地质学
饱和(图论)
羽流
地面重力
算法
计算机科学
物理
气象学
数学
组合数学
天体物理学
星星
作者
Maurizio Milano,Maurizio Fedi
标识
DOI:10.1109/tgrs.2023.3330778
摘要
This study regards the assessment of surface gravity surveying for CO 2 plume monitoring in the deep Johansen saline aquifer, a potential offshore site for CO 2 geologic storage. We used the available benchmark model and geological information to simulate the injection and post-injection phases. We calculated the gravity response at surface from the estimated models of reservoir density and saturation at different time intervals and for different injection rates. The forward calculation is achieved by assuming a tetrahedral mesh discretization such as to ensure an accurate and detailed reconstruction of the complex reservoir. The results show a gravity anomaly extending radially around the well position and reaching a peak of about -15 μGal for an injection rate of 60 kg/s. During the post-injection period, the gravity maps clearly show an increase in brine saturation around the injection well and the migration of the CO 2 plume toward shallower portions of the reservoir. We also show that time lapse gravity data can be used to successfully estimate the CO 2 stored mass by means of DEXP multiscale analysis, even when the anomaly is incompletely defined due to a not proper areal coverage of the survey. The DEXP method has proven to be very stable with respect to noise and to be an efficient technique for simultaneously determine the CO 2 plume depth, its geometrical features and stored mass.
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