计算机学院 School of Computer Science and Technology
水利与海洋工程学院联合培养导师

李毅

发布时间: 2026-06-01 17:23:46 浏览量:

长沙理工大学计算机学院研究生导师基本信息表

1、个人基本信息:

   名:李毅

   别:

出生年月:19882

技术职称: 教授

毕业院校武汉大学

学历(学位):博士

所在学科:水利工程

研究方向:水利与岩土工程数值计算

Emai邮箱:liyi0217@163.com


2、教育背景:

2016.10-2017.10

美国劳伦斯伯克利国家实验室

访问学者

2011.09-2014.06

武汉大学水工结构工程

博士

2009.09-2011.06

武汉大学水利工程

硕士

2005.09-2009.06

长沙理工大学水利水电工程

本科

3、 目前研究领域:

岩土体多场多相耦合理论及其数值模拟方法

水利水电工程大坝、地基、边坡及隧洞渗流、变形及稳定分析

深部含水层压缩空气/二氧化碳储能

岩土体渗透特性、渗流分析与渗流控制

二氧化碳地质封存与利用

4、已完成或已在承担的主要课题:

w 国家自然科学基金:白垩纪古沙漠含水层碳封存与超长时压缩CO2储能联合运行特性研究(2026-2029), 主持

w 国家自然科学基金:深部含水层压缩二氧化碳储能THM耦合机理研究(2022-2025), 主持

w 国家自然科学基金:变形条件下岩石裂隙的气-液两相渗透特性及其耦合效应研究(2016-2018), 主持

w 湖南中南水电水利工程建设有限公司, 新型灌浆材料配合比设计,在研,主持

w 中国大唐集团有限公司,基于超前预报信息的岩溶区高埋深地下洞室涌突水可能性论证,在研,主持

5、已发表学术论文:

w 1.  Yi Li, Yinjiang Liu, Qian Zhou, et al. Multiphysics modeling of thermo-hydraulic fracturing during CO2 sequestration in multilayered reservoirs at Ordos, China. Journal of Rock Mechanics and Geotechnical Engineering, 2026, 18, 1233-1249.

w 2.  Yinjiang Liu, Yi Li*, Xian Luo, et al. Operational performance of compressed CO2 energy storage in aquifers under dynamic reservoir pressure through coupled surface-wellbore-reservoir modeling. Energy, 2026, 347, 140424.

w 3.  Dong Tang, Jinhua Ma, Yijie Huang, Min Song, Yi Li*, Zhongming jiang. Comparative study of analytical and numerical solutions for the thermodynamic processes of compressed air energy storage reservoirs in abandoned mines Renewable Energy, 2026, 260, 125245.

w 4.  Yi Li, Luping Cai, Xian Luo, et al. Coupled thermo-hydro-mechanical analysis of inter-seasonal compressed air energy storage in aquifers. Journal of Energy Storage. 2025, 123, 116753

w 5.  Yi Li, Yinjiang Liu, Hao Yu, et al. Underground performance assessment of compressed CO2 energy storage in aquifers by thermal-hydro-mechanical coupling method. Energy, 2025, 324, 135945.

w 6.  Yi Li, Qian Zhou, et al. Coupled nonlinear wellbore multiphase flow and thermo-hydro-mechanical analysis of compressed air energy storage in aquifers. Applied Energy, 2025, 377, 124441.

w 7.  Yi Li, Ping Xue, Yi Li, Yaning Liu, Jingrui Wang, Wenjie Yin. Modeling underground performance of compressed air energy storage in a practical flat aquifer: Insights on the permeability effects. Energy, 2025, 322, 135592.

w 8.  Yi Li, Yinjiang Liu, Dong Tang, et al. Unsaturated Hydraulic-Mechanical coupling and stability analysis under combinations of rainfall and reservoir water level: a case study at Rongsong deposit slope in Rumei hydropower station. International Journal of Geomechanics, 2025, 26(1): 05025012

w 9.  Hubao A, Zhibing Yang, Yongqiang Chen, Xiaoyu Tan, Ran Hu, Colin D. Wood, Yi Li, Yi-Feng Chen. Understanding the alteration of quartz wettability in underground hydrogen storage from energetic and structural perspectives. International Journal of Hydrogen Energy, 2025, 175, 151502.

w 10.  Jianxin Wang, Jin Wang, Yi Li, Dongdong Ge, Siyuan Zhou. Crack segmentation network based on hybrid-window transformer and dual-branch fusion. Applied Intelligence. 2025, 55, 944.

w 11.  Yi Li, Yinjiang Liu, Jie Cui, et al. The effects of formation inclination on the operational performance of compressed carbon dioxide energy storage in aquifers. Renewable Energy, 2024, 237, 121536.

w 12.  Yi Li, Jie Cui, et al. The impacts of geothermal gradients on compressed carbon dioxide energy storage in aquifers. Renewable Energy, 2024, 231, 120954.

w 13.  Yi Li, Hao Wang, Jinsheng Wang, Litang Hu, Xiaohua Wu, Yabin Yang, Peng Gai, Yaning Liu, Yi Li. The underground performance analysis of compressed air energy storage in aquifers through field testing. Applied Energy, 2024, 366, 123329.

w 14.  Dong Tang, Yi Li*, Yinjiang Liu, et al. Factors affecting compressed carbon dioxide energy storage system in deep aquifers. Bulletin of Engineering Geology and the Environment, 2024, 83, 407.

w 15.  Yi Li, Hao Yu, et al. Study on the applicability of compressed carbon dioxide energy storage in aquifers under different daily and weekly cycles. Renewable Energy, 2024, 222, 119987.

w 16.  Yi Li, Hao Yu, Yanling Xiao, et al. Numerical verification on the feasibility of compressed carbon dioxide energy storage in two aquifers.Renewable Energy,2023,207: 743-764.

w 17.  Li Yi, Liu Yaning, Li Yi*, Hu B, et al. Potential influences of leakage through a high permeability path on shallow aquifers in compressed air energy storage in aquifers. Renewable Energy, 2023,209: 661-676.

w 18.  Yi Li, Hao Yu, et al. Full cycle modeling of inter-seasonal compressed air energy storage in aquifers. Energy. 2023, 263: 125987

w 19. Yongsong Zou, Jin Wang, Peng Lei, Yi Li. A novel multi-step ahead forecasting model for flood based on time residual LSTM. Journal of Hydrology, 2023, 620, 129521.

w 20.  Yi Li, Hao Yu, Dong Tang, et al. A comparison of compressed carbon dioxide energy storage and compressed air energy storage in aquifers using numerical methods. Renewable Energy. 2022, 187: 1130-1153

w 21.  Li Yi*, Li Yi, Liu Y. Numerical study on the impacts of layered heterogeneity on the underground process in compressed air energy storage in aquifers. Journal of Energy Storage, 2022, 46: 103837

w 22.  Li Yi, Li Yi*, Liu Y, Cao X, et al. Compressed air energy storage in aquifers: basic principles, considerable factors, and improvement approaches. Reviews in Chemical Engineering, 2021,37(5):561-584

w 23.  Yi Li, Ruikang Sun, Yi Li, Bin Hu, Jiawei Dong. An enhanced role understanding of geothermal energy on compressed air energy storage in aquifers considering the underground processes. Journal of Energy Storage, 2021, 44: 103483

w 24.  Tang Dong, Yin Tianzuo, Xiao Zhezhen, Jiang Zhongming, Li Yi. Development of a modeling tool to assess seepage management options for large-scale water-sealed oil storage caverns. Environmental Earth Sciences, 2021, 80(18): 1-13

w 25.  Li Yi, Yu H, Li Yi Liu Y, et al. Numerical study on the hydrodynamic and thermodynamic properties of compressed carbon dioxide energy storage in aquifers. Renewable Energy, 2020, 151: 1318-1338

w 26.  Li Yi, Liu Y, Hu B, Li Yi, Dong Jiawei. Numerical investigation of a novel approach to coupling compressed air energy storage in aquifers with geothermal energy. Applied Energy, 2020, 279: 115781

w 27.  Li Yi, Zhang G, Jiang H, et al. Performance assessment of a newly developed and highly stable sandy cementitious grout for karst aquifers in China. Environmental Earth Sciences, 2020, 79(6): 1-11

w 28.  Tang Dong, Jiang Zhongming, Yuan Tao, Li Yi. Stability Analysis of Soil Slope Subjected to Perched Water Condition. KSCE Journal of Civil Engineering, 2020, 24(9): 2581-2590

w 29.  Liu J, Li Yi*, Zhang G, et al. Effects of cementitious grout components on rheological properties[J]. Construction and Building Materials, 2019, 227: 116654

w 30.  Li Yi, Chen Yifeng, Zhang, GuiJin et al. A numerical procedure for modeling the seepage field of water-sealed underground oil and gas storage caverns. Tunnelling and Underground Space Technology, 2017, 66, 56-63

w 31.  Li Yi, Chen Yifeng, Zhou Chuangbing. Effective Stress Principle for Partially Saturated Rock Fractures. Rock Mechanics and Rock Engineering, 2016, 49(3): 1091-1096

w 32.  Zhang guijin, Liu Jie,Yi Li*,Jingwei Liang. A pasty clay–cement grouting material for soft and loose ground under groundwater conditions. Advances in Cement Research, 2017, 29(2): 54-62

w 33.  Li Yi, Chen Yifeng, Zhou Chuangbing. Hydraulic properties of partially saturated rock fractures subjected to mechanical loading. Engineering Geology, 2014,179:24-31

w 34.  Li Yi, Chen Yifeng, Jiang Qinghui, Hu Ran, Zhou Chuangbing. Performance assessment and optimization of seepage control system: a numerical case study for Kala underground powerhouse. Computers and Geotechnics, 2014, 55:306-315

w 35.  Chen Yifeng, Hong Jiamin, Zheng Huakang, Li Yi, Hu ran, Zhou Chuangbing. Evaluation of Groundwater Leakage into a Drainage Tunnel in Jinping-I Arch Dam Foundation in Southwestern China: A Case Study. Rock Mechanics and Rock Engineering, 2016, 49(3): 961-979

w 36.   龚耕, 李毅*, 唐栋, 喻浩, 蒋中明. THM耦合条件下CO2地质封存注入方案优化研究. 工程地质学报, 2023, 31(3): 1084-1096

w 37.   李毅.岩石裂隙的非饱和渗透特性及其演化规律研究.岩土力学, 2016,37(8): 2254-2262

w 38.   李毅, 伍嘉, 李坤. 基于FLAC3D的饱和-非饱和渗流分析.岩土力学, 2012,33(2): 617-622

w 39.   李毅,陈益峰,周嵩,周创兵. 龙背湾低导流洞进口边坡变形稳定分析及加固处理. 中南大学学报(自然科学版), 2013, 44(7): 2958-2964

w 40.   郑华康, 张枫, 李毅, 陈益峰, 周创兵. 卡拉水电站坝区渗流控制效应精细模拟与评价.岩土力学, 2012, 33(9): 2743-2748

w 41.   车富强,陈益峰,李毅,张璇,郑海圣. 基于等效连续介质的坝区裂隙岩体渗控效应分析. 中南大学学报(自然科学版), 2014,45(6): 1967-1974

w 42.   李毅等.涔天河工程1号泄洪洞出口边坡与隧洞联合变形分析. 工程地质学报, 2018(4): 1095-1104

w 43.   张璇, 李毅, 罗琳, 车富强, 郑海圣.基于遗传神经网络的坝基初始渗流场反分析.水电能源科学, 2012, 30(12): 74-77

w 44.   李成, 李毅. 乐昌峡水利枢纽工程右岸坝肩边坡渗流场边界反演分析.广东水利水电, 2014,7: 8-13

w 45.   李毅, 刘福东, 张贵金. 岩土体开挖变形的分步模拟方法及其工程应用. 水利水电技术, 2015, 11(46):46-52

w 46.   唐文嘉, 王敏, 郑华康, 洪佳敏, 李毅. 牙根二级水电站坝区渗流场分析与渗控效应评价.中国农村水利水电, 2015, (5): 124-128

w 47.   刘福东, 张贵金, 李毅等. 顺向高边坡与偏压隧洞开挖的稳定性分析.水电能源科学, 2016, 34(4): 107-110

w 48.   刘福东, 李毅*,刘烨.单因素法和正交试验法在参数敏感性分析中的应用. 水利与建筑工程学报, 2015,13(6): 85-88

w 49.   史永胜, 李毅, 余成学,. 乐昌峡水利枢纽工程右岸坝肩边坡变形稳定分析. 中国农村水利水电, 2011, (5): 119-123

w 50.   刘烨, 李毅, 刘福东. 涔天河水利枢纽扩建工程引水发电洞出口洞坡联合体变形稳定分析. 人民珠江, 37(3): 72-75

w 51.   朱亭, 张贵金, 刘琦, 周小录, 刘茗溪, 李毅. 三维可视化大坝安全监控系统研发及应用. 人民长江, 2019, 7: 217-222

w 52.   张贵金, 宋伟, 何学春, 李毅. 裂隙岩体边坡开挖渠道脉动灌浆预加固措施论证. 长沙理工大学学报(自然科学版), 2021, 18(04): 32-43

w 53.   张贵金, 汪夏菲, 李毅, 梁经纬, 宋子龙. 白云水库放空修复混凝土防渗面板效果评价. 水利水电技术, 2021,52(04): 171-179

w 54.   熊思星, 张贵金, 雷勇, 杨博石, 李毅. 王家厂水库大坝基于风险分析的加固时机研究. 湖南水利水电, 2021(02): 28-31+35

w 55.   戴宏基, 张贵金, 李毅, 王江营, 陈安重, 樊勇. 龙家山堤防工程复合灌浆新工艺及渗控优化研究. 水利水电技术, 2020, 51(04): 146-151

w 56.   蒋中明, 唐栋, 李鹏, 李毅. 压气储能地下储气库选型选址研究.南方能源建设, 2019,6(03): 6-16

w 57.   陈宏任, 张贵金, 李毅, 刘丽玲, 孟艳秋, 田大作. 穿江管道对堤防渗透安全的影响研究.人民黄河, 2017, 39(02): 34-37+41

w 58.   王敏, 李毅, 尚钦, 郑华康, 周佳庆. 三峡库区西沱滑坡体稳定性计算分析.江西水利科技, 2018, 44(04): 275-279

w 59.   李毅,程宝平,何学春等.涔天河渠道土质边坡失稳分析与对策研究.长沙理工大学学报(自然科学版),2022,19(01):53-63

w 60.  罗贤,李毅*,喻浩等.渗透率各向异性对CAESA系统季节性运行性能的影响.长沙理工大学学报(自然科学版), 2024, 1-14

w 61.  郭旺,张贵金,李毅等.基于多元信息的八尺水库复杂坝基渗漏处理研究.云南水力发电,2022,38(12):267-271

w 62.  唐栋,简回香,王存利,李毅,蒋中明.基于两相流的水封油库油气泄漏运移规律及控制研究.长江科学院院报,2024,1-9

w 63.  周骞, 李毅*, 张贵金, 黄乐清. THM耦合作用对CAESA系统储能效率的影响. 吉首大学学报(自然科学版), 2025, 46(3): 37-45

w 64.  黄乐清,姜文,李毅,. 深部含水层压缩二氧化碳储能选址初步评价-以衡阳盆地风成砂储层为例. 中国地质调查, 2025,12(3):1-13

6论著之外的代表性研究成果和学术奖励

授权发明专利

w 一种测量岩石裂隙多相渗流特性的试验系统及试验方法,ZL201810461796.9

w 在深部含水层二氧化碳地质封存上开展压缩二氧化碳储能的方法,ZL202111336276.3

w 一种季节性压缩空气储能系统及方法,ZL202311657678.2

w 一种智能调压的超临界CO2快速制备装置及方法,ZL202511061638.0

w 一种利用深部含水层进行压缩气体储能的方法,ZL202010038947.7

w 一种河道生态柔性护坡结构及施工方法,ZL201810972999.4

w 一种消除松软地层灌浆盲区的灌浆方法,ZL201811361114.3

w 一种埋地管道基底反力计算模型及其结构计算方法,ZL202510256971.0

w 一种埋地管道施工过程力学行为智能预测方法,ZL202510370203.8

w 自适应施工环境的灌浆参数计算方法及系统,ZL201810866581.5


软件著作权

w 李毅; 刘银江; 长沙理工大学 ; CO2-水多相流储层热---压裂耦合分析平台, 2023SR1801780, 原始取得, 全部权利, 2023-06-01

w 李毅; 刘银江; 长沙理工大学 ; 非饱和渗流-应力耦合数值模拟软件, 2023SR1801783, 原始取得, 全部权利, 2023-10-16

w 李毅; 刘银江; 长沙理工大学 ; 非线性井筒与空气-水多相流储层热--力耦合分析平台, 2023SR1799639, 原始取得, 全部权利, 2023-07-24


荣誉与奖励

w   2015年,长沙市自然科学优秀学术成果二等奖(排名第1

w   2016年,湖南省水利水电科技进步三等奖(排名第2

w   2020年,湖南省科技进步二等奖(排名第8

w   2024年,长江水利委员会科学技术二等奖(排名第4)

w   2026年,湖南省水利水电科技进步一等奖(排名第4

7、 竞赛指导与学生培育:

w 已培养毕业博士生1人,硕士生15

8、 所获学术荣誉及学术影响:

w 中国大坝工程学会库坝渗流与控制专委会委员

w  湖南省水利工程协会副会长



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