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Hydraulic fracturing volume is associated with induced earthquake productivity in the Duvernay play
Science ( IF 56.9 ) Pub Date : 2018-01-18 , DOI: 10.1126/science.aao0159
R. Schultz 1 , G. Atkinson 2 , D. W. Eaton 3 , Y. J. Gu 4 , H. Kao 5
Affiliation  

Seismicity curbed by lowering volume Determining why hydraulic fracturing (also known as fracking) triggered earthquakes in the Duvernay Formation in Canada is important for future hazard mitigation. Schultz et al. found that injection volume was the key operational parameter correlated with induced earthquakes in the Duvernay. However, geological factors also played a considerable role in determining whether a large injection volume would trigger earthquakes. These findings provide a framework that may lead to better forecasting of induced seismicity. Science, this issue p. 304 Induced seismicity from hydrofracturing in Canada is related to the well fluid injection volumes. A sharp increase in the frequency of earthquakes near Fox Creek, Alberta, began in December 2013 in response to hydraulic fracturing. Using a hydraulic fracturing database, we explore relationships between injection parameters and seismicity response. We show that induced earthquakes are associated with completions that used larger injection volumes (104 to 105 cubic meters) and that seismic productivity scales linearly with injection volume. Injection pressure and rate have an insignificant association with seismic response. Further findings suggest that geological factors play a prominent role in seismic productivity, as evidenced by spatial correlations. Together, volume and geological factors account for ~96% of the variability in the induced earthquake rate near Fox Creek. This result is quantified by a seismogenic index–modified frequency-magnitude distribution, providing a framework to forecast induced seismicity.

中文翻译:

水力压裂量与 Duvernay 区的诱发地震生产力相关

通过降低体积来遏制地震 确定为什么水力压裂(也称为水力压裂)在加拿大 Duvernay 地层引发地震对于未来减轻灾害很重要。舒尔茨等人。发现注入量是与 Duvernay 诱发地震相关的关键操作参数。然而,地质因素在决定大注入量是否会引发地震方面也发挥了相当大的作用。这些发现提供了一个框架,可以更好地预测诱发地震活动。科学,这个问题 p。304 加拿大水力压裂诱发的地震活动与井液注入量有关。2013 年 12 月,由于水力压裂,阿尔伯塔省 Fox Creek 附近的地震频率急剧增加。使用水力压裂数据库,我们探索注入参数和地震活动响应之间的关系。我们表明诱发地震与使用较大注入量(104 至 105 立方米)的完井有关,并且地震生产力与注入量呈线性关系。注入压力和注入速度与地震反应无关。进一步的研究结果表明,地质因素在地震生产力中起着重要作用,空间相关性证明了这一点。体积和地质因素一起占 Fox Creek 附近诱发地震率变化的约 96%。这一结果通过一个经地震发生指数修正的频率-震级分布进行量化,为预测诱发地震活动提供了一个框架。我们表明诱发地震与使用较大注入量(104 至 105 立方米)的完井有关,并且地震生产力与注入量呈线性关系。注入压力和注入速度与地震反应无关。进一步的研究结果表明,地质因素在地震生产力中起着重要作用,空间相关性证明了这一点。体积和地质因素一起占 Fox Creek 附近诱发地震率变化的约 96%。这一结果通过一个经地震发生指数修正的频率-震级分布进行量化,为预测诱发地震活动提供了一个框架。我们表明诱发地震与使用较大注入量(104 至 105 立方米)的完井有关,并且地震生产力与注入量呈线性关系。注入压力和注入速度与地震反应无关。进一步的研究结果表明,地质因素在地震生产力中起着重要作用,空间相关性证明了这一点。体积和地质因素一起占 Fox Creek 附近诱发地震率变化的约 96%。这一结果通过一个经地震发生指数修正的频率-震级分布进行量化,为预测诱发地震活动提供了一个框架。注入压力和注入速度与地震反应无关。进一步的研究结果表明,地质因素在地震生产力中起着重要作用,空间相关性证明了这一点。体积和地质因素一起占 Fox Creek 附近诱发地震率变化的约 96%。这一结果通过一个经地震发生指数修正的频率-震级分布进行量化,为预测诱发地震活动提供了一个框架。注入压力和注入速度与地震反应无关。进一步的研究结果表明,地质因素在地震生产力中起着重要作用,空间相关性证明了这一点。体积和地质因素一起占 Fox Creek 附近诱发地震率变化的约 96%。这一结果通过一个经地震发生指数修正的频率-震级分布进行量化,为预测诱发地震活动提供了一个框架。
更新日期:2018-01-18
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