Reservoir creep and induced seismicity: inferences from geomechanical modeling of gas depletion in the Groningen field

被引:36
作者
van Wees, Jan-Diederik [1 ,2 ]
Osinga, Sander [1 ]
Van Thienen-Visser, Karin [1 ]
Fokker, Peter A. [1 ,2 ]
机构
[1] TNO, Energy Div, POB 80015, NL-3508 TA Utrecht, Netherlands
[2] Univ Utrecht, Dept Geosci, Budapestlaan 4, NL-3584 CD Utrecht, Netherlands
关键词
Geomechanics; Induced seismicity; FAULT REACTIVATION; INDUCED COMPACTION; FLUID EXTRACTION; STRESS CHANGE; DEFORMATION; NETHERLANDS; EARTHQUAKE; SANDSTONE; INJECTION; STATE;
D O I
10.1093/gji/ggx452
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The Groningen gas field in the Netherlands experienced an immediate reduction in seismic events in the year following a massive cut in production. This reduction is inconsistent with existing models of seismicity predictions adopting compaction strains as proxy, since reservoir creep would then result in a more gradual reduction of seismic events after a production stop. We argue that the discontinuity in seismic response relates to a physical discontinuity in stress loading rate on faults upon the arrest of pressure change. The stresses originate from a combination of the direct poroelastic effect through the pressure changes and the delayed effect of ongoing compaction after cessation of reservoir production. Both mechanisms need to be taken into account. To this end, we employed finite-element models in a workflow that couples Kelvin-Chain reservoir creep with a semi-analytical approach for the solution of slip and seismic moment from the predicted stress change. For ratios of final creep and elastic compaction up to 5, the model predicts that the cumulative seismic moment evolution after a production stop is subject to a very moderate increase, 2-10 times less than the values predicted by the alternative approaches using reservoir compaction strain as proxy. This is in agreement with the low seismicity in the central area of the Groningen field immediately after reduction in production. The geomechanical model findings support scope for mitigating induced seismicity through adjusting rates of pressure change by cutting down production.
引用
收藏
页码:1487 / 1497
页数:11
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