地热储层岩石变密封节理的再激活与渗透率提高

IF 2.9 2区 地球科学 Q3 ENERGY & FUELS Geothermal Energy Pub Date : 2023-11-13 DOI:10.1186/s40517-023-00271-5
Alexandra R. L. Kushnir, Michael J. Heap, Patrick Baud, Thierry Reuschlé, Jean Schmittbuhl
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引用次数: 0

摘要

增强型深层地热储层的水力增产通常针对已存在的节理网络,目的是提高储层渗透率。在此,我们研究了法国Soultz-sous-Forêts地热站点EPS-1勘探钻孔中无节理和节理Buntsandstein砂岩的渗透率和强度。所研究的节理样品含有自然形成的裂缝,这些裂缝以不同的方式充满了次生矿化。我们发现,在样品的尺度上,这些岩石的渗透率对层理的存在和方向比对节理的存在更为敏感:在层理垂直于流体流动方向的样品中,渗透率最低。虽然密封良好的节理可以作为流体流动的障碍,但相对于无节理的节理,部分填充的节理既不抑制也不促进流体流动。然后在三轴条件下对这些样品进行变形,以评估(1)变形是否会重新激活先前存在的接缝,以及(2)变形如何导致渗透率变化。我们发现岩石的力学反应取决于节理被密封的程度。密封良好的节理会在局部增加岩石强度,实验诱发的裂缝不会破坏已有的节理表面;相比之下,部分密封的接头则充当了局部应变的薄弱面。变形过程中,所有试样的渗透率均有所增加,但接缝填充不良的试样渗透率增幅最大。我们的结论是,水力增产作业必须仔细考虑目标接缝网络的填充程度。部分密封的节理是增产的理想目标:这些特征在岩体中充当薄弱面,它们的重新激活可以显著增加渗透率。相比之下,密封良好的节理可能会增加岩石的局部强度,并且在增产过程中可能永远不会重新激活,这使得它们成为提高渗透率的不良目标。
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Reactivation of variably sealed joints and permeability enhancement in geothermal reservoir rocks

Hydraulic stimulation of enhanced deep geothermal reservoirs commonly targets pre-existing joint networks with the goal of increasing reservoir permeability. Here, we study the permeability and strength of joint-free and jointed Buntsandstein sandstones from the EPS-1 exploratory borehole at the Soultz-sous-Forêts geothermal site (France). The studied jointed samples contain naturally formed fractures that are variably filled with secondary mineralisation. We find that the permeability of these rocks is more sensitive to the presence and orientation of bedding than to the presence of joints at the scale of the samples: permeability is lowest in samples where bedding is oriented perpendicular to the direction of fluid flow. While well-sealed joints can act as barriers to fluid flow, partially filled joints neither inhibit nor promote fluid flow with respect to their joint-free counterparts. These samples were then deformed under triaxial conditions to assess (1) whether deformation reactivates pre-existing joints, and (2) how permeability changes as a result of deformation. We find that the mechanical response of the rocks depends on the extent to which joints are sealed. Well-sealed joints locally increase rock strength and experimentally induced fractures do not exploit pre-existing joint surfaces; partially sealed joints, by contrast, act as planes of weakness that localise strain. Although the permeability of all samples increased during deformation, permeability increase was largest in samples with poorly filled joints. We conclude that hydraulic stimulation operations must carefully consider the extent to which targeted joint networks are filled. Partially sealed joints are ideal targets for stimulation: these features act as planes of weakness within the rock mass and their reactivation can result in significant increases in permeability. By contrast, well-sealed joints may increase rock strength locally and may never reactivate during stimulation, making them poor targets for permeability enhancement.

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来源期刊
Geothermal Energy
Geothermal Energy Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
5.90
自引率
7.10%
发文量
25
审稿时长
8 weeks
期刊介绍: Geothermal Energy is a peer-reviewed fully open access journal published under the SpringerOpen brand. It focuses on fundamental and applied research needed to deploy technologies for developing and integrating geothermal energy as one key element in the future energy portfolio. Contributions include geological, geophysical, and geochemical studies; exploration of geothermal fields; reservoir characterization and modeling; development of productivity-enhancing methods; and approaches to achieve robust and economic plant operation. Geothermal Energy serves to examine the interaction of individual system components while taking the whole process into account, from the development of the reservoir to the economic provision of geothermal energy.
期刊最新文献
Pressure propagation during hydraulic stimulation: case study of the 2000 stimulation at Soultz-sous-Forêts Controlling injection conditions of a deep coaxial closed well heat exchanger to meet irregular heat demands: a field case study in Belgium (Mol) A probabilistic model-based approach to assess and minimize scaling in geothermal plants Leveraging machine learning for enhanced reservoir permeability estimation in geothermal hotspots: a case study of the Williston Basin Integrative analysis of the Aachen geothermal system (Germany) with an interdisciplinary conceptual model
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