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Three-Dimensional Geothermal Fairway Mapping: Examples From the Western Great Basin, USA

机译:三维地热航道制图:以美国西部大盆地为例

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Elevated permeability along fault systems provides pathways for circulation of geothermal fluids. Accurate location of such fluid flow pathways in the subsurface is crucial to future "*" geothermal development in order to both accurately assess resource potential and mitigate drilling costs by increasing drilling success rates. Employing a variety of surface and subsurface data sets, we present detailed 3D geologic analyses of two Great Basin geothermal systems, the actively producing Brady's geothermal system and a 'greenfield' geothermal prospect at Astor Pass, Nevada. 3D modeling provides the framework for quantitative structural analyses. We combine 3D slip and dilation tendency analysis along fault zones and calculations of fault intersection density in the two geothermal systems with the locations of lithologies capable of supporting dense, interconnected fracture networks. The collocation of these permeability promoting characteristics with elevated heat represent geothermal 'fairways', areas with ideal conditions for geothermal fluid flow. Location of geothermal fairways at high resolution in 3D space can help to mitigate the costs of geothermal exploration by providing discrete drilling targets and data-based evaluations of reservoir potential.
机译:沿断层系统的渗透率升高为地热流体的循环提供了途径。此类流体流动路径在地下的准确位置对于将来的“ *”地热开发至关重要,以便通过提高钻井成功率来准确评估资源潜力并减轻钻井成本。我们利用各种地表和地下数据集,对两个大盆地地热系统进行了详细的3D地质分析,这两个系统分别是积极产生布雷迪地热系统和在内华达州阿斯特帕斯的“绿地”地热前景。 3D建模为定量结构分析提供了框架。我们结合沿断层带的3D滑动和扩张趋势分析以及两个地热系统中断层相交密度的计算以及能够支持致密,相互连接的裂缝网络的岩性位置。这些提高渗透率的特性与高温的搭配代表了地热“航道”,这是地热流体流动的理想条件。通过提供离散的钻井目标和基于数据的储层潜力评估,可以在3D空间中以高分辨率定位地热航道,从而有助于减轻地热勘探的成本。

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