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本文引用的文献

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Fault activation by hydraulic fracturing in western Canada.水力压裂引发的断层活动:加拿大西部实例研究
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2
INDUCED SEISMICITY. High-rate injection is associated with the increase in U.S. mid-continent seismicity.诱发地震。高速注入与美国中大陆地震活动的增加有关。
Science. 2015 Jun 19;348(6241):1336-40. doi: 10.1126/science.aab1345.
3
Geophysics. Coping with earthquakes induced by fluid injection.地球物理学。应对流体注入引发的地震。
Science. 2015 Feb 20;347(6224):830-1. doi: 10.1126/science.aaa0494.
4
Injection-induced earthquakes.注射诱发地震。
Science. 2013 Jul 12;341(6142):1225942. doi: 10.1126/science.1225942.
5
Hydrogeologic controls on induced seismicity in crystalline basement rocks due to fluid injection into basal reservoirs.由于向基底储层注入流体而导致结晶基底岩石中诱发地震的水文地质控制。
Ground Water. 2013 Jul-Aug;51(4):525-38. doi: 10.1111/gwat.12071. Epub 2013 Jun 7.
6
Variations in earthquake-size distribution across different stress regimes.不同应力状态下地震规模分布的变化。
Nature. 2005 Sep 22;437(7058):539-42. doi: 10.1038/nature04094.

近断层的成熟度影响水力压裂的地震危险性。

Maturity of nearby faults influences seismic hazard from hydraulic fracturing.

机构信息

Department of Geology and Environmental Earth Science, Miami University, Oxford, OH 45056;

Department of Geology and Environmental Earth Science, Miami University, Oxford, OH 45056.

出版信息

Proc Natl Acad Sci U S A. 2018 Feb 20;115(8):E1720-E1729. doi: 10.1073/pnas.1715284115. Epub 2018 Feb 5.

DOI:10.1073/pnas.1715284115
PMID:29432169
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5828597/
Abstract

Understanding the causes of human-induced earthquakes is paramount to reducing societal risk. We investigated five cases of seismicity associated with hydraulic fracturing (HF) in Ohio since 2013 that, because of their isolation from other injection activities, provide an ideal setting for studying the relations between high-pressure injection and earthquakes. Our analysis revealed two distinct groups: () deeper earthquakes in the Precambrian basement, with larger magnitudes (M > 2), b-values < 1, and many post-shut-in earthquakes, versus () shallower earthquakes in Paleozoic rocks ∼400 m below HF, with smaller magnitudes (M < 1), b-values > 1.5, and few post-shut-in earthquakes. Based on geologic history, laboratory experiments, and fault modeling, we interpret the deep seismicity as slip on more mature faults in older crystalline rocks and the shallow seismicity as slip on immature faults in younger sedimentary rocks. This suggests that HF inducing deeper seismicity may pose higher seismic hazards. Wells inducing deeper seismicity produced more water than wells with shallow seismicity, indicating more extensive hydrologic connections outside the target formation, consistent with pore pressure diffusion influencing seismicity. However, for both groups, the 2 to 3 h between onset of HF and seismicity is too short for typical fluid pressure diffusion rates across distances of ∼1 km and argues for poroelastic stress transfer also having a primary influence on seismicity.

摘要

了解人类诱发地震的原因对于降低社会风险至关重要。我们调查了 2013 年以来俄亥俄州与水力压裂(HF)相关的五次地震活动,由于它们与其他注入活动隔离,因此为研究高压注入与地震之间的关系提供了理想的环境。我们的分析揭示了两个不同的群体:(i)前寒武纪基底中较深的地震,具有较大的震级(M>2)、b 值<1 和许多停注后的地震,与(ii)HF 下方古生代岩石中较浅的地震,震级较小(M<1)、b 值>1.5 和很少有停注后的地震。根据地质历史、实验室实验和断层模型,我们将深部地震活动解释为较老的结晶岩石中更成熟断层的滑动,而浅层地震活动则为年轻沉积岩中不成熟断层的滑动。这表明 HF 诱发深部地震活动可能会带来更高的地震灾害风险。诱发深部地震活动的井比诱发浅层地震活动的井产生了更多的水,这表明在目标地层之外存在更广泛的水文联系,这与孔隙压力扩散影响地震活动的观点一致。然而,对于这两个群体,HF 开始与地震活动之间的 2 到 3 小时时间太短,无法达到典型的流体压力在距离约 1 公里的范围内扩散的速率,这表明孔隙弹性应力传递也对地震活动有主要影响。