.198/handle/2S6PX9GI/35900]  
专题中科院武汉岩土力学所
通讯作者Liu, Hejuan
作者单位1.Natl Energy Underground Gas Storage Res & Dev Ctr, Langfang 065007, Hebei, Peoples R China
2.Liaohe Oilfield China Natl Petr Corp, Panjin 124010, Peoples R China
3.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
4.Chinese Acad Sci, Inst Rock & Soil Mech, State Key Lab Geomech & Geotech Engn Safety, Wuhan 430071, Peoples R China
推荐引用方式
GB/T 7714
Song, Yujia,Liu, Hejuan,Min, Zhongshun,et al. Mechanism of fault slippage in the underground gas storage and preliminary application in the Shuang 6 UGS in China[J]. GEOENERGY SCIENCE AND ENGINEERING,2025,251:17.
APA Song, Yujia.,Liu, Hejuan.,Min, Zhongshun.,Liu, Mancang.,Qiu, Xiaosong.,...&Yang, Chunhe.(2025).Mechanism of fault slippage in the underground gas storage and preliminary application in the Shuang 6 UGS in China.GEOENERGY SCIENCE AND ENGINEERING,251,17.
MLA Song, Yujia,et al."Mechanism of fault slippage in the underground gas storage and preliminary application in the Shuang 6 UGS in China".GEOENERGY SCIENCE AND ENGINEERING 251(2025):17.

入库方式: OAI收割

来源:武汉岩土力学研究所

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