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Monitoring results after 36 ktonnes of deep CO2 injection at the Aquistore CO2 storage site, Saskatchewan, Canada

机译:在加拿大萨斯喀彻温省的Aquistore二氧化碳封存地点注入36吨深二氧化碳之后,监测结果

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摘要

The Aquistore CO2 Storage Site is located in southeastern Saskatchewan, Canada. CO2 is injected into a brine-filled sandstone formation at ∼3200 m depth immediately above the Precambrian basement. Sustained injection rates of 400-600 tonnes/day were achieved at the site starting in the fall of 2015 with a total of 88 ktonnes having been injected by the end of September, 2016. Seismic monitoring methods have been employed to track the subsurface CO2 plume and to record any injection-induced seismicity. Passive seismic monitoring is being conducted using two orthogonal arrays of short-period geophones, 3 broadband seismographs, and an array of downhole geophones. No significant injection-related seismicity (Mw > -1) has been detected during the first 17 months of CO2 injection. The first post-injection time-lapse 3D seismic surveys (surface and VSP) were conducted at the site in February, 2016. The VSP data were acquired with a distributed acoustic sensing system using a 2750 m casing-conveyed optical fibre cable in the observation well. 3D seismic modelling of fluid flow simulations in conjunction with seismic repeatability estimates obtained from field data indicate that the time-lapse VSP should be capable of imaging the CO2 plume after a total injection of ∼30 ktonnes. In addition, this first monitor survey tests the ability of surface seismic data acquired with a sparse permanent array to detect or image the CO2 plume after limited injection. Time-lapse logging is being conducted on a regular basis to provide in situ measurement of the change in seismic velocity associated with changes in CO2 saturation.
机译:Aquistore的二氧化碳封存地点位于加拿大萨斯喀彻温省东南部。将二氧化碳注入到前寒武纪基底上方约3200 m深度的充满盐水的砂岩地层中。从2015年秋季开始,该厂实现了持续的400-600吨/天的注入速度,到2016年9月底共注入了88吨煤。采用了地震监测方法来追踪地下CO2羽流并记录任何注入引起的地震活动。使用两个正交的短周期地震检波器,3个宽带地震仪和一个井下地震检波器进行被动地震监测。在注入CO2的前17个月内未检测到与注入有关的明显地震活动(Mw> -1)。 2016年2月在现场进行了首次注入后延时3D地震勘测(地表和VSP)。在观测中使用2750 m套管输送的光缆,通过分布式声学传感系统获取了VSP数据。好。流体流动模拟的3D地震建模以及从现场数据获得的地震可重复性估计表明,时滞VSP应该能够对总注入量约30吨后的CO2羽流成像。此外,该首次监测仪调查测试了在有限注入后用稀疏永久性阵列采集的地表地震数据检测或成像二氧化碳羽流的能力。定期进行延时记录,以提供与CO2饱和度变化相关的地震速度变化的原位测量。

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