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Illuminating the geology: Post-injection reservoir characterisation of the CO2CRC Otway site

机译:照亮地质:CO2CRC Otway网站的注射后储层表征

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Proper site characterisation is vital in the planning stages of a CO2 storage project; but we can also learn a good deal about the reservoir once the injection is underway or has been completed. During CO2CRC Otway Project Stage 2C, sources of valuable information about storage performance have been generated as a consequence of the staged injection of 15,000 t of CO2 rich gas, as well as observations from time-lapse seismic surveys and well monitoring data. Now that injection has ceased for Stage 2C, the geological model is compared against field observations for the period spanning injection and 23 months after injection ended. The post-injection reservoir characterisation has proven important to refine the static and dynamic models for future field development and added assurance about the long-term stabilisation of the CO2 plume. The south-eastern progress of plume development, as seen on the time-lapse seismic data, has led to a review of the structural interpretation and horizon-fault geometry represented in the models. The developing plume has illuminated the extent of splay faults previously unresolved on the baseline seismic data. Saturation profiles interpreted from pulsed-neutron logs at the injection and observation wells show a preference for higher saturations occurring in high permeability distributary channels penetrated by each of the wells. This has reduced the uncertainty in predicting connectivity of this facies between the wells. The pressure data from numerous injection events has been used to refine the characterisation of the average horizontal permeability of the reservoir zone, and the vertical permeability of the intra-formational seal. It has also been used to infer near-field bounding conditions of the interior splay fault, which in turn improves our understanding of containment at the site.
机译:适当的站点表征在CO2存储项目的规划阶段至关重要;但是,一旦注射到目前为止或已经完成,我们也可以了解储层的好处。在CO2CRC OTWay项目阶段2C期间,由于延期注射了15,000吨的二氧化碳气体,以及从延时地震调查和井监测数据的观察结果,已经产生了有关存储性能的有价值信息的来源。现在,注射已经停止阶段2C,将地质模型与跨越跨越注射期的田间观察和注射后23个月进行比较。后喷射储层表征已经证明是重要的,以改进未来现场开发的静态和动态模型,并增加了CO2羽流的长期稳定性的保证。如在时间流逝地震数据所见,羽流发展的东南进程导致模型中所代表的结构解释和地平线故障几何图中的审查。显影羽流在基线地震数据上以前未解析的SPLAY故障的程度。从注射和观察井的脉冲中子日志解释的饱和型材显示出在每个孔中穿透的高渗透分布通道中发生的更高饱和的偏好。这减少了预测井之间这张相的连接的不确定性。来自许多注射事件的压力数据已被用于优化储层区域的平均水平渗透性的表征,以及形成内部密封的垂直渗透性。它还已被用于推断内部展出故障的近场边界条件,这反过来改善了我们对网站遏制的理解。

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