个人简介
教育及工作经历:
2009.09-2013.06,山东大学,土建与水利学院,土木工程,学士
2013.09-2018.06,中国科学院,武汉岩土力学研究所,土木工程,博士(导师:杨春和)
2018.08-2020.09,浙江大学,建筑工程学院,岩土工程,博士后(合作导师:陈云敏)
2020.02-2020.05,弗莱贝格工业大学(德国),访问学者
2020.10-2020.12,浙江大学,超重力研究中心,助理研究员
2020.12-至今,浙江大学,超重力研究中心,副研究员
项目经历:
中国博士后科学基金面上资助,2018M642433,水平型盐岩储库建腔复杂流场数学模型与实验研究,2018-2020,主持
岩土力学与工程国家重点实验室开放基金,Z018021,盐穴储气库对流井造腔流场演化机理研究,2019-2020,主持
“十三五”国家重大科技基础设施建设项目,超重力离心模拟与实验装置,2019-2023,参加
国家重点研发计划“场地土壤污染成因与治理技术”重点专项,遗留堆填场地及周边土壤与地下水原位协同修复技术,2020-2025,骨干
国家自然科学基金基础科学中心项目,多相介质超重力相演变,2020-2024,参加
国家自然科学基金面上项目,不规则盐穴储气库气垫回溶修复机理与过程控制研究,2018-2021,参加
国家重点实验室仪器研发专项,多夹层盐穴造腔模拟实验装置研制与开发,2013-2018,参加
发明专利:
[1]李金龙,徐文杰,詹良通,陈云敏等.超重力真三轴岩石加载实验装置及方法[P].CN109632509B,2019-10-22.
[2]李金龙,徐文杰,詹良通,陈云敏等.超重力二维岩体模型实验装置及方法[P].CN109682688B,2019-10-22.
[3]李金龙,徐文杰,詹良通,陈云敏等.一种异重流体的超重力流场模拟实验装置及方法[P].CN109506883A,2019-03-22.
[4]李金龙,施锡林,石晖,马洪岭等.盐水浓度分层测量装置[P].CN104807722A,2015-07-29.
[5]李金龙,施锡林,马旭强等.一种盐岩室内水溶造腔试验浓度场监测装置[P].CN104931457A,2015-09-23.
[6]李金龙,施锡林,李银平,杨春和等.盐岩水平溶腔精细探测的装置及方法[P].CN104793265A,2015-07-22.
软件著作权:
[1]李金龙等.超重力流体模拟实验浓度场识别系统V1.0[CP/CD].登记号:2019SR0203432
[2]李金龙等.盐岩可视化造腔实验激光扫描三维重建系统V1.0[CP/CD].登记号:2015SR110213
[3]李金龙等.盐岩水溶造腔浓度场激光采集系统V1.0[CP/CD].登记号:2015SR110263
近期论文
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学术论文:
Li,J.L.,Shi X.L.,Zhang S.Construction modeling and parameter optimization of multi-step horizontal energy storage salt caverns.Energy 2020;203:117840.https://doi.org/10.1016/j.energy.2020.117840(中科院一区,IF=6.082)
Li,J.L.,Xu W.J.,Zheng J.J.,Liu W.,Shi X.L.,Yang C.H.Modeling the mining of energy storage salt caverns using a structural dynamic mesh.Energy 2020;193:116730.https://doi.org/10.1016/j.energy.2019.116730(中科院一区,IF=6.082)
Li,J.L.,Tang Y.,Shi X.L.,Xu W.J.,Yang C.H.Modeling the construction of energy storage salt caverns in bedded salt.Applied Energy 2019;255:113866.https://doi.org/10.1016/j.apenergy.2019.113866(中科院一区,IF=8.848)
Li,J.L.,Yang C.H.,Shi X.L.,Xu W.J.,Li Y.P.,Daemen J.J.K.Construction modeling and shape prediction of horizontal salt caverns for gas/oil storage in bedded salt.Journal of Petroleum Science and Engineering 2020,190:107058.https://doi.org/10.1016/j.petrol.2020.107058(SCI收录,IF=2.886)
Li J.L.,Shi,X.,Yang,C.,Li,Y.,Wang,T.,&Ma,H.(2018).Mathematical model of salt cavern leaching for gas storage in high-insoluble salt formations.Scientific Reports,8(1).https://doi.org/10.1038/s41598-017-18546-w(SCI收录,IF=4.259)
Li J.L.,Shi,X.,Yang,C.,Li,Y.,Wang,T.,Ma,H.,…Liu,J.Repair of irregularly shaped salt cavern gas storage by re-leaching under gas blanket.Journal of Natural Gas Science&Engineering,2017,45:848-859.(SCI收录,IF=2.718)
Li,J.L.,Shi,X.,Wang,T.,Yang,C.,Li,Y.,Ma,H.,…Shi,H.A prediction model of the accumulation shape of insoluble sediments during the leaching of salt cavern for gas storage.Journal of Natural Gas Science&Engineering,2016,33:792-802.(SCI收录,IF=2.718)
Li J.L.,Shi X.L.,Yang C.H.,et al.The application of ultrasonic imaging technology in the detection of water filled goaf area:A case study[C].//51st U.S.Rock Mechanics/Geomechanics Symposium,San Francisco,2017.(EI收录)
Wang,T.,Yang,C.,Li,J.,Li,J.,Shi,X.,&Ma,H.(2017).Failure Analysis of Overhanging Blocks in the Walls of a Gas Storage Salt Cavern:A Case Study.Rock Mechanics and Rock Engineering,50(1),125–137.https://doi.org/10.1007/s00603-016-1102-1
Wang,T.T.,Ma,H.L.,Shi,X.L.,Yang,C.H.,Zhang,N.,Li,J.L.,…Daemen,J.J.K.(2018).Salt cavern gas storage in an ultra-deep formation in Hubei,China.International Journal of Rock Mechanics and Mining Sciences,102,57–70.https://doi.org/10.1016/j.ijrmms.2017.12.001
Shi,X.L.,Yang,C.H.,Li,Y.P.,Li,J.L.,Ma,H.L.,Wang,T.T.,…Zhang,N.(2017).Development prospect of salt cavern gas storage and new research progress of salt cavern leaching in China.In 51st US Rock Mechanics/Geomechanics Symposium 2017(Vol.4,pp.2297–2306).American Rock Mechanics Association(ARMA).
Hu,Y.,Xu,W.,Zhan,L.,Li,J.,&Chen,Y..(2020).Quantitative characterization of solute transport in fractures with different surface roughness based on ten barton profiles.Environmental ence and Pollution Research,1-16.
学术兼职
Applied Energy、Journal of Natural Gas Science and Engineering 审稿人