西安交通大学热流科学与工程教育部重点实验室,710049,西安
西安交通大学电气绝缘与电子设备国家重点实验室,710049,西安
作者简介:修文恒(2002—),男,硕士生;
褚雯霄(通信作者),男,教授,博士生导师。
收稿:2025-06-18,
纸质出版:2026-05-10
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修文恒, 陈杰, 区永深, 等. 异质裂隙内超临界CO2地热提取特性数值模拟研究[J]. 西安交通大学学报, 2026,60(5):48-58. DOI: 10.7652/xjtuxb202605005.
XIU Wenheng, CHEN Jie, OU Yongshen, et al. Numerical Simulation Study on Geothermal Extraction Characteristics of Supercritical CO2 in Heterogeneous Fractures[J]. Journal of Xi'an Jiaotong University, 2026, 60(5): 48-58. DOI: 10.7652/xjtuxb202605005.
修文恒, 陈杰, 区永深, 等. 异质裂隙内超临界CO2地热提取特性数值模拟研究[J]. 西安交通大学学报, 2026,60(5):48-58. DOI: 10.7652/xjtuxb202605005. DOI:
XIU Wenheng, CHEN Jie, OU Yongshen, et al. Numerical Simulation Study on Geothermal Extraction Characteristics of Supercritical CO2 in Heterogeneous Fractures[J]. Journal of Xi'an Jiaotong University, 2026, 60(5): 48-58. DOI: 10.7652/xjtuxb202605005. DOI:
为提升地热系统取热性能,研究了裂隙的异质性对CO
2
地热系统热提取量的影响。采用数值模拟方法,针对超临界CO
2
在干热岩异质裂隙中的渗流、传热及取热效果开展研究,探讨裂隙导流特性调控技术(FCTT)的作用机制,并对比调控前后总热能提取量的变化。模拟结果表明:渗透率空间关联长度通过改变渗流网络结构显著影响热提取效率,较大关联长度(
φ
≥0.50 m)易形成固化流道,导致换热区域受限,而较小关联长度(
φ
≤0.33 m)可使低渗透团块均匀离散分布,增强热补偿效果,使热提取过程更均匀;FCTT的调控效果呈现空间异质性,平流区大关联长度工况因长程非均质性仍出现流道固化,而小关联长度体系保持多分支流态,缓解了区域换热失衡;总热能开采量随关联长度减小而增大,当
φ
从1.00 m降至0.20m时,总开采量增长7.05%;FCTT调控对压裂不均匀的裂隙改善效果更显著,在
φ
=1.00 m的大关联长度工况下,1.5个月内的总采热量上升10.66%。研究可为基于超临界CO
2
工质的地热系统裂隙设计与取热预测提供理论依据。
To enhance the heat extraction performance of geothermal systems
the influence of fracture heterogeneity on the heat extraction capacity of CO
2
-based geothermal systems is investigated. By using numerical simulation methods
the seepage
heat transfer
and heat extraction effects of supercritical CO
2
in heteroge
neous fractures within hot dry rock were examined. The mechanism of fracture conductivity tuning technology (FCTT) was explored
and changes in total heat extraction before and after tuning were compared. The simulation results show that the spatial correlation length of permeability significantly affects heat extraction efficiency by altering the seepage network structure. Larger correlation lengths (
φ
≥0.50 m) tend to form solidified flow channels
limiting the heat exchange area
whereas smaller correlation lengths (
φ
≤0.33 m) allow low-permeability clusters to be uniformly dispersed
enhancing heat compensation and making the heat extraction process more uniform. The tuning effect of FCTT exhibits spatial heterogeneity:in advection-dominated regions with large
φ
long-range heterogeneity still leads to solidified flow channels
while systems with small
φ
maintain multi-branch flow patterns
alleviating regional heat exchange imbalances. The total heat extraction increases as the correlation length decreases. When
φ
is reduced from 1.00 m to 0.20 m
the total extraction increases by 7.05%. FCTT tuning demonstrates more significant improvements in fractures with uneven fracturing. Under large correlation length conditions (
φ
=1.00 m)
the total heat extraction within 1.5 months increases by 10.66%. This study provides a theoretical basis for fracture design and heat extraction prediction in geothermal systems based on supercritical CO
2
as the working fluid.
侯梅芳.碳中和目标下中国能源转型和能源安全的现状、挑战与对策[J].西南石油大学学报(自然科学版),2023,45(2):1-10.
HOU Meifang. Current situation,challenges and countermeasures of China's energy transformation and energy security under the goal of carbon neutrality[J]. Journal of Southwest Petroleum University(Science &Technology Edition),2023,45(2):1-10.
WANG Song,ZHANG Luqing,ZHOU Jian,et al. Quantitative analysis of fracture network geometry on fluid flow and heat transfer in hot dry rock geothermal reservoirs [J].Energy,2024,313:133815.
ZHOU Dejian,TATOMIR A,NIEMI A,et al.Study on the influence of randomly distributed fracture aperture in a fracture network on heat production from an enhanced geothermal system(EGS)[J]. Energy,2022,250:123781.
LI Xinxin,LI Chengyu,YAO Hui,et al.Probabilistic analysis of seepage and temperature fields in geothermal extraction process based on discrete fracture network(DFN)model [J].Applied Thermal Engineering,2024,254:123688.
CHEN Shijie,ZHU Haiyan,ZHAO Peng,et al.Influence of fracture network characteristics of hot dry rock on heat extraction performance:a numerical simulation study [J].Geoenergy Science and Engineering,2025,245:213523.
ZHOU Dejian,TATOMIR A,TOMAC I,et al. Effects of fracture aperture distribution on the performances of the enhanced geothermal system using supercritical CO 2 as working fluid [J ] .Energy,2023,284:128655.
FU Pengcheng,HAO Yue,WALSH S D C,et al. Thermal drawdown-induced flow channeling in fractured geothermal reservoirs [J].Rock Mechanics and Rock Engineering,2016,49(3):1001-1024.
LIU Yujie,WU Hui,TALEGHANI A D,et al. Effects of temperature-dependent viscosity on thermal drawdown-induced fracture flow channeling in enhanced geothermal systems [J].Renewable Energy,2024,235:121274.
GAO Xuefeng,ZHANG Yanjun,CHENG Yuxiang,et al.Heat extraction performance of fractured geothermal reservoirs considering aperture variability [J].Energy,2023,269:126806.
WANG Ling,JIANG Zhenjiao,LI Chengying.Comparative study on effects of macroscopic and microscopic fracture structures on the performance of enhanced geothermal systems [J].Energy,2023,274:127300.
GUO Tiankui,HAO Tong,CHEN Ming,et al.Numerical simulation on geothermal extraction by radial well assisted hydraulic fracturing [J].Renewable Energy,2023,210:440-450.
SALIMZADEH S,NICK H M.A coupled model for reactive flow through deformable fractures in enhanced geothermal systems [J].Geothermics,2019,81 :88-100.
LIU Jia,XUE Yi,PENG Conghui,et al.The role of spatially-autocorrelated heterogeneous and anisotropic fracture roughness on the thermal breakthrough of geothermal doublet systems [J].Geoenergy Science and Engineering,2024,237:212801.
MCLEAN M L,ESPINOZA D N,AHMMED B.The impact of effective fractured rock mass properties on development of flow channeling in enhanced geothermal systems [J].Renewable Energy,2024,237(Part B):121592.
ZHANG Qitao,DAHI TALEGHANI A,LI Guoqiang.Fracture conductivity management to improve heat extraction in enhanced geothermal systems [J]. International Journal of Heat and Mass Transfer,2024,218:124725.
ZHANG Qitao,DAHI TALEGHANI A.Intelligent fluid flow management for enhanced geothermal system in fractured horizontal wells [J].Applied Thermal Engineering,2024,239:122191.
SHAIK A R,RAHMAN S S,TRAN N H,et al. Numerical simulation of fluid-rock coupling heat transfer in naturally fractured geothermal system [J]. Applied Thermal Engineering,2011,31(10):1600-1606.
CHEN Zhiying,HUANG Linqi,LI Xibing,et al. Comprehensive heat extraction performance and fractured reservoir cooling effect analysis of a novel mine enhanced geothermal system [J].Applied Thermal Engineering,2024,245 :122790.
MAHMOODPOUR S,SINGH M,BÄR K,et al. Thermo-hydro-mechanical modeling of an enhanced geothermal system in a fractured reservoir using carbon dioxide as heat transmission fluid:a sensitivity investigation [J].Energy,2022,254(Part B):124266.
WITHERSPOON P A,WANG J S Y,IWAI K,et al. Validity of cubic law for fluid flow in a deformable rock fracture [J].Water Resources Research,1980,16(6):1016-1024.
HYMAN J D,SWEENEY M R,FRASH L P,et al. Scale-bridging in three-dimensional fracture networks:characterizing the effects of variable fracture apertures on network-scale flow channelization [J].Geophysical Research Letters,2021,48(19):e2021 GL094400.
GAO Xuefeng,ZHANG Yanj un,CHENG Yuxiang,et al. Impact of fractures with multi-scale aperture variability on production observations of geothermal reservoir units [J].Journal of Hydrology,2022,615,Part A:128693.
MA Yueqiang,ZHANG Yanjun,HU Zhongjun,et al.Numerical investigation of heat transfer performance of water flowing through a reservoir with two intersecting fractures [J].Renewable Energy,2020,153:93-107.
HUANG Na,JIANG Yujing,LIU Richeng,et al.A novel three-dimensional discrete fracture network model for investigating the role of aperture heterogeneity on fluid flow through fractured rock masses [J].International Journal of Rock Mechanics and Mining Sciences,2019,116:25-37.
LU Wei,XIANG Yanyong.Experiments and sensitivity analyses for heat transfer in a meter-scale regularly fractured granite model with water flow [J].Journal of Zhejiang University:Science A,2012,13(12):958-968.
LI Tailu,LIU Qinghua,GAO Xiang,et al.Thermodynamic,economic,and environmental performance comparison of typical geothermal power generation systems driven by hot dry rock [J].Energy Reports,2022,8:2762-2777.
付海峰,张永民,王欣,等.基于脉冲致裂储层的改造新技术研究[J].岩石力学与工程学报,2017,36(S2):4008-4017.
FU Haifeng,ZHANG Yongmin,WANG Xin,et al. New stimulation technology research based on impulse fracturing reservoir[J].Chinese Journal of Rock Mechanics and Engineering,2017,36(S2):4008-4017.
DENG Jianan,ZHAO Honghao,ZHENG Hao,et al. CO 2 -responsive preformed particle gels with high strength for CO 2 conformance control in heterogeneous reservoirs [J ] .Fuel,2025,379:133040.
AL BALUSHI F,ZHANG Qitao,DAHI TALEGHANI A.Improving enhanced geothermal systems performance using adaptive fracture conductivity [J].Applied Thermal Engineering,2023,233:121206.
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