Several of the Utah FORGE team members attend the 2018 American Geophysical Union Meeting (AGU) in...

Injection of fluid into the subsurface is a common operation in many industrial applications, such as wastewater disposal, hydraulic fracturing and deep geothermal energy exploitation. One of the drawbacks of these engineering applications is the generation of seismicity that in some severe cases might lead to a complete shutdown of operations.
The injection scenario, either in terms of pressure or volumetric rate, is one of the key controlling parameters for fluid induced seismicity. Numerous studies on the effects of injection parameters on earthquakes nucleation and occurrence along faults have been carried out. Most of them, however, assume idealized injection scenarios such as constant fluid over-pressure or constant injection volumetric rate.
In this contribution, we investigate extensively the effect of a finite ramp-up of injection rate, commonly present in many realistic injection protocols, on slip stability along a planar frictional weakening fault under plane-strain conditions (see Figure). We solve the coupled hydro-mechanical problem and investigate all the slip development regimes in the problem parametric space, including stable a-seismic slip, nucleation of a finite size dynamic event and nucleation of a run-way dynamic rupture.
Our results suggest that injection-induced seismicity can be mitigated by controlling the fault pressurization rate, in the limit when fluid diffusion time scale is lower than injection ramp-up time scale. Analytical derivations support our numerical results. The findings of this work can be useful for practical designing of injection operations in hydro-shearing type of stimulations.
This is the 12th forum of the series and is intended to have an open format to present modeling and simulation, both completed and planned, as well as activities being conducted by the Utah FORGE Team.
This webinar has been recorded and is available for viewing
To follow along with the slides, the pdf of the presentation is available for download HERE
For previous forums and for the upcoming schedule check out the Modeling and Simulation FORUM page
Did you know that Utah is No.3* in the United States for its production of geothermal energy? The State of Utah is responsible for 2.8 % of the national geothermal power production. The United...
The Utah FORGE project made a number of important advances in 2019 in preparation for the start of deep drilling in 2020. Instrumentation for seismic monitoring was enhanced with the drilling of two new vertical holes, 68-32 (1000’ deep) and 78-32 (3200’ depth), which...
READ ABOUT IT Two teams of undergraduate students from the University of Utah’s Department of Chemical Engineering dominated the first ever AIChE K–12 STEM Outreach Competition. The teams, advised by associate professor (lecturer) Tony Butterfield, took first and...