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4-D seismic monitoring of injected CO2 enhances geological interpretation, reservoir simulation, and production operations

机译:注射二氧化碳的4-D地震监测增强了地质解释,水库模拟和生产作业

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Time-lapse (4-D) seismic analysis in Denbury Onshore LLC's Bell Creek Field, currently undergoing CO2 injection for enhanced oil recovery and associated CO2 storage, has illuminated a shale-Filled permeability barrier and delineated local hydraulic connectivity between two development phases. From a CO2 storage perspective, the MVA program has benefitted through improvement to interpretation of 3-D seismic data, increased visibility of injected CO2, and identification of preferential fluid flow. Such efforts resulted in better history matching of dynamic models and increased accuracy of resulting predictive simulations. These knowledge gains may be used to ensure safe and secure storage at future CCUS projects.
机译:延时(4-D)丹伯里陆上LLC的贝尔溪场的地震分析,目前正在进行二氧化碳注射液,用于增强的采油和相关的二氧化碳储存,在两个发育阶段之间发出了页岩填充的渗透性屏障和划定了局部液压连通性。从CO2储存角度来看,MVA程序通过改善了对3-D地震数据的解释,增加了注射二氧化碳的可见度,以及鉴定优先流体流动的鉴定。这种努力导致动态模型更好的历史匹配,并提高了导致预测模拟的准确性。这些知识增益可用于确保在未来的CCU项目中安全和安全的存储空间。

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