◎学习与工作经历 2011.9-2015.7,西安交通大学,能源动力系统及自动化/工商管理(钱学森实验班),学士 2015.9-2018.11,多伦多大学,机械与工业工程,博士 2018.12-2020.08,多伦多大学,机械与工业工程,博士后 2021.01-至今,中国石油大学(华东),石油工程学院,教授(博导)
◎研究方向 立足于微纳米流控芯片的实验技术优势,交叉结合微纳尺度流体数值模拟、人工智能和精细化工等相关方向,探索为油气和新能源开发提供孔隙尺度精确流体信息的方法,包括: 1. 高温高压微纳流控芯片技术开发 2. 微纳尺度流动模拟及相态理论研究 3. 油气藏(页岩、致密)芯片物模实验技术开发 4. 地下储碳储氢问题相关的芯片物模实验技术开发 5. 纳米限域效应下的流体物性参数测试 6. 油田功能性流体合成
◎学术兼职 1. ACS, CSC, CSChE等国际学术组织会员 2. SPE多伦多大学分会副会长 3. 担任Nano Letters, ACS Nano, Langmuir, Lab on a Chip, Nanoscale等国际学术期刊审稿人 4. 担任Petroleum Science, Capillarity等期刊青年编委,担任Energies客座编辑
◎主讲课程 主讲本科《油层物理》,研究生《渗流力学理论进展》和《渗流物理(国际班)》课程。
◎指导研究生 课题组长期招收优秀博士、硕士研究生,同时欢迎有兴趣参与科研的本科同学积极联系。专业背景要求符合工程大类(石油、机械、化工等)或数理大类(如数学、计算机等)通识基础。博士、硕士招生专业学位:油气田开发工程(学术型),资源与环境(工程型)。 课题组坚持以师生协同发展为导向,努力营造自由、包容、开放的学术环境,鼓励学生自主探索交叉研究方向。同时课题组与世界知名高校,如多伦多大学、阿尔伯塔大学、奥斯丁大学、莫纳什大学等保持长期合作,为优秀学生提供国际化视野、交流、深造的资源平台。 2021级 - 硕士:段华正 2022级 - 博士:王曾定、吴奇徽,硕士:丁柯沥、王健、刘腾宇、刘善超、宁闯、董田田、胡宗文
◎承担科研课题 主持项目: 1. 国家海外高层次人才引进计划(青年项目),基于微纳米流控芯片的致密油气藏开发诊断技术,2022-2024 2. 国家自然科学基金面上项目,基于纳米流控芯片实验的页岩油藏两相渗流微观机理研究,2022-2025 3. 山东省优秀青年基金(海外),页岩油气纳米流控检测技术的开发与应用,2022-2025 4. 中国石油大学(华东)人才启动基金,纳米孔隙尺度两相渗流机理研究,2021-2025 5. 中石化胜利油田勘探开发研究院横向课题,东营凹陷页岩的渗吸特征及影响因素研究,2021-2022 6. 中石化胜利油田勘探开发研究院横向课题,高压渗吸作用可视化及弹性开发在线核磁共振实验测试,2022-2023 7. 中石油勘探开发研究院横向课题,孔-缝耦合尺度下的页岩油相变规律及流动特性,2022-2023 8. 中石油勘探开发研究院横向课题,凝析油气藏注空气相态实验,2022-2023 参与项目: 1. 加拿大国家自然科学与工程基金(NSERC),协同研发项目(CRD),Hydrocarbon phase transitions in nanochannels, 2016-2018 2. 加拿大阿尔伯塔省能源与环境创新基金(AIEES),Hydrocarbon in nanochannels: understanding transport in shale, 2017-2019 3. 美国斯伦贝谢公司合作研究项目,Nanofluidics development for experimental shale fluids study, Schlumberger Research Program, 2016-2018 4. 加拿大Eavor Technologies公司合作研究项目,Fluid screening for high efficiency closed-loop geothermal energy, 2019-2020 5. 中石化江汉油田勘探开发研究院横向课题,盐间页岩油合理开发技术政策制定,2022-2023 6. 中石化江汉油田勘探开发研究院横向课题,复兴区块页岩油流动机理及开发技术政策研究,2022-2023
◎获奖情况 1. Rien van Genuchten Early-Career Award of Porous Media for a Green World (2023) 2. Interpore Rosette (2023) 3. 国家优秀自费留学生奖学金 (2018) 4. William Dunbar Fellowship (2017) 5. Ron D. Venter Fellowship (2016) 6. University of Toronto Fellowship (2015-2018)
◎荣誉称号 1. 国家特聘青年专家 2. 山东省海外优青 3. 中国石油大学(华东)光华学者
◎论文 所有论文: https://scholar.google.com/citations?hl=en&user=cGj6yb4AAAAJ&view_op=list_works&sortby=pubdate 代表论文: 1. Zhong, J., Sinton, D.*, et al., Condensation in One-dimensional Dead-end Nanochannels. ACS Nano, 2017, 11, 304. 2. Zhong, J., Sinton, D.*, et al., Capillary Condensation in 8-nm Deep Channels. J. Phys. Chem. Lett., 2018, 9, 497. 3. Zhong, J., Sinton, D.*, et al., Nanomodel Visualization of Fluid Injections in Tight Formations. Nanoscale, 2018,10, 21994. 4. Zhong, J., Sinton, D.*, et al., Fluorescence in Sub-10 nm Channels with An Optical Enhancement Layer. Lab Chip, 2018, 18, 568. 5. Zhong, J., Sinton, D.*, et al., Nanoscale Phase Measurement for the Shale Challenge: Multicomponent Fluids in Multiscale Volumes. Langmuir, 2018, 34, 9927. 6. Zhong, J., Sinton, D.*, et al., When Robotics Met Fluidics. Lab Chip, 2020, 20, 709. (Cover Article) 7. Zhong, J., Sinton, D.*, et al., Accelerating fluid development on a chip for renewable energy. Energy Fuels, 2020, 34, 9. 8. Zhong, J., Sinton, D.*, et al., Exploring Anomalous Fluid Behavior at the Nanoscale: Direct Visualization and Quantification via Nanofluidic Devices. Acc. Chem. Res., 2020, 53, 347. 9. Zhong, J.*, et al., Simulation of water self-imbibition in nanometer throat-pore structure filled with oil. Geoenergy Sci. Eng., 2022, 221, 211370. 10. Hu, X., Zhong, J.* et al., Direct Visualization of Nanoscale Salt Precipitation and Dissolution Dynamics during CO2 Injection. Energies, 2022, 15, 9567. 11. 钟俊杰* 等,基于纳米流控技术的页岩储层微观流体特征研究进展,石油学报,2023, 1, 44
◎学术交流 1. 纳米流控技术在油气开发与新能源研究上的应用, The 5th International Conference on Digital Core Analysis, 2021, CN 2. Direct Visualization of Fluid in Nanopores - Fundamental and Application in Shale with Nanofluidics, 11th Interpore Annual Meeting, 2019, ES. 3. Probing shale gas/tight oil properties in nanoconfinement: a nanofluidic approach, 68th Canadian Chemical Engineering Conference, 2018, CA. 4. Application of Micro/Nanofluidics in Energy and Chemical Engineering, 重庆大学,能源与动力学院,2018, CN. 5. Application of Micro/Nanofluidics in Energy and Chemical Engineering, 中南大学,物理与电子学院,2018, CN. 6. Nanofluidics in Detecting Confined Fluid Behavior for Shale Gas/Oil, 华东理工大学,化学工程联合国家重点实验室,2018, CN. 7. Probing Fluid Phase Change in Nanoconfiment with a Nanofluidic Device, Twentieth Symposium on Thermophysical Properties, 2018, U.S. 8. Nanofluidics: A Window into Unconventional Reservoirs, The Second International Conference of Microfluidics, Nanofluidics, and Lab-on-a-Chip, 2018, CN. 9. Phase Change in Extreme Nanoconfinement: Nanofluidics as a Window into Unconventional Oil and Gas Reservoirs, 5th Nano Today Conference, 2018, U.S. 10. Nanofluidics: Direct Observation of Fluid Behaviors at Sub-10 nm for Unconventional Reservoirs, 67th Canadian Chemical Engineering Conference, 2017, CA. 11. Detecting Phase Change in Extreme Confinement with Nanofluidic Device, 100th Canadian Chemistry Conference and Exhibition, 2017, CA. 12. Nanofluidics: A Window into Unconventional Oil and Gas Reservoirs, GRC Micro & Nanoscale Phase Change Heat Transfer, 2017, U.S. 13. Direct Observation of Capillary Condensation at Sub-100 nm Scale, 11th Ontario-on-a-chip Symposium, 2016, CA. |