研究方向:
·颗粒在气体介质和流体介质中的微/宏观输运机理研究
·新型的颗粒材料(能源类颗粒及建筑类颗粒)研究
·废弃颗粒再利用化研究
·颗粒的堵塞及堆积机理研究
·油气藏增产改造机理及基础研究
·油气藏压裂、酸化等增产改造工艺技术研究
·油气藏压裂、酸化-出砂与防砂研究
·油气藏压裂、酸化-支撑剂运移机理研究
·深水、深地相关新材料及其新工艺研究
论文著作:
·Li J,Han X,He S,et al. Experimental study of microproppant transportation in a fracture with operational factors and application in a shale gas field[J]. SPE Journal,2024,29(9):4856-4872.
·Li J,Liu P,Kuang S,et al. Visual lab tests:Proppant transportation in a 3D printed vertical hydraulic fracture with two-sided rough surfaces[J]. Journal of Petroleum Science and Engineering,2021,196:107738.
·Li J,Han X,He S,et al. Effect of proppant sizes and injection modes on proppant transportation and distribution in the tortuous fracture model [J]. Particuology,2023,84:261-280.
·Li J. Computational Fluid Dynamics-Discrete Element Method Modeling and Analysis of Proppant Transportation Inside Different Degrees of Inclined Tortuous Hydraulic Fractures [J]. SPE Journal,2023:1-17.
·Li J,Kuang S,Huang F,et al. CFD-DEM Approach to Study the Proppant Transport and Placement under Different Perforation Conditions in Tortuous Hydraulic Fractures[J]. SPE Journal,2023:1-22.
·Li J,He,S,Han X,et al. The research and development of a novel dandelion-based bionic proppant and its transportation mechanism in different types of fractures[J]. Petroleum Science,2024:1-22.
·Li J,Kuang S,Huang F,et al. CFD-DEM modelling and analysis of proppant transportation inside tortuous hydraulic fractures[J]. Powder Technology,2023,432:119155.
·Li J,Han X,He S,et al. Transportation and deposition of oval and cylindrical shaped proppant particles in complex-fracture systems[J]. Powder Technology,2023,434:119298.
·Li J,Han X,He Siyuan,et al. Visual lab tests:effect of operational parameters on proppant transportation in a 3D printed vertical hydraulic fracture with two-sided rough surfaces[J]. SPE Journal,2023:1-15.
·Li J,He S,Wu M. A new type micro-proppant and its property evaluation for shale gas reservoirs[J]. SPE Journal,2023:1-16.
·Li J,He S,Wu M,et al. A comprehensive review of the proppant transportation in different simplified fracture models:Experimentation,modeling,and prospects[J]. Geoenergy Science and Engineering,2023,228:211974.
·Li J,Wu M,Zhou L,et al. A new proppant type fully coupled fiber-proppant and its property evaluation for unconventional reservoirs[J]. Journal of Petroleum Science and Engineering,2022,208:109573.
·Li J,Kuang S,Zheng Q,et al. Experimental investigation of the leak-off effect on proppant transportation and distribution in a vertical fracture[J]. Journal of Natural Gas Science and Engineering,2021,196:107738.
·Xiao H,Li Z,He S,Lu X,Li J. Experimental study on proppant diversion transportation and multi-size proppant distribution in complex fracture networks[J]. Journal of Petroleum Science and Engineering,2020,196(6):107800.
·Li N,Li J,Zhao L,et al. Laboratory testing on proppant transport in complex-fracture systems[J]. Spe Production & Operations,2017,32(4):382-391.
·Li N,Zeng F,Li J,et al. Kinetic mechanics of the reactions between HCl/HF acid mixtures and sandstone minerals[J]. Journal of Natural Gas Science & Engineering,2016,34:792-802.
·You X,Liu J,Jia C,Li J,et al. Production data analysis of shale gas using fractal model and fuzzy theory:Evaluating fracturing heterogeneity[J]. Applied Energy,2019,250:1246-1259.
·Liu P,Huang Q,Li J,et al. Review and perspectives of coated proppant technology[J]. Energy and Fuels,2023,37:3355-3370.
发明专利:
·李骏,何思源,吴明移,等.一种蜂巢液体原料组合物及其制备方法与应用:CN116790241B[P]. 2023-02-09.
·李骏,何思源,吴明移,等.一种高强度支撑剂及其制备方法:CN116285939B[P]. 2023-02-15.
·李骏,赵立强,刘平礼,等.一种模拟多角度缝网支撑剂沉降规律实验装置:CN104792491B [P]. 2017-09-08.
·李骏,邹瑞萍,刘平礼,等.一种模拟围压条件下动态扩展粗糙裂缝网络可视化装置:CN110469311B[P]. 2021-10-01.
·李骏,吴明移,周利华,等.高效节能、桥接通道全耦合纤维支撑剂体系及其应用方法:CN111961460B[P]. 2021-08-03.
·李骏,周利华,吴明移,等.一种智能包封氧化剂及应用方法:CN202011344244.3[P]. 2023-03-28.
·李骏,吴明移,何思源,等.一种增强支撑剂承压能力的压裂液体系及其使用方法:CN113337266A[P]. 2023-03-28.
·李骏,何思源,吴明移,等.一种压裂用高强度支撑剂及其制备方法:CN113308237A[P]. 2022-12-20.
·周利华,李骏,吴明移,等.一种智能包封酸及应用方法:CN202011344244.3[P]. 2023-03-28.
·刘平礼,李骏,赵立强,等.一种可视化模拟动态单缝内支撑剂沉降规律的装置和方法:CN105275444B[P]. 2017-10-13.
·李珍明,刘平礼,李骏,等.一种可视化水平井井筒滞砂实验评价装置:CN107905777B[P]. 2020-04-07.
(3)学术会议
·李骏. Laboratory testing and numeric simulation on laws of proppant transport in complex fracture systems[R].北京:SPE Asia Pacific Hydraulic Fracturing Conference,2016-08.
·李骏. A new quantitive predicting model of fracturing fluid flow-back: based on fractal theory and fuzzy statistic method[R].香港:10th International Conference on Applied Energy (ICAE2018),2018-08.
·李骏. Proppant transport and placement under different densities in tortuous hydraulic fracture[R].澳大利亚 墨尔本:3rd International Symposium on Computational Particle Technology,2018-08.
·李骏. Effect of proppant sizes and injection modes on proppant transportation and distribution in the tortuous fracture model[R].江苏 苏州:International Symposium on Simulation and Modelling of Particulate Systems,2023-08.
·李骏.基于仿生学的高效充填颗粒及其性能研究[R].海南 海口:中国颗粒大会年会,2023-04.
·李骏.银川:2023年压裂用石英砂材料技术与标准研讨会,2023-09.
·李骏. The research and development of a novel dandelion-based bionic proppant and its transportation mechanism in different types of fractures[R]. 沙特阿拉伯:2024 International Petroleum Technology Conference and Exhibition,2024-02.
科研项目:
·国家自然科学基金(青年科学基金项目),52404041,仿生学蒲公英支撑剂构建特性及其在深层页岩裂缝中的结构影响机制与输运机理研究,2025.01-2027.12,主持
·中国石油科技创新基金研究项目,2024DQ02-0131,超临界二氧化碳携带支撑剂在真实粗糙裂缝中的输运及分布规律数值模拟研究,2025.03-2028.03,主持
·中国博士后科学基金会面上项目,2023M742904,蒲公英支撑剂的耦合机理及其在深层页岩裂缝中的运动现象与机理研究,2023.11-2025.11,主持
·四川省科技厅青年基金项目,2023NSFSC0946,新型仿生学蒲公英支撑剂在裂缝中的沉降机理与输运规律研究,2023.01-2024.12,主持
·油气藏地质及开发工程全国重点实验室课题,PLN2023-41,粗糙迂曲裂缝中支撑剂输砂机理及其应用研究,2023.10-2025.10,主持
·澳大利亚研究理事会(Australian Research Council,ARC IH140100035),Research Hub project,IH140100035,Research Hub for Computational Particle Technology,2016.06-2021.06,参与
·中海石油(中国)有限公司天津分公司项目,疏松砂岩储层压裂增效关键技术研究服务,2021.09-2023.10,主研
·长庆油田公司油气工艺研究院,复杂裂缝支撑剂运移规律模拟实验研究,2017.09-2018.09,主研
·中国石化石油工程技术研究院,可视化复杂缝网支撑剂运移规律研究,2016.12-2017.12,主研