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Discrete fracture network model of the vapor zone leakages at the Copahue geothermal field

机译:基本地热场蒸汽区泄漏的离散裂缝网络模型

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The volcano-hosted geothermal system of Copahue is one of the most promising resources of renewable energy in Argentina. It is driven by a layered reservoir composed of a steam cap above a deep liquid-dominated reservoir. We study the surficial leakages of the shallow steam zone by performing a discrete fracture network model and a 3D forward strain-stress model of the upper caprock unit. The hydrothermal zones linked to steam cap leakages are subordinated to deep-rooted N60-striking faults. Associated damage zones exhibit higher values of fracture intensity, vertical and anisotropy of permeability than the host rocks. Joints and cross-joints likely control leakage zones, where the formers are subject to high dilation tendency. The Anfiteatro monocline might constitute the northwestern boundary of the shallow steam zone. Variations of H2O-CO2 ratio, helium isotopic signature, and CO2 between hydrothermal zones are explained in terms of petrophysical properties of the upper ignimbrites and changes in their structural control. Our results suggest that the upper caprock ignimbrite avoids the decompression of the reservoir because it provides the low fractured and low permeability layer that seals the geothermal system; conversely, ignimbrites affected by the extensional faults system enhance the shallow vapor zone given its high fracture density and permeability.
机译:Copahue的火山托管地热系统是阿根廷可再生能源最有希望的资源之一。它由由深层液压储层之上的蒸汽帽组成的层状储存器驱动。我们通过执行离散的裂缝网络模型和上部脚轮单元的3D正向应变应力模型来研究浅蒸汽区的结构泄漏。与蒸汽盖泄漏有关的水热带被从属于生根的N60引人注目的故障。相关损伤区表现出比主体岩石的骨折强度,垂直和各向异性的更高值。关节和交叉关节可能对照泄漏区域,其中成型剂受到高分扩张趋势的影响。 AnfiteAtro Monocline可能构成浅蒸汽区的西北边界。在上易象征性的岩石物理性质方面解释了水热带之间的H 2 O-CO 2比,氦同位素特征和CO 2的变化,并在结构控制的变化方面解释了水热带。我们的研究结果表明,上部脚克Ignimbrite避免了水库的减压,因为它提供了密封地热系统的低骨折和低渗透层;相反,由于其高断裂密度和渗透率,受到延伸断层系统影响的Ignimbrites提高了浅蒸气区。

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  • 来源
    《Journal of structural geology》 |2020年第11期|104155.1-104155.14|共14页
  • 作者单位

    Univ Buenos Aires Inst Estudios Andinos CONICET IDEAN Pabellon 2 C1428EHA Buenos Aires DF Argentina;

    Sapienza Univ Rome Earth Sci Dept Ple A Moro 5 I-00183 Rome Italy;

    Univ Buenos Aires Inst Estudios Andinos CONICET IDEAN Pabellon 2 C1428EHA Buenos Aires DF Argentina;

    Univ Buenos Aires Inst Estudios Andinos CONICET IDEAN Pabellon 2 C1428EHA Buenos Aires DF Argentina|Univ Geneva Dept Sci Terre 13 Rue Maraichers CH-1205 Geneva Switzerland;

    Sapienza Univ Rome Earth Sci Dept Ple A Moro 5 I-00183 Rome Italy;

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