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Data Publication

Hazard and Risk Assessment tool for the Groningen Gas Field, the Netherlands [updated]

Bourne, Stephen J. | Oates, Steve J.

YoDa Data Repository, Utrecht University, Netherlands

(2023)

In October 2012, NAM (Nederlandse Aardolie Maatschappij BV) commenced with the study and data acquisition research program for induced seismicity in the Groningen gas field, North Netherlands. One of the aims of this program was to prepare a probabilistic seismic hazard and risk assessment (HRA) for the full area affected by the earthquakes induced by gas production from the Groningen gas field. To this end, a code was developed in C software, to calculate hazard and risk metrics. The tool uses the Monte Carlo approach, which was thought to be the most flexible approach allowing in the future potentially very complex computations to be incorporated in the tool and a large range of potential risk metrics to be evaluated. A drawback of the Monte Carlo approach is the high required computing time and large memory requirement. For optimal performance, the authors suggest to run the HRA-code on a mainframe computer. Post-processing suites are implemented and provided in Python. NAM is now making these codes openly available through the Dutch research infrastructure EPOS-NL. The model version that is made available is the model used by NAM for their last hazard and risk assessment in March 2020, with an update of the calibration of the seismicity model performed early 2023. Comprehensive documentation on model use is also provided. The present code was co-developed by a large team of programmers at Alten Netherlands. Corresponding author: Jan van Elk (jan.van-elk@shell.com). There is an updated version of this data package been published. You can find it here; https://doi.org/10.24416/UU01-Z58L9K

Keywords


Originally assigned keywords
Natural Sciences Earth and related environmental sciences 15
Groningen gas field
gas field
antropogenic setting
induced seismicity
earthquake
HRA
SHRA
Hazard and Risk Assessment
Seismic Hazard and Risk Assessment
Monte Carlo
Python
EPOSNL
EPOS MultiScale Laboratories

Corresponding MSL vocabulary keywords
gas field
gas field
present-day
antropogenic setting
Induced seismicity
induced seismicity

MSL enriched keywords
antropogenic setting
gas field
subsurface energy production
hydrocarbon energy production
gas field
present-day
Induced seismicity
induced seismicity


Source publisher

YoDa Data Repository, Utrecht University, Netherlands


DOI

10.24416/UU01-2EBEXT


Authors

Bourne, Stephen J.

Nederlandse Aardolie Maatschappij ;

Oates, Steve J.

Royal Dutch Shell ;


Contributers

van Elk, Jan

Supervisor

Nederlandse Aardolie Maatschappij ;


References

Bourne, S. J., Oates, S. J., Bommer, J. J., Dost, B., van Elk, J., & Doornhof, D. (2015). A Monte Carlo Method for Probabilistic Hazard Assessment of Induced Seismicity due to Conventional Natural Gas Production. Bulletin of the Seismological Society of America, 105(3), 1721–1738. https://doi.org/10.1785/0120140302

10.1785/0120140302

References


Citiation

Bourne, S. J., & Oates, S. J. (2023). Hazard and Risk Assessment tool for the Groningen Gas Field, the Netherlands [updated] (Version 1.0) [Data set]. Utrecht University. https://doi.org/10.24416/UU01-2EBEXT


Collection Period

2012-01-10 - 2023-01-01


Geo location(s)

Groningen gas field, the Netherlands