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Experimental research on the permeability of fractured-subsequently-filled granite under high temperature-high pressure and the application to HDR geothermal mining

机译:高温高压下断裂后花岗岩渗透性的实验研究及其在HDR地热挖掘中的应用

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摘要

To reveal the physical characteristics of fractured-subsequently-filled granite and to guide hot dry rock (HDR) mining, this paper studied the permeability at 500 degrees C and 1000 m hydrostatic pressure of the parent rock (type I granite), hydrothermal fluid backfill (type II granite), cementation interface between the backfill and the parent rock laterally positioned through the specimen (type III granite), and cementation interface between the backfill and the parent rock longitudinally positioned through the specimen (type IV granite). The results show that the threshold temperature of the permeability changes for the four types of granite (i.e., types I, II, III, and IV) are 300 degrees C, 200 degrees C, 300 degrees C and 250 degrees C, respectively. From the threshold temperature to the maximum test temperature, the permeability of type I, II, III and IV granite increases exponentially by 1, 2, 2 and 3 orders of magnitude, reaching 10(-6) D,10(-4) D,10(-5) D and 10(-4) D, respectively. Micro-observation results of the micro-structures show that thermal cracking of the heterogeneous rock mass is the main reason for the increase in permeability of type I and III granite; the low strength and deteriorated mechanical properties caused by dissolution are the main reasons for the permeability of type II granite to significantly exceed that of type I and III granite; the extreme heterogeneity and the deteriorated mechanical properties of the backfill together indicate that type IV granite has the best permeability. During reservoir construction by hydraulic fracturing in fractured-subsequently-filled granite, the flow of the fracturing water along the direction perpendicular to the cementation interface is limited. However, when the reservoir temperature exceeds 250 degrees C, the backfill strengthened by the cementation near the cementation interface restores the weak-plane structure characteristics; when the reservoir temperature exceeds 400 degrees C, the thermal cracking fractures near the cementation interface interconnect with each other along the cementation interface to form a permeability channel. Therefore, the fracturing water in the backfill can easily flow along the cementation interface. Eventually, reservoir construction in fracturedsubsequently-filled granite can greatly reduce engineering costs, increase reservoir water-rock heat exchange areas and improve heat exchange efficiency, which provides a new technical and theoretical approach for deep HDR geothermal exploitation. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了揭示断裂后填充花岗岩的物理特性和引导热干岩(HDR)开采,本文研究了母岩(I型花岗岩),水热流液回填的500℃和1000米静压压力下的渗透率(II型花岗岩),回填和母岩之间的粘液界面横向定位通过样品(III型花岗岩),并在回填和母岩之间纵向定位通过样本(IV型花岗岩)之间的胶结界面。结果表明,四种类型的花岗岩(即类型I,II,III和IV)的渗透率变化的阈值温度分别为300℃,300摄氏度300℃和250℃。从阈值温度到最大测试温度,I型,II,III和IV花岗岩的渗透率呈指数为1,2,2和3个级别,达到10(-6)D,10(4)D. ,10(-5)d和10(-4)d。微观结构的微观观察结果表明,异质岩体的热破裂是I和III型花岗岩渗透性增加的主要原因;由溶解引起的低强度和劣化的机械性能是II型花岗岩渗透性的主要原因,以显着超过I和III型花岗岩;回物的极端异质性和劣化的力学性能在一起表示IV型花岗岩具有最佳渗透性。在储层在储层施工期间,通过骨压压裂在断裂后填充的花岗岩中,压裂水沿垂直于胶结界面的方向的流动是有限的。然而,当储层温度超过250摄氏度时,通过胶结接口附近的胶结加强的回填恢复了弱平面结构特性;当储存器温度超过400摄氏度时,沿着胶泥界面彼此互连的热裂纹裂缝沿着胶结界面互连以形成渗透性通道。因此,回填中的压裂水可以容易地沿着胶结界面流动。最终,骨折填充花岗岩的水库建设可以大大降低工程成本,增加水库水库热交换区域,提高热交换效率,为深层HDR地热剥削提供了一种新的技术和理论方法。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第6期|499-508|共10页
  • 作者单位

    Taiyuan Univ Technol Dept Min Engn Taiyuan 030024 Peoples R China|Taiyuan Univ Technol Minist Educ Key Lab Insitu Modificat Min Taiyuan 030024 Peoples R China;

    Taiyuan Univ Technol Dept Min Engn Taiyuan 030024 Peoples R China|Taiyuan Univ Technol Minist Educ Key Lab Insitu Modificat Min Taiyuan 030024 Peoples R China;

    Taiyuan Univ Technol Dept Min Engn Taiyuan 030024 Peoples R China|Taiyuan Univ Technol Minist Educ Key Lab Insitu Modificat Min Taiyuan 030024 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

    High temperature and high pressure; Triaxial stress; Fractured-subsequently-filled granite; Permeability; Micro-observation; Hot dry rock mining;

    机译:高温高压;三轴应力;断裂 - 随后填充的花岗岩;渗透性;微观观察;热干岩挖掘;

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