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天津滨海新区地热资源循环利用研究——馆陶组热储回灌技术研究与示范

阮传侠 冯树友 沈健 林黎 江国胜

阮传侠, 冯树友, 沈健, 等, 2017. 天津滨海新区地热资源循环利用研究——馆陶组热储回灌技术研究与示范. 地质力学学报, 23 (3): 498-506.
引用本文: 阮传侠, 冯树友, 沈健, 等, 2017. 天津滨海新区地热资源循环利用研究——馆陶组热储回灌技术研究与示范. 地质力学学报, 23 (3): 498-506.
RUAN Chuan-xia, FENG Shu-you, SHEN Jian, et al., 2017. A STUDY ON THE RECYCLING UTILIZATION OF GEOTHERMAL RESOURCES IN BINHAI NEW AREA, TIANJIN——STUDY AND DEMONSTRATION OF THERMAL STORAGE AND REINJECTION TECHNOLOGY OF GUANTAO RESERVOIR. Journal of Geomechanics, 23 (3): 498-506.
Citation: RUAN Chuan-xia, FENG Shu-you, SHEN Jian, et al., 2017. A STUDY ON THE RECYCLING UTILIZATION OF GEOTHERMAL RESOURCES IN BINHAI NEW AREA, TIANJIN——STUDY AND DEMONSTRATION OF THERMAL STORAGE AND REINJECTION TECHNOLOGY OF GUANTAO RESERVOIR. Journal of Geomechanics, 23 (3): 498-506.

天津滨海新区地热资源循环利用研究——馆陶组热储回灌技术研究与示范

基金项目: 

矿产资源补偿费项目 国土房任[2009]27号

国家自然科学基金青年科学基金项目 41502256

详细信息
    作者简介:

    阮传侠(1978-), 女, 汉, 高级工程师, 主要从事地热资源评价、动态监测和回灌研究。E-mail:rchx12@sohu.com

  • 中图分类号: P314

A STUDY ON THE RECYCLING UTILIZATION OF GEOTHERMAL RESOURCES IN BINHAI NEW AREA, TIANJIN——STUDY AND DEMONSTRATION OF THERMAL STORAGE AND REINJECTION TECHNOLOGY OF GUANTAO RESERVOIR

  • 摘要: 可持续回灌是地热资源循环采用的基本。本文通过热储敏感性、堵塞原因、成井结构以及地面装置分析了回灌衰减的原因。认为物理堵塞是回灌堵塞的主要原因,成井结构是维持可持续回灌的关键,标准的地面设备可避免由于物理和化学原因引起的堵塞。本文采用成功的成井结构和标准的地面装置开展馆陶组热储回灌地热资源循环采用的示范工程建设,回灌率达到100~123 m3/h,实现了天津滨海新区馆陶组热储回灌突破,保证了滨海新区馆陶组地热资源循环利用。

     

  • 图  1  滨海新区构造位置图

    Figure  1.  Tectonic location map of Binhai New Area

    图  2  二开过滤器成井工艺示意图

    Figure  2.  Diagram of well completion technology of the filter for the second section

    图  3  DL-25H地热回灌井井身结构示意图

    Figure  3.  Diagram of the well bore construction of DL-25H geothermal reinjecetion well

    图  4  DL-25H回灌系统工艺流程图

    Figure  4.  The technological process of DL-25H Well reinjection systems

    图  5  DL-25H回灌井水位与水温、流量关系曲线

    Figure  5.  The relation curve between water temperature, reinjection quantity and water level respectively in DL-25H well

    图  6  TGR-26D井身结构示意图

    Figure  6.  Diagram of TGR-26D well bore construction

    图  7  TGR-28井身结构示意图

    Figure  7.  Diagram of TGR-28 well bore construction

    图  8  TGR-26D回灌井水位与水温、流量关系曲线

    Figure  8.  The relation curves between water temperature, reinjection quantity and water level respectively in TGR-26D well

    图  9  TGR-28回灌井水位与水温、流量关系曲线

    Figure  9.  The relation curves between water temperature, reinjection quantity and water level respectively in TGR-28 well

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  • 收稿日期:  2017-01-16
  • 刊出日期:  2017-06-28

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