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Designing multi-well layout for enhanced geothermal system to better exploit hot dry rock geothermal energy

机译:设计多井布局以增强地热系统,以更好地利用热干岩地热能

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摘要

Heat extraction mode, e.g. well layout or arrangement of wells, of enhanced or engineered geothermal system (EGS) is crucial to its performance and directly affects its commercial viability. Assuming the subsurface target hot dry rock (HDR) has been well-fractured and the created heat reservoir can be treated as a homogeneous porous medium, we numerically simulate the long-term heat extraction process of EGSs of various well layouts, including the standard doublet well layout, two triplet well layouts, and a quintuplet well layout. The simulation results enable a detailed analysis on the effects of well layout on EGS heat extraction performance. We find simply deploying more production wells does not necessarily improve the EGS heat extraction performance; an EGS with triplet well layout can perform better than an EGS with a quintuplet well layout or worse than an EGS with the standard doublet well layout. One more finding is an EGS with the injection well positioned close to the edge of the reservoir gets more thermal compensation from the un-fractured rocks surrounding the reservoir during heat extraction. Further, we deduce an optimized EGS well layout must ensure enough long major flow path and less preferential flow in the reservoir, and the injection well is located close to the edge of the reservoir. We then design a quartuplet well layout accordingly. Results from an additional simulation with respect to the quartuplet well EGS indicate its enhanced heat extraction performance, corroborating the success of design. Last, we discuss about the hot dry rock (HDR) heat recovery factor based on numerous simulated cases and estimate the amount of HDR geothermal resource that can be converted into electricity by EGS.
机译:排热模式,例如增强或工程设计的地热系统(EGS)的井布局或井布置对于其性能至关重要,并直接影响其商业可行性。假设地下目标干热岩(HDR)已被很好地压裂,并且所形成的储热层可以被视为均质的多孔介质,我们将数值模拟各种井眼布置的EGS(包括标准双峰)的长期吸热过程井布局,两个三重态井布局和一个五重井布局。仿真结果可以对井眼布置对EGS排热性能的影响进行详细分析。我们发现,简单地部署更多的生产井并不一定会提高EGS的排热性能。具有三重态阱布局的EGS的性能比具有五重态阱布局的EGS更好,或者比具有标准双重态阱布局的EGS差。另一个发现是EGS,其注入井位于储层边缘附近,在排热过程中从围绕储层的未破裂岩石中获得了更多的热补偿。此外,我们推断出优化的EGS井布置必须确保足够长的主流动路径和储层中优先流动较少,并且注入井位于储层边缘附近。然后,我们相应地设计一个四联体孔布局。关于四联孔EGS的其他模拟结果表明,其增强的散热性能,证实了设计的成功。最后,我们基于大量模拟案例讨论了热干岩(HDR)的热采收率,并估算了可通过EGS转换为电能的HDR地热资源量。

著录项

  • 来源
    《Renewable energy》 |2015年第2期|37-48|共12页
  • 作者

    Jiliang Chen; Fangming Jiang;

  • 作者单位

    Laboratory of Advanced Energy Systems, CAS Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences (CAS), Guangzhou 510640, China;

    Laboratory of Advanced Energy Systems, CAS Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences (CAS), Guangzhou 510640, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hot dry rock; Enhanced geothermal system; Well layout; System optimization design; Numerical model;

    机译:干热岩;增强的地热系统;好布局;系统优化设计;数值模型;

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