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Integrative Modeling of Caprock Integrity in the Context of CO2 Storage: Evolution of Transport and Geochemical Properties and Impact on Performance and Safety Assessment

机译:二氧化碳封存条件下盖层完整性的整合模型:运输和地球化学性质的演变及其对性能和安全性评估的影响

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Integrative Modeling of Caprock Integrity in the Context of CO2 Storage: Evolution of Transport and Geochemical Properties and Impact on Performance and Safety Assessment - The objective of the "Geocarbone-Integrite" project (2005-2008) was to develop a methodology to assess the integrity of the caprock involved in the geological storage of CO2. A specific work package of the project (WP5) was dedicated to the integration of(l) the phenomenology describing the evolution of the storage system with a focus on the mechanisms occurring inrthe caprock and at the interface with the caprock, and (2) the data obtained from the investigation of petrographical, geomechanical, and geochemical properties, before and after reaction with CO2-rich solutions, performed in the other work packages (WP1 to WP4). This knowledge was introduced in numerical models and specific safety scenarios were defined in order to assess the performance of the CO2 storage system. The results of the modeling show that the injection of CO2 can potentially have a significant effect on the caprock by changing the porosity due to the dissolution and precipitation of minerals, but that the impact is limited to a zone from several decimeters to several meters of the caprock close to the interface with the reservoir depending on whether the supercritical carbon dioxide (SC-CO2) plume enters into the caprock and if fractures are present at this location. The methodology used in this project can be applied to a pilot site for the injection of CO2 in the Paris Basin. A key aspect of the safety of such a facility will be to look at the coupling of geochemical alteration and the evolution of geomechanical properties in the short and medium terms (several hundreds of years). The challenge for the future will be to structure and apply the safety assessment methodology with an operational finality, in order to support the robustness of the transition step to CGS projects at the industrial scale.
机译:二氧化碳封存条件下盖层完整性的综合建模:运输和地球化学性质的演变以及对性能和安全性评估的影响-“地球碳素整合体”项目(2005-2008年)的目标是开发一种评估完整性的方法二氧化碳地质封存涉及的盖层。该项目(WP5)的特定工作包致力于整合(l)描述存储系统演化的现象学,重点是在盖层内部以及与盖层交界处发生的机制,以及(2)在与其他富含二氧化碳的溶液反应之前和之后,从岩石学,地球力学和地球化学性质的研究中获得的数据,在其他工作包(WP1至WP4)中进行。在数值模型中引入了该知识,并定义了特定的安全方案以评估CO2储存系统的性能。建模结果表明,注入CO2可能会由于矿物的溶解和沉淀而改变孔隙度,从而可能对盖层产生重大影响,但影响仅限于从几分米到几米的区域。盖岩是否与储层交界,取决于超临界二氧化碳(SC-CO2)羽流是否进入盖岩,以及该位置是否存在裂缝。该项目中使用的方法可以应用于巴黎盆地注入二氧化碳的试验场。这种设施的安全性的一个关键方面将是在短期和中期(数百年)中研究地球化学变化与地球力学特性的演变之间的耦合。未来的挑战将是构建并应用具有运营终结性的安全评估方法,以支持向工业规模CGS项目过渡步骤的稳健性。

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