深层干热岩储层热开采技术的发展现状与研究建议

Diquan Li, Ning Li, Jing Jia, Hongguang Yu, Qinghu Fan, Lichang Wang, Ahmed Mohsen
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引用次数: 0

摘要

本文在全面综述国内外文献的基础上,探讨了增强地热系统(EGS)在深部干热岩(HDR)储层热能提取方面的技术难点和发展现状,并对HDR储层激发数值模拟的研究重点提出了建议。此外,文章还总结了用于 HDR 储层激励的现有方法和主流工作流体。文章强调了井位、生产井深度、人工裂缝走向和复杂性等因素对优化 EGS 热生产效率的重要意义。此外,文章还详细讨论了裂缝间距、裂缝渗透率、裂缝长度、流体注入速度和注入流体温度对 EGS 性能的影响。鉴于高温储层所面临的热-水-机械耦合挑战,建议未来的研究工作应侧重于研究在冷热流体长期(大于 30 年)循环过程中,热应力对 EGS 内部人工裂缝网络稳定性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Development status and research recommendations for thermal extraction technology in deep hot dry rock reservoirs

Based on a comprehensive review of domestic and foreign literature, this article discusses the technical difficulties and development status of enhanced geothermal system (EGS) concerning the thermal energy extraction of deep hot dry rock (HDR) reservoirs and proposes suggestions for the research focus of numerical simulation of HDR reservoir stimulation. Additionally, it summarizes the existing methods and mainstream working fluids for HDR reservoir stimulation. The article emphasizes the significance of factors such as well location, production well depth, artificial fracture orientation, and complexity in optimizing the thermal production efficiency of the EGS. Furthermore, this article delves into a detailed discussion on the influence of fracture spacing, fracture permeability, fracture length, fluid injection rate, and injected fluid temperature on the performance of the EGS. In light of the thermo-hydro-mechanical coupling challenges associated with high-temperature reservoirs, it is suggested that future research efforts should focus on investigating the impact of thermo-induced stresses on the stability of the artificial fracture network within the EGS during long-term (>30 years) circulation of hot and cold fluids.

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Issue Information Two-year growth of Deep Underground Science and Engineering: A perspective Acknowledgment of reviewers A review of mechanical deformation and seepage mechanism of rock with filled joints Issue Information
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