李宗法

详细资料
姓名:李宗法
职称:副教授,硕士生导师
邮箱:lizf@yangtzeu.edu.cn
研究方向:气驱提采机理实验、气窜通道识别与优化调控、生产动态智能分析
基本信息:博士,副教授,硕士生导师,湖北省楚天英才计划,长期从事气驱提采机理实验、气窜通道识别与优化调控、生产动态智能分析研究,主持国家自然科学基金青年项目、国家科技重大专项、省部级及油田攻关课题等10余项, 在Fuel、Energy、Physics of Fluids等期刊发表SCI论文30余篇,获省部级科技奖励 2 项,发明专利8项。 兼任《Fluid Dynamics & Materials Processing》等期刊客座主编、《Energy Geoscience》《油气藏评价与开发》等期刊青年编委。
学习与工作经历:
2014.09-2023.06,中国石油大学(华东)石油工程学院 本硕博
2018.01-2018.06,哈利法科学技术大学石油工程学院 CSC优本交流
2023.06-2025.11,长江大学石油工程学院 讲师/硕导
2025.12至今, 长江大学石油工程学院 副教授/硕导
学术兼职
专刊客座主编:《Fluid Dynamics & Materials Processing》、《Journal of Environmental & Earth Sciences》、《Clean Energy Science and Technology》、《Advances in Differential Equations and Control Processzhoues》等;
期刊青年编委:《Energy Geoscience》、《Energy Science》、《油气藏评价与开发》、《现代化工》、《当代化工研究》。
荣誉奖励:
1) 湖北省楚天英才计划,2026
2) 裂缝性油气藏数值模拟关键技术及应用,石油化工自动化协会技术发明一等奖,2025
3) 长江大学谈心教育工作先进个人,2025
4) 长江大学优秀班主任,2025
5) 页岩油气跨尺度运移机制及流动模拟方法,绿色矿山科技成果奖,2023
科研项目:
1) 水相屏蔽作用下CO2驱微观混相与剩余油动用机制研究,2025,国家自然科学基金青年项目,负责人;
2) 断块油藏流场精细表征及分级评价方法研究,2025,国家科技重大专项,负责人;
3) CO2驱采-封存前缘监测及协同优化技术研究,2024,国家科技重大专项,负责人;
4) 高含水油藏CO2穿透水膜驱油机理与混相行为研究,2025,省面上基金项目,负责人;
5) 微纳尺度CO2-原油-孔隙相互作用机制研究,2024,南方复杂页岩油气地质与开发湖北省重点实验室,负责人
6) 考虑微纳限域影响的CO2驱油流动模拟研究,2023,湖北省油气钻采工程重点实验室,负责人
7) 低渗透油藏CO2驱注采剖面智能预测与均衡驱替技术研究,中国石化海相油气藏开发重点实验室,2026,负责人
8) xx油田CO₂吞吐提高采收率机理及增油规律实验研究,2026,技术负责
9) 裂缝型碳酸盐岩油气藏水窜通道定量评价,2025,中油测井,技术负责
10) 叶探1井区凝析气开发实验研究,2025,塔里木油田,技术负责
11) 低渗低粘高含水油田注空气强化热驱工艺研究,2023,吐哈油田,技术负责
12) 大排量压裂地质条件适配性分析,2023,长庆油田,技术负责
13) 二氧化碳封存模拟安全评价方法研究,2023,中海油服,技术负责
14) 八面河特高含水期油藏精细描述及高效开发技术,2023,江汉油田,技术负责
指导学生:
2022级:陈子风(国家奖学金,西南油气田)
2023级:马一凡(国家奖学金,西南油气田)
2024级:杨桂华、罗旭
2025级:马子豪(博士)、周易通、朱国权、陈文凯
2026级:李茂恒(博士)、王文博、邹昔鹏、胡志文、徐翔
指导学生获奖:
1) 2024年国家奖学金(陈子风)
2) 2025年国家奖学金(马一凡)
3) 2025年石油工程设计大赛全国一等奖(马子豪)
4) 2025年石油工程设计大赛全国三等奖(杨桂华、罗旭)
5) 2024年石油工程设计大赛全国三等奖(马一凡、陈子风)
6) 2025 校级优秀本科生毕业论文(马子豪)
7) 2025 院级优秀本科生毕业论文(周易通)
8) 2024 院级优秀本科生毕业论文(雷伴雨)
2026 湖北省级大学生创新项目(刘芯彤)
代表论文:
[1]黄丽娟,陈志伟,李宗法*,等.高压注空气驱油过程中油气爆炸风险分析及特性实验[J].石油学报,2024,45(07):1141-1151.
[2]Li Zongfa, Su Y, Li Lei, et al. Evaluation of CO2 storage of water alternating gas flooding using experimental and numerical simulation methods[J]. Fuel, 2022, 311: 122489. (SCI一区TOP,IF:8.0)
[3]Li Zongfa, Su Yuliang, et al. Influences of diffusion and advection on dynamic oil-CO2 mixing during CO2 EOR and storage process: Experimental study and numerical modeling at pore-scales[J]. Energy, 2022: 126567.(SCI一区TOP,IF:8.6)
[4]Li zongfa, Su Yuliang, et al. Investigation of CO2 storage and EOR of alternating N2 and CO2 injection using experiments and numerical simulation[J]. Fuel, 2023, 340: 127517.(SCI一区TOP,IF:8.0)
[5]Hao Yongmao, Li Zongfa*, Su Yuliang, et al. Experimental investigation of CO2 storage and oil production of different CO2 injection methods at pore-scale and core-scale[J]. Energy, 2022: 124349. (SCI一区TOP,IF:8.6)
[6]Huang Lijuan, Wang Yu, Li Zongfa*, et al. Experimental study on piloted ignition temperature and auto ignition temperature of heavy oils at high pressure[J]. Energy, 2021, 229: 120644. (SCI一区TOP,IF:8.6)
[7]Su Yuliang, Li Zongfa, Zhan Shiyuan, et al. Correction for capillary pressure influence on relative permeability by combining modified black oil model and Genetic Algorithm[J]. Journal of Petroleum Science and Engineering, 2021, 204: 108762. (SCI二区,IF:5.2)
[8]Li Zongfa, Huang L, Zhou X, et al. Scaling up in situ combustion process for enhanced oil recovery in water-flooded light oil reservoirs from laboratory to field implementation[J]. Physics of Fluids, 2024, 36(3). (SCI二区,IF:5.2)
[9] Huang L, Wang Y, Yuan J, Li Zongfa*,et al. Optimization of scale inhibitor and adsorption enhancer during squeeze process in offshore oilfields[J]. Physics of Fluids, 2024, 36(7). (SCI二区,IF:5.2)
[10]Huang L, Li Zongfa,Wang Y,et al.Experimental assessment on the explosion pressure of CH4-Air mixtures at flammability limits under high pressure and temperature conditions[J].Fuel,2021,299:120868(SCI一区TOP,IF:8.0)
[11]Li Zongfa, Su Y, Hao Y, et al. Investigation on Non-uniform Miscibility of CO2-Oil in Porous Media and Its Influence on EOR and CO2 Storage[C]//International Field Exploration and Development Conference. Singapore: Springer Nature Singapore, 2022: 3539-3554.
[12]Huang L, Li Zongfa, Ren S, et al. Risk assessment and enhanced oil recovery effect of gravity assisted oxygen-reduced air flooding[C]//SPE Asia Pacific Oil and Gas Conference and Exhibition. SPE, 2021: D031S023R002.
[13]Li Z, Luo X, Kanjibayi B, et al. Experimental investigation into the enhancement of oil recovery and analysis of influencing factors for hydrocarbon gas flooding in high-water-cut ultra-deep oil reservoirs[J]. Physics of Fluids, 2024, 36(12).
[14]Li Z, Chen Z, Yang G, et al. Enhancing oil recovery and carbon sequestration through alternating injection of methane-rich associated gas and CO2 in deep reservoirs[J]. Physics of Fluids, 2025, 37(2).
[15]Wang W, Sun Q, Li Z*, et al. Osmotic pressure-facilitated spontaneous imbibition in shale reservoirs for recovery enhancement[J]. Physics of Fluids, 2025, 37(3).
[16]Ma Y, Li Z*, Zhao H, et al. Thermo-hydro-mechanical-chemical coupling effects on the integrated optimization of CO2-EOR and geological storage in a high water-cut reservoir in Xinjiang, China[J]. Energy Geoscience, 2025, 6(2): 100371.
[17]Ma Y, Li Z*, Liu W, et al. Generalized regression neural network-assisted synergistic optimization of oil recovery, heat extraction, and carbon sequestration in deep reservoirs[J]. Physics of Fluids, 2025, 37(5).
[18]Yang G, Li Z*, Zhou Y, et al. Gravity-assisted hydrocarbon miscible gas flooding for enhanced oil displacement efficiency and CO2 trapping[J]. Physics of Fluids, 2025, 37(7).
[19]Yan W, Li Z, Peng H, et al. Feasibility evaluation of CO2-EOR and storage in low oil saturation reservoir[J]. Fuel, 2026, 411: 138029.
[20]Hao Y, Yang L, Zhan S,Li Z*, et al. Molecular dynamics investigation of the aqueous film barrier to CO2 transport and miscibility with oil for geological storage and enhanced oil recovery processes[J]. Physics of Fluids, 2025, 37(11).
[21]Wang B, Wu F, Chen Z, Li Z*, et al. Large-Volume Hydraulic Fracturing in Tight Gas Reservoirs: High-Efficiency Stimulation and Geological Adaptability Assessment[J]. Fluid Dynamics & Materials Processing, 2025, 21(11): 2701.
[22]Li D, Bai Y, Xu B, Li Z,et al. Study on Water Phase Interference[C]//Proceedings of the International Field Exploration and Development Conference 2024: Volume 5. Springer Nature, 2025: 157.
[23]黄丽娟,李茂恒,裴树峰,李宗法.稀油油藏注空气强化热驱提高采收率实验研究[J].钻采工艺,2025,48(02):109-114.
[24]李宗法,马一凡,吴仪,等.CO2咸水层地质封存场地适宜性评价方法研究.长江大学学报自然科学版),1-10.20250928.001.
[25]黄子俊,张雪娜,雷伴雨,李宗法*.基于计算流体力学方法的CO2驱油与埋存微观规律[J].华南师范大学学报(自然科学版),2024,56(06):26-34.
[26]李宗法; 多孔介质内CO2-油微观混相特征及其表征方法, 第二届中国绿色矿山国际年会, 北京,2025-1-10至2025-1-12 (会议报告)
[27]Lijuan huang; Zongfa Li; Shaoran Ren ; Risk Assessment and Enhanced Oil Recovery Effect of Gravity Assisted Oxygen-Reduced Air Flooding, SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition, Bali, 2021-10-12至2021-10-14 (会议报告)
[28]Li Zongfa; Yuliang Su; HAO Yongmao; WANG Wendong; Bahedawulieti·kanjibayi ;Investigation on non-uniform miscibility of CO2-oil in porous media and its influence on EOR and CO2 storage, International Field Exploration and Development Conference 2022, 新疆乌鲁木齐, 2022-9-21至2022-9-24 (会议报告)
[29]CO2驱油封存高校模拟与智能优化技术。马子豪,李宗法,杨桂华,罗旭,周易通,2026年6月(会议报告)
[30]基于BP神经网络的多孔介质CO₂动态扩散系数预测模型及提采机制研究。杨桂华,罗旭,李宗法,马子豪,周易通,2026年6月(会议报告)
[31]层状边水油藏CO₂-EOR算法辅助复合调剖控窜:TAW区块实例。罗旭,杨桂华,李宗法,马子豪,周易通,2026年6月(会议报告)
专利:
[1]一种基于图版的消除末端效应的相渗曲线校正方法
[2]一种用于分层注水工艺中层段组合的确定方法及装置
[3]一种基于数值模拟迭代消除末端效应的相渗曲线校正方法
[4]一种CO2驱替前缘及气窜通道识别的自动试井解释方法
[5]一种基于DFN裂缝网络的裂缝参数-扩散效果精准表征方法
[6]一种基于MCDDE的二氧化碳优势通道动态调控方法
[7]一种基于循环神经网络随机采样与残差RNN的非均质油藏二氧化碳驱产吸剖面预测方法
[8]一种基于拉丁超立方采样与残差LSTM的非均质油藏二氧化碳驱吸气剖面预测方法
(2026年9月更新)