Modeling of a deep-seated geothermal system near Tianjin, China

被引:6
|
作者
Zhou, X
Chen, MY
Zhao, WM
Li, ML
机构
[1] China Univ Geosci, Dept Water Resources & Environm Engn, Beijing 100083, Peoples R China
[2] Tianjin Bur Geol & Mineral Resources, Tianjin 300191, Peoples R China
关键词
D O I
10.1111/j.1745-6584.2001.tb02328.x
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A geothermal field is located in deep-seated basement aquifers in the northeastern part of the North China Plain near Tianjin, China. Carbonate rocks of Ordovician and Middle and Upper Proterozoic age on the Cangxian Uplift are capable of yielding 960 to 4200 m(3)/d of 57 degreesC to 96 degreesC water to wells from a depth of more than 1000 m. A three-dimensional nonisothermal numerical model was used to simulate and predict the spatial and temporal evolution of pressure and temperature in the geothermal system. The density of the geothermal water, which appears in the governing equations, can be expressed as a linear function of pressure, temperature, and total dissolved solids. A term describing the exchange of heat between water and rock is incorporated in the governing heat transport equation. Conductive heat flow from surrounding formations can be considered among the boundary conditions. Recent data of geothermal water production from the system were used for a first calibration of the numerical model. The calibrated model was used to predict the future changes in pressure and temperature of the geothermal water caused by two pumping schemes. The modeling results indicate that both pressure and temperature have a tendency to decrease with time and pumping. The current withdrawal rates and a pumping period of five months followed by a shut-off period of seven months are helpful in minimizing the degradation of the geothermal resource potential in the area.
引用
收藏
页码:443 / 448
页数:6
相关论文
共 50 条
  • [1] Occurrence and modeling of geothermal water in the basement aquifer system near Tianjin, China
    Zhou, X
    Chen, MY
    Li, ML
    Zhao, WM
    [J]. PROCEEDINGS OF THE INTERNATIONAL SYMPOSIUM ON HYDROGEOLOGY AND THE ENVIRONMENT, 2000, : 282 - 287
  • [2] Genetic Analysis of Geothermal Resources in Deep-Seated Fault Area in Tonghe County, Northeast China and Implications of Geothermal Exploration
    Wang, Guowen
    Kuang, Jian
    [J]. SUSTAINABILITY, 2022, 14 (09)
  • [3] Development of design methodology for deep-seated geothermal energy extraction systems
    Hashida, T
    Shimizu, A
    Takahashi, T
    Tanifuji, K
    [J]. MECHANICS AND MATERIAL ENGINEERING FOR SCIENCE AND EXPERIMENTS, 2001, : 453 - 456
  • [4] Geochemical and isotopic characteristics of geothermal springs hosted by deep-seated faults in Dongguan Basin, Southern China
    Mao, Xumei
    Wang, Yanxin
    Zhan, Hongbin
    Feng, Liang
    [J]. JOURNAL OF GEOCHEMICAL EXPLORATION, 2015, 158 : 112 - 121
  • [5] Deep-seated restructuring
    [J]. Textile Month, 2001, (FEB): : 30 - 33
  • [6] DEEP-SEATED COMFORT
    JOYAL, B
    [J]. MACHINE DESIGN, 1995, 67 (03) : 93 - 94
  • [7] DEEP-SEATED CANDIDIASIS
    不详
    [J]. BMJ-BRITISH MEDICAL JOURNAL, 1963, (535): : 403 - +
  • [8] COLLAPSIBILITY AND DEFORMATION CHARACTERISTICS OF DEEP-SEATED LOESS IN CHINA
    LIN, ZG
    WANG, SJ
    [J]. ENGINEERING GEOLOGY, 1988, 25 (2-4) : 271 - 282
  • [9] Deep-Seated Landslides
    Barla, Giovanni
    [J]. ROCK MECHANICS AND ROCK ENGINEERING, 2016, 49 (06) : 2187 - 2188
  • [10] Deep-seated lipomas
    Lehman, EP
    [J]. JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1925, 84 : 1032 - 1033