阿尔伯塔1号地热项目现场诱发地震活动的概率评估

IF 1.3 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Canadian Journal of Earth Sciences Pub Date : 2022-10-04 DOI:10.1139/cjes-2022-0070
A. Yaghoubi, M. Dusseault, Y. Leonenko, C. Hickson
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引用次数: 2

摘要

阿尔伯塔1号是一个地热项目,目标是位于加拿大阿尔伯塔省Grande Prairie南部Greenview市辖区内具有地热能源开采和注入潜力的深层碳酸盐岩、砾岩和砂岩地层。在不含蒸汽组分的地热系统中(通常在170℃以下),快速而广泛的孔隙压力变化和缓慢的温度变化导致偏应力增加,从而导致诱发地震活动。阿尔伯塔1号地热项目的一个问题是,石油、天然气和井田流体注入引起的人为地震活动在阿尔伯塔省造成了有震感的事件。因此,在这类项目开始时,谨慎地审查诱发地震活动的可能性。基于钻孔地球物理资料和区域注入地震资料,对地热流体开发潜力区乐杜组和花岗岩洗山组进行了地质力学研究。然而,在缺乏目标地层实际数据的情况下,确定地下性质(如应力状态、孔隙压力和断层性质)会带来不确定性。地质力学分析结果(含相关不确定性)用于评估注入诱发地震的可能性。利用蒙特卡罗概率分析方法对阿尔伯塔1号地热工程附近已知断层的滑动可能性进行了估计。根据局部构造应力状态和Mohr-Coulomb剪切参数分析,导出了各断裂上临界孔隙压力的累积分布函数。得到的概率断层稳定性图可以作为该地区未来流体注入项目的基准,包括废水处理、水力压裂增产、二氧化碳封存以及地热能开采。
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Probabilistic Assessment of Induced Seismicity at the Alberta No. 1 Geothermal Project Site
Alberta No.1 is a geothermal project targeting deep carbonate, conglomerates, and sandstone formations in a potential production and injection zone for geothermal energy exploitation within the Municipal District of Greenview south of Grande Prairie, Alberta, Canada. In geothermal systems without a steam fraction (typically systems under 170°C), rapid widespread pore pressure changes and slow temperature changes have led to increased deviatoric stresses, resulting in induced seismicity. A concern for the Alberta No.1 Geothermal Project is that anthropogenic seismicity from oil, gas, and well field fluid injection has created felt events in Alberta. Thus, at the beginning of this type of project, it is prudent to review the potential for induced seismicity. In this study, a geomechanical study of the Leduc and Granite Wash Formations, two potential geothermal fluid exploitation zones, has been undertaken based on borehole geophysics and regional injection-induced earthquake data. Determining subsurface properties such as state of stress, pore pressure, and fault properties, however, poses uncertainties in the absence of actual data from the target formations. Geomechanical analysis results (with associated uncertainties) are used to assess the potential for injection-induced earthquakes. A Monte Carlo probability analysis is employed to estimate the likelihood of slippage of the known faults close to the Alberta No.1 Geothermal Project. A cumulative distribution function of the critical pore pressure on each fault is derived from the local tectonic stress state and Mohr-Coulomb shear parameter analyses. The resultant probabilistic fault stability maps can serve as a baseline for future fluid injection projects in the region including wastewater disposal, hydraulic fracture stimulation, CO2 sequestration, as well as geothermal energy extraction.
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来源期刊
Canadian Journal of Earth Sciences
Canadian Journal of Earth Sciences 地学-地球科学综合
CiteScore
2.80
自引率
7.10%
发文量
66
审稿时长
6-12 weeks
期刊介绍: The Canadian Journal of Earth Sciences reports current research in climate and environmental geoscience; geoarchaeology and forensic geoscience; geochronology and geochemistry; geophysics; GIS and geomatics; hydrology; mineralogy and petrology; mining and engineering geology; ore deposits and economic geology; paleontology, petroleum geology and basin analysis; physical geography and Quaternary geoscience; planetary geoscience; sedimentology and stratigraphy; soil sciences; and structural geology and tectonics. It also publishes special issues that focus on information and studies about a particular segment of earth sciences.
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