地质碳储存地震成像技术的进步:丹麦 Havnsø 结构研究

IF 4.6 3区 工程技术 Q2 ENERGY & FUELS
Myrto Papadopoulou , Samuel Zappalà , Alireza Malehmir , Kristina Kucinskaite , Michael Westgate , Ulrik Gregersen , Thomas Funck , Florian Smit , Henrik Vosgerau
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引用次数: 0

摘要

在丹麦,地质碳储存(GCS)已被列为气候行动的直接解决方案。Havnsø domal 结构已被确定为最有希望进行地质碳封存的地点之一,因为其规模和特性被认为适合进行地质碳封存。然而,初步评估主要基于陈旧、稀少和低质量的地震数据,对潜在的储存资源和结构的完整性存在不确定性。为了对储藏作业做出明智的决策和规划,并作为针对丹麦各地多个类似陆上结构的大规模采集活动的一部分,2022 年在该地区开展了地震数据采集工作。勘测的目的是划定结构闭合,绘制可能危及全球地质封存系统运营的地质特征图,如断层。利用创新的双元素记录系统,共获取了 132 公里的高褶皱、高分辨率二维剖面图,用于深层和浅层地下成像。该记录系统包括两个振源和间隔为 10 米的节点记录器组合,以及连接到移动陆流器上的间隔为 2 米的基于微机电系统(MEMS)的记录器。地震数据包含全球陆地观测系统感兴趣的所有地层信息。据估计,该构造是一个定义明确的四向封闭层,储层是连续的。据解释,封隔岩厚度较大,基本均匀,近地表未发现大规模断层。在现有背景资料的支持下,这些结果提供了重要信息,有助于进一步做出与哈芬瑟未来储藏作业相关的决策和行动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancements in seismic imaging for geological carbon storage: Study of the Havnsø structure, Denmark

In Denmark, Geological Carbon Storage (GCS) has been prioritized as an immediate solution for climate action. The Havnsø domal structure has been identified as one of the most promising locations for GCS because its size and properties are believed to be suitable for GCS. However, the preliminary assessments, based mainly on old, sparse, and low-quality seismic data, are uncertain regarding the prospective storage resource and the integrity of the structure. To enable informed decisions and planning of the storage operations and as part of a large-scale acquisition campaign targeting several similar onshore structures throughout Denmark, a seismic data acquisition work was conducted in 2022 in the area. The purpose of the survey was to delineate the structural closure and map possible geologic features, such as faults, that could jeopardize GCS operations. In total, 132 km of high-fold and high-resolution 2D profiles were acquired using an innovative dual-element recording system for both deep and shallow subsurface imaging purposes. The recording comprises two vibrating sources and a combination of nodal recorders spaced at 10 m, and 2-m-spaced microelectromechanical systems (MEMS)-based recorders attached to a moving landstreamer. The seismic data contain information on all horizons of interest for GCS. The structure is estimated as a well-defined four-way closure, where the reservoir is continuous. A thick, mostly uniform sealing rock is interpreted and no large-scale faults are found in the near surface. The results, supported from existing background information, provide crucial information to assist further decisions and actions related to future storage operations in Havnsø.

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来源期刊
CiteScore
9.20
自引率
10.30%
发文量
199
审稿时长
4.8 months
期刊介绍: The International Journal of Greenhouse Gas Control is a peer reviewed journal focusing on scientific and engineering developments in greenhouse gas control through capture and storage at large stationary emitters in the power sector and in other major resource, manufacturing and production industries. The Journal covers all greenhouse gas emissions within the power and industrial sectors, and comprises both technical and non-technical related literature in one volume. Original research, review and comments papers are included.
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