Numerical simulation of stress regime transformation during unconventional fossil energy development in Sichuan Basin: from strike-slip stress regime to reverse stress regime via hydraulic fracturing

Author:

Meng Hu,Ge Hongkui,Wang Xiaoqiong,Zhang Jialiang,Shen Yinghao,Liang Xing,Meng Fanhua

Funder

Seismicity Risk Assessment and Countermeasures of National Shale Gas Demonstration Area in Southern Sichuan

Strategic Cooperation Technology Projects of CNPC and CUPB

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Geography, Planning and Development

Reference84 articles.

1. Amini A, Eberhardt E (2019) Influence of tectonic stress regime on the magnitude distribution of induced seismicity events related to hydraulic fracturing. J Petrol Sci Eng 182:106284

2. Anderson EM (1951) The dynamics of faulting and dyke formation with applications to Britain. Oliver and Boyd, Edinburgh

3. Ayaka A, Tae WK, Roland NH (2021) Laboratory hydraulic stimulation experiments to investigate the interaction between newly formed and preexisting fractures. Int J Rock Mech Min Sci 141:104665

4. Bungerap AP, Zhang X, Jeffrey RG (2011) Parameters affecting the interaction among closely spaced hydraulic fracturing. In: SPE hydraulic fracturing technology conference. Society of petroleum engineers, the Woodlands, Texas, USA

5. Castillo DA, Zoback MD (1994) Systematic variations in stress state in the southern San Joaquin valley; inferences based on well-bore data and contemporary seismicity. AAPG Bull 78(8):1257–1275

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