
一、 个人基本情况
王博,男,博士,副教授,硕士生导师。2022年获国家建设高水平大学公派研究生项目(CSC)资助,于2025年获得加拿大里贾纳大学(University of Regina)博士学位,现为辽宁省“兴辽英才计划” E计划入选人才。
二、学术兼职
《International Journal of Petroleum Engineering》副主编,《Energy & Environment Nexus》青年编委;多次受邀担任Fuel、Energy、Journal of Petroleum Science and Engineering、Journal of Energy Resources Technology 等国际期刊审稿人。同时为美国机械工程师协会(ASME)、美国化学工程师协会(AIChE)及美国石油工程师协会(SPE)会员,担任加拿大创新联合会主席,积极参与国际学术交流与同行评议工作,在相关领域具有较为广泛的学术影响力与学术服务能力。
三、研究方向
非常规油气田开发、CO2驱油与地质封存(CO2 EOR-CCUS)、油气提高采收率、多孔介质流动机理、油藏数值模拟、管输数值模拟
四、研究生招生专业
油气田开发工程、石油与天然气工程
五、主要业绩
长期从事非常规油气开发、二氧化碳提高采收率与地质封存一体化以及复杂多相流动与传热传质机理等方向研究。主持和参与中国及加拿大纵横向科研项目16项,涵盖中石油、中海油及延长石油重大专项、中加国际合作项目及加拿大自然科学相关研究等。在 Earth-Science Reviews、Fuel、Chemical Engineering Science 等高水平期刊以第一作者/通讯作者发表论文46篇,其中SCI/EI收录16篇;获授权发明专利5件。累计参加国际学术会议11次,涵盖GHGT(Greenhouse Gas Control Technologies Conference)、SPE(Society of Petroleum Engineers Annual Conference)及WPC(World Petroleum Congress)等能源与碳中和领域高水平国际会议,其中7次作口头报告(Oral Presentation)。曾获“创青春”挑战杯国家级铜奖、中国“互联网+”大赛省级金奖、加拿大里贾纳大学院长奖励学者等奖励与荣誉,在CO2地质封存与油气高效开发领域形成了系统性的研究积累与工程应用基础。
六、代表性科研项目(限10项)
[1] 企业横向项目:盐穴储气库光纤监测温度泄露模型测试,2026.06.25-2026.12.31,32万,主持
[2] 企业横向项目:蜀南气矿高石梯区块产能维护对策研究,2026.06.01-2027.05.31,30万,参与/主研
[3] 辽宁省科技厅国际科技合作计划项目(中国与加拿大):浅层稠油油藏二氧化碳采能及封存一体化技术研究,2023.11.01-2025.10.30,30万,主研/加方代表。
[4] 加掌大联邦国家级创新联合资助项目:Evaluation of CO2 sequestration opportunities in Lloydminster post-chops heavy oil reservoirs and underlying aquifers,2020.11.19-2022.12.31,105万,主研/子课题负责人。
[5] 加拿大省级创新资助项目:Geomechanical modelling and prediction of caprock integrity during long term CO2 sequestration in shallow heavy oil reservoirs in Lloydminster area,2023.08.09-2025.08.08,70万,参与/主研
[6] 加拿大省级创新资助项目:Phase II -site selection and characterization of CO2 sequestration in Lloydminster heavy oil reservoirs,2022.09.08-2024.09.07,60万,参与/主研
[7] 加拿大省级创新资助项目:Long term safety CO2 trapping mechanism study in shallow heavy oil reservoirs and underlying saline aquifer in Lloydminster area,2022.07.09-2022.07.08,60万,参与/主研
[8] 加拿大联邦国土资源部项目:Database setup for the methodology development on the CO2 site selection,2022.12.05-2023.12.31,7.5万,参与/主研
[9] 加拿大自然科学基金项目:Cyclic hot solvent injection (CHSI) process for enhanced heavy oil recovery in thin reservoirs,2019.04.15-2020.12.30,100万,主研/子课题负责人
[10] 企业横向项目:凝析气藏注气实验及机理研究,2020.07.08-2022.12.31,760万,参与/主研
七、代表性论著(第一或通讯作者,限10篇)
[1] Insights from dynamics, mechanisms, factors and mitigation strategies of salt precipitation for CO2 geo-storage within saline aquifer (2025). Earth-Science Reviews, 267, 105170. (中科院1区TOP,IF=11.25)
[2] Distinct dynamic mechanisms of salt precipitation induced by sodium chloride and calcium chloride solutions in porous media (2025). Chemical Engineering Science, 316, 121946. (中科院2区/新锐1区TOP,IF=5.08)
[3] Deciphering salt precipitation in saline aquifer carbon sequestration: insight from microfluidic and molecular perspectives. Carbon Capture Science & Technology, 100574. (中科院2区/新锐2区,IF=10.5)
[4] Study on optimized culture of microbial strains and their ability in wax removal and viscosity reduction of paraffin-based crude oil (2024). Fuel, 369, 131697. (中科院1区TOP,IF=7.74)
[5] A semi-analytical mathematical model for the pressure transient analysis of multiple fractured horizontal well with secondary fractures (2022). Journal of Petroleum Science and Engineering, 208, 109444. (中科院2区TOP,IF=5.6)
[6] Experimental study on wax removal and viscosity reduction of waxy crude oil by Ochrobactrum intermedium (2022). Journal of Petroleum Science and Engineering, 213, 110445. (中科院2区TOP,IF=5.6)
[7] Semianalytical model of complex fracture growth in vertical wells based on boundary element theory. Journal of Petroleum Science and Engineering, 208, 109801. (中科院2区TOP,IF=5.6)
[8] Pressure transient analysis of volume-fractured vertical well with complex fracture network in the reservoir (2022). Journal of Natural Gas Science and Engineering, 101, 104556. (中科院2区,IF=5.6)
[9] Pore Size and Structural Effects on Salt Precipitation During CO2 Injection in Geo-sequestration: A Microfluidic Study (2026). Journal of Energy Resources Technology, Part B: Subsurface Energy and Carbon Capture, 2(5), 051001.
[10] 横向间断肋条湍流减阻大涡模拟分析 (2020).表面技术, 49(11),226-235. (EI检索/兵器科学与技术T1期刊)
八、联系方式
联系电话:17604235460(微信同步)
E-mail:bobo.dec28@outlook.com