English  
姓名: 刘智
性别:
英文名: Zhi Liu
人才称号:
职称: 副教授
职务: 专业: 动力工程及工程热物理
所在机构: 先进内燃动力全国重点实验室 个人主页: http://kjiao.tju.edu.cn/peopleInfo.html?id=139
邮箱: liuzhi16@tju.edu.cn 办公地点:
传真: 办公电话:
主要学历: 2012.09-2019.03,西安交通大学,动力工程及工程热物理系,博士
2008.09-2012.07,华中科技大学,热能与动力工程系,学士


主要学术经历: 2019/05-2022/05,天津大学,机械工程学院,讲师
2022/06-至今,天津大学,机械工程学院,副教授

主要研究方向: 燃料电池电化学热物理过程研究
孔隙结构中传质传热机理研究


主要讲授课程: 《能源与人工智能》、《工程制图基础4》

主要学术兼职: 担任国际期刊Applied Energy和Energies客座编辑

主要学术成就: 获中国能源研究会能源创新奖学术创新一等奖、中国内燃机学会自然科学奖一等奖、国际绿色能源协会科技创新奖等奖励


主要科研项目: (1)国家自然科学基金国际(地区)合作与交流项目(NSFC-RS(中英)),52311530069,2023.05-2025.04,主持
(2)国家自然科学基金青年科学基金,52106105,2022.1-2024.12,主持
(3)中国博士后科学基金面上基金,2021M702431,2021.12-2022.12,主持
(4)天津大学自主创新基金,2022XJC-0001,2022.01-2022.12,主持
(5)企业横向,2022GFW-0523,国创氢能科技有限公司,2022.8-2023.12,主持
(6)企业横向,2021GFW-0570,中国汽车技术研究中心有限公司,2021.9-2022.2,主持
(7)企业横向,2021GFW-0562,长城汽车股份有限公司(河北保定),2021.7-2021.12,主持
(8)企业横向,2020GZR-0248,天津众科科技发展有限公司,2020.2-2020.7,主持
(9)企业横向,2020GKF-0019,蓝鲸(天津)新能源科技有限公司,2020.1-2020.7,主持

代表性论著: [1]Zixuan Wang, Zhi Liu*, Linhao Fan, Qing Du, Kui Jiao*, Application progress of small-scale proton exchange membrane fuel cell, Energy Reviews, 2023, 2(2): 100017.
[2]Zhi Liu*, Jicheng Ma, Kui Jiao, Qing Du, Fuqiang Bai*, Fabrication of high power density paper-based microfluidic fuel cell using a stepped catalyst layer, Biosensors and Bioelectronics: X, 2023, 14: 100345.
[3]Jicheng Ma, Chao Zhang, Fuqiang Xi, Wenmiao Chen, Kui Jiao, Qing Du, Fuqiang Bai*, Zhi Liu*, Experimental study on the influence of environment conditions on the performance of paper-based microfluidic fuel cell, Applied Thermal Engineering, 2023, 219: 119487. (二区,IF:6.465)
[4]Xin Shi, Daokuan Jiao, Zhiming Bao, Kui Jiao, Zhi Liu*, Liquid transport in gas diffusion layer of proton exchange membrane fuel cells: effects of micro-porous layer cracks, International Journal of Hydrogen Energy, 2021, 47 (9): 6247-6258. (二区,IF:7.139)
[5]Ikechukwu S. Anyanwu, Zhiqiang Niu, Shaohui Jin, Kui Jiao, Zhengwei Gong*, Zhi Liu*, Analysis of Compression in Uniform and Non-Uniform GDL Microstructures on Water Transport, International Journal of Green Energy, 2021, 19 (13): 1389-1403. (四区,IF:3.206)
[6]Peiyao Zhi, Zhi Liu*, Kui Jiao, Qing Du, Numerical study on the performance of an H-shaped air-breathing microfluidic fuel cell, Electrochimica Acta, 2021, 392: 139024. (二区,IF:7.336)
[7]Chasen Tongsh, Yiqi Liang, Xie Xu, Zhi Liu*, Qing Du, Kui Jiao*, Experimental investigation of liquid water in flow field of proton exchange membrane fuel cell by combining X-ray with EIS technologies, Science China-Technological Sciences, 2021, 64, 2153–2165. (二区,IF:3.903)
[8]Xiaoyan Sun, Xu Xie, Siyuan Wu, Zhi Liu*, Xia Zhou, Kui Jiao, Investigation of metal foam porosity and wettability on fuel cell water management by Electrochemical Impedance Spectroscopy, International Journal of Green Energy, 2021, 18(7): 708-719. (四区,IF:3.206)
[9]Aezid-Ul-Hassan Najmi, Ikechukwu S. Anyanwu, Xu Xie, Zhi Liu*, Kui Jiao*, Experimental investigation and optimization of proton exchange membrane fuel cell using different flow fields, Energy, 2021, 217: 119313. (二区,IF:8.857)
[10]Guobin Zhang, Kui Jiao, Pengjie Tian, Bowen Wang, Yun Wang*, and Zhi Liu*, Optimization of porous media flow field for proton exchange membrane fuel cell using a data-driven surrogate model, Energy Conversion and Management, 2020, 226: 113513. (一区,IF:11.533)
[11]Ikechukwu S. Anyanwu, Zhiqiang Niu, Daokuan Jiao, Aezid-Ul-Hassan Najmi, Zhi Liu* and Kui Jiao*, Liquid Water Transport Behavior at GDL-Channel Interface of a Wave-Like Channel, Energies, 2020, 13(11): 2726. (三区,IF:3.252)
[12]Kangcheng Wu, Xu Xie, Bowen Wang, Zirong Yang, Qing Du, Jin Xuan, Bingfeng Zu*, Zhi Liu*, Kui Jiao*, Two-dimensional simulation of cold start processes for proton exchange membrane fuel cell with different hydrogen flow arrangements, International Journal of Hydrogen Energy, 2020, 45(35): 17795-17812. (二区,IF:7.139)
[13]Xia Zhou, Lizhen Wu, Zhiqiang Niu, Zhiming Bao, Xiaoyan Sun, Zhanrui Liu, Yanan Li, Kui Jiao, Zhi Liu∗, Qing Du∗, Effects of surface wettability on two-phase flow in the compressed gas diffusion layer microstructures, International Journal of Heat and Mass Transfer, 2020, 151: 119370. (二区,IF:5.431)

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