Integrated containment risks assessment for subsurface CO2 storage: Overburden analysis and top seal integrity study, offshore Norway

IF 5.6 2区 工程技术 Q2 ENERGY & FUELS
Md Jamilur Rahman , Manzar Fawad , Nazmul Haque Mondol
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引用次数: 0

Abstract

This study summarizes the OASIS (Overburden Analysis and Seal Integrity Study for CO2 Sequestration in the North Sea) project that focuses on assessing the containment risks associated with the geological carbon sequestration (CCS) of the Northern Lights project. CCS is viewed as one of the most effective solutions for reducing carbon emissions, as it captures carbon dioxide from point sources and permanently stores it in suitable geological formations. However, injecting CO2 into the subsurface may have mechanical consequences, including fault reactivation, top seal fracturing, surface heave, etc. This study proposes an interdisciplinary workflow to characterize the caprock, faults, and overburden associated with CCS projects in the Horda Platform area, to improve injection-induced containment risk assessment. Our findings show that the proposed workflows and tools effectively characterize stress-related mechanical hazards. However, due to the complex nature of rocks, it is challenging to evaluate the top seal integrity using a single method. Therefore, the proposed interdisciplinary approach is more effective for any fluid injection site's characterization, given the complex nature of the subsurface and its behavior under injection-induced stress changes. This research paper adds knowledge about the top seal integrity assessment and the reliability of injected CO2, making CCS projects more reliable and safer. Although this study focuses on the northern North Sea, the proposed methods are equally applicable globally to characterize subsurface CO2 storage sites. Apart from CCS projects, these research results can benefit other subsurface injection projects, such as water injection for reservoir management, wastewater injection for disposal, hydrogen storage, and hydraulic fracturing for unconventional hydrocarbon resources.

地下二氧化碳封存的综合封存风险评估:覆盖层分析和顶部密封完整性研究,挪威近海
本研究总结了北海二氧化碳封存覆盖层分析和密封完整性研究(OASIS)项目,该项目重点评估北极光项目地质碳封存(CCS)相关的密封风险。CCS 被认为是减少碳排放最有效的解决方案之一,因为它能从点源捕获二氧化碳,并将其永久储存在合适的地质构造中。然而,将二氧化碳注入地下可能会产生机械后果,包括断层再活化、顶封压裂、地表隆起等。本研究提出了一种跨学科工作流程,用于描述与霍尔达平台地区 CCS 项目相关的盖岩、断层和覆盖层的特征,以改进注入引起的封隔风险评估。我们的研究结果表明,建议的工作流程和工具可以有效地表征与应力相关的机械危险。然而,由于岩石的复杂性,使用单一方法评估顶部密封完整性具有挑战性。因此,考虑到地下的复杂性及其在注入引起的应力变化下的行为,所提出的跨学科方法对于任何流体注入地点的表征都更为有效。本研究论文增加了有关顶封完整性评估和注入二氧化碳可靠性的知识,使 CCS 项目更加可靠和安全。虽然这项研究的重点是北海北部,但所提出的方法同样适用于全球二氧化碳地下封存场地的表征。除 CCS 项目外,这些研究成果还可惠及其他地下注入项目,如用于储层管理的注水、用于处置的废水注入、氢气存储以及非常规碳氢化合物资源的水力压裂。
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来源期刊
International Journal of Coal Geology
International Journal of Coal Geology 工程技术-地球科学综合
CiteScore
11.00
自引率
14.30%
发文量
145
审稿时长
38 days
期刊介绍: The International Journal of Coal Geology deals with fundamental and applied aspects of the geology and petrology of coal, oil/gas source rocks and shale gas resources. The journal aims to advance the exploration, exploitation and utilization of these resources, and to stimulate environmental awareness as well as advancement of engineering for effective resource management.
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