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Microseismic Monitoring of CO2 Injection at the Penn West Enhanced Oil Recovery Pilot Project Canada: Implications for Detection of Wellbore Leakage

机译:加拿大Penn West强化采油试点项目中二氧化碳注入的微震监测:对检测井眼渗漏的影响

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摘要

A passive seismic monitoring campaign was carried out in the frame of a CO2-Enhanced Oil Recovery (EOR) pilot project in Alberta, Canada. Our analysis focuses on a two-week period during which prominent downhole pressure fluctuations in the reservoir were accompanied by a leakage of CO2 and CH4 along the monitoring well equipped with an array of short-period borehole geophones. We applied state of the art seismological processing schemes to the continuous seismic waveform recordings. During the analyzed time period we did not find evidence of induced micro-seismicity associated with CO2 injection. Instead, we identified signals related to the leakage of CO2 and CH4, in that seven out of the eight geophones show a clearly elevated noise level framing the onset time of leakage along the monitoring well. Our results confirm that micro-seismic monitoring of reservoir treatment can contribute towards improved reservoir monitoring and leakage detection.
机译:在加拿大艾伯塔省的CO2强化采油(EOR)试点项目框架内,开展了被动地震监测活动。我们的分析集中在两周的时间段内,在此期间,储层中显着的井下压力波动伴随着CO2和CH4沿配有一系列短周期钻孔检波器的监测井泄漏。我们将最新的地震处理方案应用于连续地震波形记录。在分析的时间段内,我们没有发现与注入二氧化碳有关的诱发微震的证据。相反,我们确定了与CO2和CH4泄漏有关的信号,因为八台地震检波器中有七台显示出明显升高的噪声水平,构成了沿监测井泄漏的开始时间。我们的结果证实,储层处理的微地震监测可以有助于改善储层监测和泄漏检测。

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