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首页> 外文期刊>Renewable energy >Non-contaminating cryogenic fluid access to high-temperature resources: Liquid nitrogen fracturing in a lab-scale Enhanced Geothermal System
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Non-contaminating cryogenic fluid access to high-temperature resources: Liquid nitrogen fracturing in a lab-scale Enhanced Geothermal System

机译:非污染低温流体进入高温资源:液氮压裂在实验室规模增强的地热系统中

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摘要

Hot dry rock (HDR) geothermal energy exploitation is essential to meet the energy demand and achieve low-carbon solutions. Creation of complex fracture networks in HDR by hydraulic fracturing to enhance the thermodynamic efficiency and heat production is significant. However, the economic and environmental burden of freshwater sourcing, transportation, and treatment raises concerns. Here, we investigate liquid nitrogen, an environmental-friendly and super-cooling fluid, as an alternative fracturing fluid for potential applications in Enhanced Geothermal System. We studied the fracturing performances of liquid nitrogen in high-temperature granites under true triaxial-confining stresses. Cryo-scanning electron microscopy and 3D X-ray micro-computed tomography were applied to illuminate the fracture-network patterns. Results show that liquid nitrogen fracturing exhibits the lowest breakdown pressure compared with water fracturing and nitrogen gas fracturing. The fracture morphology displays a 3-D volumetric pattern comprised of branched fractures and thermally-stimulated zones. Higher fluidrock temperature difference and lower stress anisotropy cause more complex fracture networks. This study, for the first time, shows potential benefits of liquid nitrogen fracturing in high-temperature crystalline rocks, paving the road towards waterless fracturing in Enhanced Geothermal System. It is expected to provide a viable alternative for the sustainable development of deep geothermal resources in an efficient and clean way. (C) 2020 Elsevier Ltd. All rights reserved.
机译:热干岩(HDR)地热能开发对于满足能源需求并实现低碳解决方案至关重要。通过液压压裂在HDR中创建复杂的骨折网络,以提高热力学效率和热量产生显着。然而,淡水采购,运输和治疗的经济和环境负担引发了担忧。这里,我们研究液氮,环保和超冷却液,作为替代压裂液,用于增强地热系统中的潜在应用。在真正的三轴限制应力下,研究了高温花岗岩中液氮的压裂性能。施加低温扫描电子显微镜和3D X射线微计算机断层扫描以照亮裂缝网络模式。结果表明,与水压裂和氮气压裂相比,液氮压裂表现出最低的击穿压力。断裂形态显示由支链骨折和热刺激的区域组成的3-D体积图案。较高的流样温度差和低应力各向异性导致更复杂的骨折网络。这项研究首次显示出液氮压裂在高温晶体中的潜在益处,铺设了朝着增强的地热系统的无水压裂道路。预计将以高效和清洁的方式为深层地热资源的可持续发展提供可行的替代方案。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy 》 |2021年第1期| 125-138| 共14页
  • 作者单位

    China Univ Petr State Key Lab Petr Resources & Prospecting 18 Fuxue Rd Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources & Prospecting 18 Fuxue Rd Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources & Prospecting 18 Fuxue Rd Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources & Prospecting 18 Fuxue Rd Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources & Prospecting 18 Fuxue Rd Beijing 102249 Peoples R China;

    China Univ Petr State Key Lab Petr Resources & Prospecting 18 Fuxue Rd Beijing 102249 Peoples R 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

    Enhanced geothermal system; Cryogenic fracturing; Liquid nitrogen; Thermal stress; Complex fracture networks;

    机译:增强地热系统;低温压裂;液氮;热应力;复杂的骨折网络;

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