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FASTER

  • Overview

Novel unconventional geothermal technologies that require hydraulic stimulation through induced seismicity, also require Forecasting and Assessing Seismicity and Thermal Evolution in geothermal Reservoirs (FASTER). This task needs to be performed in real time and both regulators and operators wish to know the probability of a future undesired large induced event in time for risk mitigation measurements to be employed.

Fundamental and applied research with the ultimate goal to develop strategies and tools for managing and limiting induced seismicity is a major international focus of current research in geophysics and reservoir engineering. Moreover, predictive assessment of seismic risk in near‐real time is considered the most crucial aspect for proactive operational management of stimulation, exploitation or storage to minimize risk, avoid unacceptable seismic hazard and enhance the societal acceptance.

In the FASTER project, the software framework that is currently used by SED for fundamental research on seismic risk predictions and it performs complicated 3D Monte Carlo simulations is improved, extended, and adapted to current and upcoming generations of supercomputers. The software is customized to the needs of the Adaptive Traffic Light Systems through  accelerated algorithms, numerical solvers, probabilistic models and  Monte Carlo integrations, and computational bottlenecks due to coding are resolved.

Project Leader at SED

Dr. Dimitrios Karvounis

SED Project Members

Stefan Wiemer

Funding Source

PASC

Duration

10.2017-09.2020

Keywords

Earthquake Hazard & Risk, Real-time monitoring, Enhanced Geothermal Systems

Research Field

Induced Seismicity, Software Development, Probabilistic Methods, Code Optimization

Swiss Seismological Service
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CH-8092 Zurich
Phone SED secretariat
+41 44 633 21 79 (during office hours)

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