2026

  • Gaucher, E., Lengliné, O., Schmittbuhl, J. 2026. Seismic interplay during the GRT‑1 stimulation series of the Rittershoffen EGS reservoir. Front. Earth Sci., 14, 1738377,  10.3389/feart.2026.1738377
  • De Barros, L., & Marsan, D. 2026. Theoretical Maximum and Cumulative Seismic Moment Relationships Confirm that Injection Volume Controls the Occurrence Rate, But Not the Magnitude, of Induced Earthquakes. Geophys. Res. Lett., 53, e2025GL117164. https://doi.org/10.1029/2025GL117164

2025

  • Linxuan, L., Avouac, JP.,2025. Distinguishing Tapered and Non-Tapered Gutenberg-Richter Distributions 
    ESS Open Archive, 10.22541/essoar.173655679.95586432/v1  

    Episodes used: [SSFS1993, SSFS2000, SSFS2004]                                                                                                                                        

  • Javani, D., Schmittbuhl, J.,Cornet, F.,2025. Pressure propagation during hydraulic stimulation: case study of the 2000 stimulation at Soultz-sous-Forêts Geotherm Energy 13, 11, 10.1186/s40517-025-00333-w

    Episodes used: [SSFS2000]

  • Michas, G.,2025. Spatiotemporal Diffusion Variability of Injection-Induced Seismicity in Enhanced Geothermal Systems Pure Appl. Geophys. 182, 405–417, 10.1007/s00024-025-03680-8

    Episodes used: [SSFS1993]

  • Wang, Z., Lengliné, O., Schmittbuhl, J., 2025 .Post‑Injection Seismic Decay Dynamics at Geothermal Sites: Insights from Wellhead Pressure and Hydraulic Energy EGU General Assembly Conference Abstracts, 27, 6627, 10.5194/egusphere‑egu25‑6627
  • Cuvier, A., Maury, J., Aochi, H., Breuillard, H. 2026. Forecasting Fluid‑Induced Seismicity Using Machine Learning Time‑Series Prediction. Seismol. Res. Lett., 97(3), 1853–1866. https://doi.org/10.1785/0220250210

    Episodes used: [SSFS2005]    

  • Minetto, R., Lengliné, O., Turlure, M., Grunberg, M., Lambotte, S., Schlupp, A., Vergne, J., Derode, B.,  Schmittbuhl, J. 2025. Monitoring‑Induced Seismicity in Urban Environment Using Low‑Cost Stations: Lessons Learned from the Strasbourg Dense Semipermanent Seismic Network, France. Seismol. Res. Lett., 97. https://doi.org/10.1785/0220250248
  • Minetto, R., Lengliné, O., Schmittbuhl, J. 2026. B‑Value Evolution During the Strasbourg 2018–2022 Sequence of Induced Earthquakes. J. Geophys. Res. Solid Earth, 131, e2025JB031744. https://doi.org/10.1029/2025JB031744
  • Kim, T., Im, K., Avouac, J.-P. 2025. Finite Size Effects on Seismicity Induced by Fluid Injection in a Discrete Fault Network With Rate‑and‑State Friction. J. Geophys. Res. Solid Earth, 130, e2024JB030243. https://doi.org/10.1029/2024JB030243

2024

  • Drif, K., Lengliné, J., Kinscher, J., and Schmittbuhl, J., 2024. Induced Seismicity Controlled by Injected Hydraulic Energy: The Case Study of the EGS Soultz-Sous-Forêts Site.
    Journal of Geophysical Research: Solid Earth,10.1029/2023JB028190
    Episodes used: SSFS1993, SSFS1995, SSFS1996, SSFS2000, SSFS2003, SSFS2004, SSFS2005, SSFS2010
  • Danré, P., Garagash, D., De Barros, L., Cappa, F., Ampuero, J., 2024. Control of Seismicity Migration in Earthquake Swarms by Injected Fluid Volume and Aseismic Crack Propagation. Journal of Geophysical Research: Solid Earth
    10.1029/2023JB027276
    Episodes used: SSFS1993
  • Mignan, A., Rinaldi, A., Lanza, F., Wiemer, S., 2024. A Multi-LASSO model to forecast induced seismicity at enhanced geothermal systems
    Geoenergy Science and Engineering, 10.1016/j.geoen.2024.212746
    Episodes used: SSFS1993, SSFS2000, SSFS2003, SSFS2004
  • Romanski, P., J. Mendecki, M., Stan-Kłeczek, I., 2024. The First Application of Amr Approach to Non-Mining Induced Seismicity: A Case Study from Water Injection Boreholes and Water Reservoirs  SSRN, 10.2139/ssrn.4972111 Episodes used: SSFS1988, SSFS2003, SSFS2004

2023

  • Fiori, R., Vergne, J., Schmittbuhl, J., and Zigone, D., 2023. Monitoring induced microseismicity in an urban context using very small seismic arrays: The case study of the Vendenheim EGS project. 
    GEOPHYSICS 88/5, WB71-WB87. 10.1190/geo2022-0620.1
  • Grigoratos, I., Kwiatek, G., and Wiemer, S., 2023. Dynamic forecasting of the next largest earthquake during hydraulic fracturing stimulations 
    EGU General Assembly 2023, Vienna, Austria, 24–28 Apr 2023, EGU23-15041, 10.5194/egusphere-egu23-15041 
    Episodes used: SSFS1993
  • O. Lengliné, J. Schmittbuhl, K. Drif, S. Lambotte, M. Grunberg, J. Kinscher, C. Sira, A. Schlupp, M. Schaming, H. Jund, F. Masson, 2023.The largest induced earthquakes during the GEOVEN deep geothermal project, Strasbourg, 2018–2022: from source parameters to intensity maps 
    Geophysical Journal International, ggad255, 10.1093/gji/ggad255 
    Episodes used: VDHD
  • A. Mehrabifard, E. Eberhardt, 2023 Reliability of earthquake-size distribution and stress regime relationships for fluid-injection-induced seismicity, Geoenergy Science and Engineering, Volume 226, 2023, 211776. 
    10.1016/j.geoen.2023.211776 
    Episodes used: SSFS1993, SSFS2000, SSFS2003, SSFS2004, SSFS2005
  • Sáez, A., Lecampion, B., 2023. Post-injection aseismic slip as a mechanism for the delayed triggering of seismicity, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 20220810, 479, 2273 https://doi.org/10.1098/rspa.2022.0810 
    Episodes used: SSFS1993

 

2022

  • Danré, P., De Barros, L., Cappa, F., 2022. Inferring fluid volume during earthquake swarms using seismic catalogs 
    Geophysical Journal International, ggac345. 10.1093/gji/ggac345 
    Episode used: SSFS1996, SSFS1993, SSFS2000, SSFS2003
  • Danré, P., De Barros, L., Cappa, F, J.P. Ampuero.,2022. Fluid-induced anthropogenic and natural earthquake swarms driven by aseismic slip 
    ESS Open Archive https://doi.org/10.1002/essoar.10509508.3 
    Episode used: SSFS1993, SSFS1996, SSFS2000
  • Danré, P., De Barros,L., Cappa, F., Ampuero, J.-P., 2022. Prevalence of Aseismic Slip Linking Fluid Injection to Natural and Anthropogenic Seismic Swarms, Journal of Geophysical Research: Solid Earth, 127, e2022JB025571. https://doi.org/10.1029/2022JB025571
  • Feng, Y., Mignan, A.,Sornette, D., Gao, K., 2022 Investigating Injection Pressure as a Predictor to Enhance Real‐Time Forecasting of Fluid‐Induced Seismicity: A Bayesian Model Comparison, Seismological Research Letters. 10.1785/0220220309

 

2021

  • Alexandrov, D., Eisner, L., bin Waheed, U. and Cornet, F.H., 2021. Full-stress inversion from focal mechanisms and borehole data at Soultz-sous-Forêts
    SEG Technical Program Expanded Abstracts : 1996-2000. 10.1190/segam2021-3583329.1
    Episode used: SSFS2000
  • Alexandrov, D. (Seismik s.r.o.), co-authored by L. Eisner, F. H. Cornet, and Umair bin Waheed, 2021. Full stress inversion from microseismic data and borehole constraints, Séminaire de la faculté de mathématiques et de physique, Prague, 2021-04-16 http://geo.mff.cuni.cz/seminarSeis.htm
    Episode used: SSFS2000
  • De Barros, L., Wynants-Morel, N., Cappa, F., Danré, Ph., 2021. Migration of fluid-induced seismicity reveals the seismogenic state of faults,
    Journal of Geophysical Research : Solid Earth, American Geophysical Union, , 126 (11), pp.e2021JB022767. 10.1029/2021JB022767
    Episode used: SSFS1993,SSFS1995,SSFS1996,SSFS2000,SSFS2003
  • Danre, P., AGU Advances, submitted
  • Drif, K., Lengliné, O., Kinscher, J., and Schmittbuhl, J., 2021. Energy analysis of microseismicity induced by fluid-injection in the Soultz-sous-Forêts geothermal reservoir. Poster at EGW2021.
    Episode used: SSFS1993, SSFS1995, SSFS1996, SSFS2000, SSFS2003, SSFS2004, SSFS2005
  • Haagenson, R., Rajaram, H., 2021. Seismic diffusivity and the influence of heterogeneity on injection-induced seismicity, Journal of Geophysical Research: Solid Earth, 126, e2021JB021768. 10.1029/2021JB021768
    Episode used: SSFS2000, TCS-AH
  • Javani, D., Schmittbuhl, J, Cornet, F., 2021. Hydro-Mechanical Modeling of the Year 2000 Hydraulic Stimulation of GPK2 Well, Soultz-sous-Forêts, France
    EGU General Assembly 2021, online, 19–30 Apr 2021, EGU21-15088
    10.5194/egusphere-egu21-15088
    Episode used: SSFS2000
  • Maury, J. and Aochi, H., 2021. Comparison of the seismicity evolution during the 2000 and 2003 stimulations at Soultz-sous-Forêts.
    EGU General Assembly 2021, online, 19–30 Apr 2021, EGU21-8864, 10.5194/egusphere-egu21-8864.
    Episode used: SSFS2000, SSFS2003
  • Mignan, 2021 - Induced seismicity completeness analysis for improved data mining. Frontiers in Earth Sciences, Advances in Monitoring, Modeling and Managing Induced Seismicity. 10.3389/feart.2021.635193
    Episode used: SSFS1993, SSFS2000, SSFS2003, SSFS2004, SSFS2005
  • Węglińska, E. and Andrzej Leśniak, A., 2021 - Induced Seismicity and Detailed Fracture Mapping as Tools for Evaluating HDR Reservoir Volume. Energies 2021, 14, 2593.10.3390/en14092593 
    Episode used: SSFS1993

2020

  • Bentz, S., Kwiatek, G., Martínez-Garzón, P., Bohnhoff, M., & Dresen, G. (2020). Seismic moment evolution during hydraulic stimulations. 
    Geophysical Research Letters, 47, e2019GL086185. 10.1029/2019GL086185 
    Episode used: SSFS1993, SSFS2000, SSFS2003
  • Bentz, S., Kwiatek, G., Martínez-Garzón, P., Bohnhoff, M., Dresen, G. (2020) Seismic moment and injection efficiency evolution during Enhanced Geothermal System (EGS) projects. GFZ Data Services. 10.5880/GFZ.4.2.2020.001 

    Episode used: SSFS1993, SSFS2000, SSFS2003

  • Cauchie, L., Lengliné, O., Schmittbuhl, J., 2020. Seismic asperity size evolution during fluid injection: case study of the 1993 Soultz-sous-Forêts injection, Geophysical Journal International, Volume 221, Issue 2, May 2020, Pages 968–980, 10.1093/gji/ggaa051 
    Episode used: SSFS1993
  • Koepke, R., Gaucher, E., Kohl, T., 2020. Pseudo-probabilistic identification of fracture network in seismic clouds driven by source parameters. 
    Geophysical Journal International, Volume 223, Issue 3, December 2020, Pages 2066–2084, 10.1093/gji/ggaa441 
    Episode used: SSFS2000

2019

  • Ben Rhouma, S, 2019. Modélisation statistique de la sismicité induite 
    Rapport de stage M2, BRGM. 
    Episode used: SSFS1993, SSFS2000