Rise and reduction of induced earthquakes in the Groningen gas field, 1991–2018: statistical trends, social impacts, and policy change

Author:

Vlek CharlesORCID

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Geology,Pollution,Soil Science,Water Science and Technology,Environmental Chemistry,Global and Planetary Change

Reference62 articles.

1. Atkinson GM, Eaton DW, Ghofrani H, Walker D, Cheadle B, Schultz R, Shcherbakov R, Tiampo K, Gu J, Harrington RM, Liu Y, Van der Baan M, Kao H (2016) Hydraulic fracturing and seismicity in the Western Canada sedimentary basin. Seismol Res Lett 87(3):1–17

2. Baker JW (2008) An introduction to probabilistic seismic hazard analysis (PSHA). Stanford University (Cal.): Department of Civil and Environmental Engineering. https://web.stanford.edu/~bakerjw/Publications/Baker_(2008)_Intro_to_PSHA_v1_3.pdf . Accessed Mar 2018

3. Bourne SJ, Oates S (2015) An activity rate model of induced seismicity within the Groningen Field (Parts 1 and 2). Assen (NL): NAM, February & July. http://www.nam.nl/feiten-en-cijfers/onderzoeksrapporten . Accessed Nov 2018

4. Bourne SJ, Oates SJ (2017) Development of statistical geomechanical models for forecasting seismicity induced by gas production from the Groningen field. Neth J Geosci 96(5):175–182

5. Bourne SJ, Oates S, Van Elk J, Doornhof D (2014) A seismological model for earthquakes induced by fluid extraction from a subsurface reservoir. J Geophys Res Solid Earth 119:8991–9015

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