• ISSN 2305-7068
  • Indexed by ESCI CABI CAS
  • DOAJ EBSCO ProQuest Scopus GeoRef AJ CNKI
Advanced Search
Volume 4 Issue 4
Dec.  2016
Turn off MathJax
Article Contents
FENG Guan-hong, XU Tian-fu, ZHU Hui-xing. 2016: Dynamics of fluid and heat flow in a CO2-based injection-production geothermal system. Journal of Groundwater Science and Engineering, 4(4): 377-388.
Citation: FENG Guan-hong, XU Tian-fu, ZHU Hui-xing. 2016: Dynamics of fluid and heat flow in a CO2-based injection-production geothermal system. Journal of Groundwater Science and Engineering, 4(4): 377-388.

Dynamics of fluid and heat flow in a CO2-based injection-production geothermal system

  • Publish Date: 2016-12-28
  • 加载中
  • Ramey Jr H J. 1962. Wellbore heat transmission. Journal of Petroleum Technology, 14(04): 427-435 .
    Pruess K. 2006. Enhanced geothermal systems (EGS) using CO2 as working fluid–A novel approach for generating renewable energy with simultaneous sequestration of carbon. Geothermics, 35(4): 351-367 .
    Nelson P H. 1994. Permeability-porosity relationships in sedimentary rocks. The Log Analyst, 35(3): 38-62 .
    XU T, FENG G, et al. 2015. Wellbore–reservoir coupled simulation to study thermal and fluid processes in a CO2-based geothermal system: Identifying favorable and unfavorable condi-tions in comparison with water. Environmental Earth Sciences, 73(11): 6797-6813 .
    Curran P J. 1988. The semivariogram in remote sensing: an introduction. Remote Sensing of Environment, 24(3): 493-507 .
    Pan L, Oldenburg C M, et al. 2011a. Transient CO2 leakage and injection in wellbore-reservoir systems for geologic carbon sequestration. Greenhouse Gases: Science and Technology, 1(4): 335-350 .
    Timur, A. 1968. An investigation of permeability, porosity, and residual water saturation relationships, SPWLA 9th annual logging symposium. New Orleans: Society of Petro-physicists and Well-Log Analysts .
    Pan L, Oldenburg, C M, et al. 2011b. T2Well/ECO2N version 1.0: Multiphase and non-isothermal model for coupled wellbore-reservoir flow of carbon dioxide and variable salinity water, LBNL-4291E. Berkeley: Lawrence Berkeley National Laboratory .
    Archie G E. 1952. Classification of carbonate reservoir rocks and petrophysical considerations. AAPG Bulletin, 36(2): 278-298 .
    Zimmerman D L, Zimmerman M B. 1991. A comparison of spatial semivariogram estimators and corresponding ordinary kriging predictors. Technometrics, 33(1): 77-91 .
    Srivastava A, Babu G L S, Haldar S. 2010. Influence of spatial variability of permeability property on steady state seepage flow and slope stability analysis. Engineering Geology, 110(3): 93-101 .
    Davis S N. 1969. Porosity and permeability of natural materials. New York: Flow through Porous Media, 53-89 .
    Archie G E. 1950. Introduction to petrophysics of reservoir rocks. AAPG Bulletin, 34(5): 943-961 .
    Pan L, Oldenburg C M. 2014. T2Well-an integrated wellbore-reservoir simulator. Computers & Geosciences, 65: 46-55 .
    Pruess K. 2008. On production behavior of enhanced geothermal systems with CO2 as working fluid. Energy Conversion and Management, 49(6): 1446-1454 .
    Pan L, Freifeld B, et al. 2015. Fully coupled wellbore-reservoir modeling of geo-thermal heat extraction using CO2 as the working fluid. Geothermics, 53: 100-113 .
    Atrens A D, Gurgenci H, Rudolph V. 2010. Electricity generation using a carbon-dioxide thermosiphon. Geothermics, 39(2): 161-169 .
    Pruess K, Oldenburg C, Moridis G. 1999. TOUGH2 user’s guide, version 2.0 report LBNL-43134. Berkeley: Lawrence Berkeley National Laboratory, Earth Sciences Division .
    TIAN H, PAN F, et al. 2014. Impacts of hydrological heterogeneities on caprock mineral alteration and containment of CO2 in geological storage sites. International Journal of Greenhouse Gas Control, (24): 30-42 .
    Carman P C. 1956. Flow of gases through porous media. Cambridge: Academic Press .
    Tester J W, Anderson B, et al. 2006. The future of geothermal energy: Impact of enhanced geothermal systems (EGS) on the United States in the 21st century. Massachusetts: Massachusetts Institute of Technology, 209 .
    Ehrenberg S N, Nadeau P H. 2005. Sandstone vs. carbonate petroleum reservoirs: A global perspective on porosity-depth and porosity- permeability relationships. AAPG Bulletin, 89(4): 435-445 .
    Brown D W. 2000. A hot dry rock geothermal energy concept utilizing supercritical CO2 instead of water. In: Proceedings of the twenty-fifth workshop on geothermal reservoir engineering. Palo Alto: Stanford University, 233-238 .
    Randolph J B, Saar M O. 2011. Coupling carbon dioxide sequestration with geothermal energy capture in naturally permeable, porous geologic formations: Implications for CO2 sequestration. Energy Procedia, (4): 2206-2213 .
    Bear J. 1972. Dynamics of fluids in porous media. New York: Dover Publications .
    Katz A J, Thompson A H. 1986. Quantitative prediction of permeability in porous rock. Physical Review B, 34(11): 8179 .
    Haldar S, Babu G L S. 2008. Effect of soil spatial variability on the response of laterally loaded pile in undrained clay. Computers and Geotechnics, 35(4): 537-547 .
    Baecher G B, Christian J T. 2005. Reliability and statistics in geotechnical engineering. Chichester: John Wiley & Sons .
  • Relative Articles

    [1] Ya-hui Yao, Xiao-feng Jia, Sheng-tao Li, Jun-yan Cui, Hong Xiang, Dong-dong Yue, Qiu-xia Zhang, Zhao-long Feng, 2025: Quantitative study on vertical distribution of heat flow in Niutuozhen geothermal field, Xiong'an New Area—Evidence from heat flow determination in the Archean of D01 well, Journal of Groundwater Science and Engineering, 13, 22-33.  doi: 10.26599/JGSE.2025.9280036
    [2] Jun Zhang, Rong-zhe Hou, Kun Yu, Jia-qiu Dong, Li-he Yin, 2024: Impact of water table on hierarchically nested groundwater flow system, Journal of Groundwater Science and Engineering, 12, 119-131.  doi: 10.26599/JGSE.2024.9280010
    [3] Shuai-chao Wei, Feng Liu, Wei Zhang, Gui-ling Wang, Ruo-xi Yuan, Yu-zhong Liao, Xiao-xue Yan, 2022: Research on the characteristics and influencing factors of terrestrial heat flow in Guizhou Province, Journal of Groundwater Science and Engineering, 10, 166-183.  doi: 10.19637/j.cnki.2305-7068.2022.02.006
    [4] Yu-kun Sun, Feng Liu, Hua-jun Wang, Xin-zhi Gao, 2022: Numerical simulation of operation performance on production and injection of a double well geothermal system in Kailu Basin, Inner Mongolia, Journal of Groundwater Science and Engineering, 10, 196-208.  doi: 10.19637/j.cnki.2305-7068.2022.02.008
    [5] Xin Ma, Dong-guang Wen, Guo-dong Yang, Xu-feng Li, Yu-jie Diao, Hai-hai Dong, Wei Cao, Shu-guo Yin, Yan-mei Zhang, 2021: Potential assessment of CO2 geological storage based on injection scenario simulation: A case study in eastern Junggar Basin, Journal of Groundwater Science and Engineering, 9, 279-291.  doi: 10.19637/j.cnki.2305-7068.2021.04.002
    [6] ZENG Tu-rong, 2019: Research on basic characteristics of 2H, 18O and 14C in geothermal fluid in Guangdong Province, China, Journal of Groundwater Science and Engineering, 7, 42-52.  doi: 10.19637/j.cnki.2305-7068.2019.01.004
    [7] YU Yi-qiang, 2018: Study on ground source heat pump system zoning and methods in the Northwest of Shandong Province, Journal of Groundwater Science and Engineering, 6, 171-177.  doi: 10.19637/j.cnki.2305-7068.2018.03.002
    [8] LI Lu-lu, SU Chen, HAO Qi-chen, SHAO Jing-li, 2018: Numerical simulation of response of groundwater flow system in inland basin to density changes, Journal of Groundwater Science and Engineering, 6, 7-17.  doi: 10.19637/j.cnki.2305-7068.2018.01.002
    [9] LU Chuan, Brian McPherson, WANG Gui-ling, 2018: Hysteresis effects in geological CO2 sequestration processes: A case study on Aneth demonstration site, Utah, USA, Journal of Groundwater Science and Engineering, 6, 243-260.  doi: 10.19637/j.cnki.2305-7068.2018.04.001
    [10] ZHAO Fang-hua, 2018: Research on single hole heat transfer power of ground source heat pump system, Journal of Groundwater Science and Engineering, 6, 65-70.  doi: 10.19637/j.cnki.2305-7068.2018.01.008
    [11] WANG Shu-fang, LIU Jiu-rong, SUN Ying, LIU Shi-liang, GAO Xiao-rong, SUN Cai-xia, LI Hai-kui, 2018: Study on the geothermal production and reinjection mode in Xiong County, Journal of Groundwater Science and Engineering, 6, 178-186.  doi: 10.19637/j.cnki.2305-7068.2018.03.003
    [12] LIU Yan-guang, LIU Bing, LU Chuan, ZHU Xi, WANG Gui-ling, 2017: Reconstruction of deep fluid chemical constituents for estimation of geothermal reservoir temperature using chemical geothermometers, Journal of Groundwater Science and Engineering, 5, 173-181.
    [13] TONG Shao-qing, DONG Yan-hui, ZHANG Qian, SONG Fan, 2017: Visualizing complex pore structure and fluid flow in porous media using 3D printing technology and LBM simulation, Journal of Groundwater Science and Engineering, 5, 254-265.
    [14] LIU Qi, JIANG Si-min, PU Ye-feng, ZHANG Wei, 2016: Hydro-geochemical simulation of the mixing balance of exploitation and reinjection of geothermal fluid, Journal of Groundwater Science and Engineering, 4, 81-87.
    [15] Wang Bin, LI Bai-xiang, LI Fu-cheng, 2015: Discussion on heat source mechanism and geothermal system of Qinghai Gonghe-Guide Basin, Journal of Groundwater Science and Engineering, 3, 86-97.
    [16] LIU Yan-guang, ZHU Xi, YUE Gao-fan, LIN Wen-jing, HE Yu-jiang, WANG Gui-ling, 2015: A review of fluid flow and heat transfer in the CO2-EGS, Journal of Groundwater Science and Engineering, 3, 170-175.
    [17] Chang-li LIU, Chao SONG, Hong-bing HOU, Xiu-yan WANG, Yun ZHANG, Jun-kun WANG, Jian-mei JIANG, Li-xin PEI, Bo SONG, 2014: The Impact of Human Activities on CO2 Intake by Carbonate Weathering: A Case Study of Conglin Karst Ridge-trough at Fuling Town, Chongqing, China, Journal of Groundwater Science and Engineering, 2, 29-38.
    [18] LU Chuan, LI Long, LIU Yan-guang, WANG Gui-ling, 2014: Capillary Pressure and Relative Permeability Model Uncertainties in Simulations of Geological CO2 Sequestration, Journal of Groundwater Science and Engineering, 2, 1-17.
    [19] ZHANG Wei, 2014: Establishment of an assessment method for site-scale suitability of CO2 geological storage, Journal of Groundwater Science and Engineering, 2, 19-25.
    [20] Zong-jun Gao, Yong-gui Liu, 2013: Groundwater Flow Driven by Heat, Journal of Groundwater Science and Engineering, 1, 22-27.
  • 加载中

Catalog

    Article Metrics

    Article views (512) PDF downloads(868) Cited by()
    Proportional views
    Related

    JGSE-ScholarOne Manuscript Launched on June 1, 2024.

    Online Submission

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return