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127 related items for PubMed ID: 38910402
21. Numerical investigation of the effect of fluid pressurization rate on laboratory-scale injection-induced fault slip. Hutka GA, Cacace M, Hofmann H, Zang A, Wang L, Ji Y. Sci Rep; 2023 Mar 17; 13(1):4437. PubMed ID: 36932087 [Abstract] [Full Text] [Related]
22. A process-based approach to understanding and managing triggered seismicity. Hager BH, Dieterich J, Frohlich C, Juanes R, Mantica S, Shaw JH, Bottazzi F, Caresani F, Castineira D, Cominelli A, Meda M, Osculati L, Petroselli S, Plesch A. Nature; 2021 Jul 17; 595(7869):684-689. PubMed ID: 34321668 [Abstract] [Full Text] [Related]
23. The injection-production performance of an enhanced geothermal system considering fracture network complexity and thermo-hydro-mechanical coupling in numerical simulations. Lei Z, Zhang Y, Cui Q, Shi Y. Sci Rep; 2023 Sep 04; 13(1):14558. PubMed ID: 37666927 [Abstract] [Full Text] [Related]
25. Stress transfer outpaces injection-induced aseismic slip and triggers seismicity. Yang Y, Yang H, Zi J. Sci Rep; 2023 Oct 03; 13(1):16626. PubMed ID: 37789091 [Abstract] [Full Text] [Related]
27. Interaction of natural and hydraulic fractures: the impact on reservoir pressure buildup and risk of shear fault reactivation in the Upper Devonian Duvernay Formation, Fox Creek, Alberta. Li Q, Konstantinovskaya E, Zhmodik A, Ibelegbu C. Geomech Geophys Geo Energy Ge Resour; 2023 Oct 03; 9(1):21. PubMed ID: 36875936 [Abstract] [Full Text] [Related]
28. Induced seismicity closed-form traffic light system for actuarial decision-making during deep fluid injections. Mignan A, Broccardo M, Wiemer S, Giardini D. Sci Rep; 2017 Oct 19; 7(1):13607. PubMed ID: 29051528 [Abstract] [Full Text] [Related]
30. The risks of long-term re-injection in supercritical geothermal systems. Parisio F, Vilarrasa V, Wang W, Kolditz O, Nagel T. Nat Commun; 2019 Sep 26; 10(1):4391. PubMed ID: 31558715 [Abstract] [Full Text] [Related]
31. Analytical Solution to Assess the Induced Seismicity Potential of Faults in Pressurized and Depleted Reservoirs. Wu H, Vilarrasa V, De Simone S, Saaltink M, Parisio F. J Geophys Res Solid Earth; 2021 Jan 26; 126(1):e2020JB020436. PubMed ID: 35860610 [Abstract] [Full Text] [Related]
34. Relaxation damage control via fatigue-hydraulic fracturing in granitic rock as inferred from laboratory-, mine-, and field-scale experiments. Zang A, Zimmermann G, Hofmann H, Niemz P, Kim KY, Diaz M, Zhuang L, Yoon JS. Sci Rep; 2021 Mar 24; 11(1):6780. PubMed ID: 33762643 [Abstract] [Full Text] [Related]
35. Permeability-controlled migration of induced seismicity to deeper depths near Venus in North Texas. Chang KW, Yoon H. Sci Rep; 2022 Jan 26; 12(1):1382. PubMed ID: 35082325 [Abstract] [Full Text] [Related]
36. Operational and geological controls of coupled poroelastic stressing and pore-pressure accumulation along faults: Induced earthquakes in Pohang, South Korea. Chang KW, Yoon H, Kim Y, Lee MY. Sci Rep; 2020 Feb 07; 10(1):2073. PubMed ID: 32034215 [Abstract] [Full Text] [Related]
37. The surge of earthquakes in Central Oklahoma has features of reservoir-induced seismicity. Johann L, Shapiro SA, Dinske C. Sci Rep; 2018 Jul 31; 8(1):11505. PubMed ID: 30065351 [Abstract] [Full Text] [Related]
38. Interdependent effects of fluid injection parameters on triggered aseismic slip and seismicity. Mandal R, Lui SKY. Sci Rep; 2022 Dec 03; 12(1):20922. PubMed ID: 36463387 [Abstract] [Full Text] [Related]
39. Hydromechanical impact of basement rock on injection-induced seismicity in Illinois Basin. Bondarenko N, Podladchikov Y, Makhnenko R. Sci Rep; 2022 Sep 19; 12(1):15639. PubMed ID: 36123524 [Abstract] [Full Text] [Related]
40. Mitigating risks from hydraulic fracturing-induced seismicity in unconventional reservoirs: case study. Hui G, Chen Z, Wang P, Gu F, Kong X, Zhang W. Sci Rep; 2022 Jul 22; 12(1):12537. PubMed ID: 35869135 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]