性别:男
出生年月:1991年9月
系别:机械设计系
学位:博士
职称:讲师/硕导
职务:机械设计系教工党支部书记
详细资料
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联系方式
通讯地址:福建省厦门市集美区理工路600号厦门理工学院金沙9159游戏入口,邮编:361024
电子邮箱:hed20@xmut.edu.cn
教育工作经历
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工作经历
2020.11-至今,厦门理工学院,金沙9159游戏入口,讲师
教育背景
2011.09-2015.06,重庆大学,热能与动力工程,学士
2015.09-2020.06, 清华大学,动力工程及工程热物理,博士
研究领域(课题方向)
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1. CO2低能耗捕集技术与装备
2. CO2半导体智能清洗技术与装备
3. CO2地质封存与利用技术
4. 动力电池热管理技术
主要科研项目
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1. 福建省环境保护设计院有限公司, 企业委托项目, ZK-HX25018, 移动式低能耗碳捕集技术建模和设计研究, 2025-01 至 2026-12, 在研, 主持
2. 路达(厦门)工业有限公司, 企业委托项目, ZK-HX25019, 电子恒温混水器技术开发项目, 2025-01至 2025-12,在研, 主持
3. 福建省科学技术厅, 福建省科技计划项目高校产学合作项目, 2022H6036, 智能化微纳喷印成型装备研发及产业化应用, 2022-03 至 2025-03,在研, 参与
4. 厦门市海沧区科技和工信商务局科技计划项目, 350205Z20241004,智能中控系统多模态模型研发及产品应用产业化, 2023-01 至 2025-12,在研, 参与
5. 福建省自然科学基金,碳封存背景下盐析的机理及对裂缝自愈的影响规律研究/ 2021J05261,起止时间:2021.11~2024.11,主持
6. 厦门理工学院科学技术研究项目,微纳复合结构芯片加工和碳封存背景下盖层裂缝盐析自愈机理研究,起止时间:2021.06~2024.6,主持
7. 国家军科委1**基础加强计划项目,复杂**生成技术研究,起止时间:2023.01~2026.12,参与
8. 福建省科技厅高校产学研联合创新项目,半导体精密封装模具干冰绿色清洗及耗材制造装备研制/2021H6010,起止时间:2021.01~2023.12,参与
9. 国家自然科学基金优秀青年基金项目,多孔结构中流动与热质传递机理/51722602,起止时间:2018.1~2020.12,参与
10. 国家自然科学基金重点项目,超临界压力流体在多因素作用下的流动与热质传递机理研究/51536004,起止时间:2016.1~2021.6,参与
11. 国家自然科学基金重点研发计划项目,CO2低能耗捕集与地质封存利用的关键基础科学问题研究/2016YFB0600804,参与
代表性论著
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期刊论文:
1. Di He*; Mincheng Zhang; Zhe Wang; Shuixuan Chen; Heping Yuan. Strategies for Preventing Salt Precipitation and Blockage Risks in CO2 Injection Wells: Pore-Scale Experimental Insights [J]. Energy & Fuels, 2025, 39(6): 3176-87. (SCI, IF:5.3)
2. Di He*, Mincheng Zhang, Zhe Wang; Shuixuan Chen; Heping Yuan. Can the well shut-in strategy alleviate injectivity damage from salt precipitation? [J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2025, 47(1): 11388-403. (SCI, IF:2.3)
3. Shuixuan Chen; Chenlu Guo; Di He*; Mincheng Zhang; Huiting zha; Heping Yuan. Pore-scale experimental investigation of flow-through drying in porous media [J]. Drying Technology, 2024, 43(3): 555-65. (SCI, IF:2.7)
4. Di He; Zhe Wang; Heping Yuan; Mincheng Zhang; Zhaobin Hong; Ruina Xu; Peixue Jiang; Shuixuan Chen*. Experimental investigation of salt precipitation behavior and its impact on injectivity under variable injection operating conditions [J]. Gas Science and Engineering, 2024, 121: 205198. (SCI, IF:5.3, 中科院二区TOP)
5. Zhe Wang; Shuixuan Chen; Heping Yuan; Zhaobin Hong; Ruina Xu; Peixue Jiang; Di He*. Experimental Investigation on Salt Precipitation Behavior during Carbon Geological Sequestration: Considering the Influence of Formation Boundary Solutions [J]. Energy & Fuels, 2023, 38(1): 514-25. (SCI, IF:5.3)
6. Di He; Peixue Jiang; Ruina Xu*. The influence of heterogeneous structure on salt precipitation during CO2 geological storage [J]. Advances in Geo-Energy Research, 2023, 7(3): 189-98. (ESCI, EI, IF:8.2,中科院一区 TOP)
7. Di He; Ruina Xu; Tiancheng Ji; Peixue Jiang ; Experimental investigation of the mechanism of salt precipitation in the fracture during CO2 geological sequestration, International Journal of Greenhouse Gas Control, 2022, 118: 103693-103693. (SCI, IF:3.9)
8. Di He; Ruina Xu; Pei-Xue Jiang ; Pore-Scale Experimental Investigation of the Supercritical CO2 Injection Rate and the Surface Wettability on Salt Precipitation., Environmental science & technology, 2019, 53(24): 14744-14751. (SCI, IF:11.4, 中科院一区TOP)
9. Di He; Peixue Jiang; Zengmin Lun; Xuan Liu; Ruina Xu ; Pore scale CFD simulation of supercritical carbon dioxide drainage process in porous media saturated with water, Energy Sources Part a-Recovery Utilization and Environmental Effects, 2019, 41(15): 1791-1799. (SCI, IF:2.9)
10. Ruina Xu; Rong Li; Jin Ma; Di He; Peixue Jiang. Effect of Mineral Dissolution/Precipitation and CO2 Exsolution on CO2 transport in Geological Carbon Storage, Accounts of Chemical Research, 2017, 50(9): 2056-2066. (SCI, IF:18.3, 中科院一区TOP)
11. Rong Li; Peixue Jiang; Di He; Xue Chen; Ruina Xu. Experimental investigation on the behavior of supercritical CO2 during reservoir depressurization. Environmental science & technology, 2017, 51(15), 8869-8876. (SCI, IF:11.4, 中科院一区TOP)
国家专利:
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1. 国家发明专利,变孔隙率滤芯过滤装置和基于该装置的过滤与反清洗方法,2022 1 0247526.4,2023.05.23,第一发明人
2. 美国发明专利, Process For Treating Waste From A Pithead Power Plant And For Sequestrating Carbon Dioxide Discharged Therefrom,US 10,052,668 B1,2018.08.21
人才计划及获奖情况
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2022年认定为厦门市高层次人才(C类)
2022年认定为福建省高层次人才(C类)
2019年获得王补宣-过增元青年优秀论文二等奖