
姓名:万忠民
电话:13337205180
职称:教授
邮箱:zhongminwan@hotmail.com
个人基本情况
万忠民(Wan Zhongmin,Professor),1977年生,重庆人,二级教授,博士生导师,校学术委员会副主任,湖南省科技创新领军人才,湖南省杰出青年基金获得者,湖南省工程热物理学会副理事长,氢能燃料电池技术湖南省工程研究中心主任,广东省工程技术研究中心主任,湖南省新材料产业协会氢能委员会副主任,江苏省双创人才,科技部项目函评/会评专家,氢能产业顾问,湖南理工-北斗航天电池联合研究工程中心主任,新能源研究所所长。主要从事新能源领域的研究,主要包括制氢储氢、氢燃烧利用、燃料电池技术及集成应用等方面的研究。2007年毕业于华中科技大学能源学院,主持国家重点研发计划、国家自然科学基金5项、湖南省科技创新领军人才项目,湖南省杰出青年基金、国家科技支撑计划项目、江苏省双创人才项目、省战略性新兴产业重大项目、省科技厅产学研重大项目、省技术创新重点项目等科研项目30多项;发表论文220余篇,其中SCI/EI收录180余篇,申请/获得专利80余件,参编国家标准1项。
主要研究方向
燃料电池水热管理技术研究
燃料电池核心部件研究
燃料电池系统集成及应用研究
制氢、储氢及运氢方面的研究
氢燃烧利用研究
开设课程
流体力学
有限元分析
机械系统动力学仿真
近年的科研项目、专著与论文、专利、获奖
主持科研项目:
1.氢气高效分离增压设备与家用纯氢/掺氢燃烧器具开发,国家重点研发计划,2021/12-2024/11,国拨经费2020万
2.整体煤气化燃料电池(IGFC)发电关键技术研究,大功率合成气固体氧化物燃料电池发电系统控制与IGFC 系统模拟平台,国家重点研发计划, 2024/12-2027/11,国拨经费302万
3.空冷型阴极开放式质子交换膜燃料电池泡沫金属流场结构设计及水热管理机制研究,国家自然科学基金面上项目,2023/01-2026/12
4.三维立体流场的燃料电池传质强化及水热管理机制研究,国家自然科学基金面上项目,2020/01-2023/12
5.小型无人机用燃料电池瞬时短路加湿的水气传输机制研究,国家自然科学基金面上项目,2017/01-2020/12
6.燃料电池中含湿超薄多孔介质内热质传递与水分迁移耦合机理研究,国家自然科学基金面上,2014/01-2017/12
7.基于多孔微热沉的大功率LED封装散热技术及相关理论研究,国家自然科学基金青年项目,2012/01-2014/12
8. “湖南省科技创新领军人才”项目(项目编号:2020RC4040),2020年1月-2022年12月,湖南省人才项目
9.燃料电池3D流场超薄金属双极板设计制造关键技术研究,湖南省重点研发计划, 2021/07-2023/12
10.闭口质子膜燃料电池水汽输运及热质传递机理研究,湖南省杰出青年基金项目,2018/01-2020/12
11. “江苏省双创人才”项目(项目编号:2015RS3100),2015年1月-2018年12月,江苏省人才计划
申请/授权发明专利:
一种风冷质子交换膜燃料电池双极板202211552378.3
一种反相波浪形流场的质子交换膜燃料电池双极板202211552432.4
一种精确控制氢空预混比例的纯氢燃气灶202211449438.9
一种三维多孔Mo2C/NC@Ni复合制氢材料及其制备方法和应用202211117825.2
一种导电性纤维网络封装的多孔Si/C复合材料及其制备方法和应用202211005071.1
一种蜂窝状碳基质封装的多孔Si复合材料及其制备和应202211006232.9一种废旧铂催化剂的回收再生方法202210927317.4
一种层级多孔MoSe2NC复合制氢材料及其制备方法和应用202210244377.6,
一种层级多孔状Fe3Se4@NC@Ts复合材料及其制备方法和应用202110305511.4
一种家用天然气掺氢热水器装置202110194678.8
一种用于户外加工的氢气输送管道焊接装置及其焊接工艺202110166614.7
一种纯氢燃气灶及其控制方法202110158322.9
一种车用燃料电池动态工况下热力学性能的综合评价方法202110055258.1
一种管道内氢气与天然气混合装置202011634609.6
一种对天然气掺氢比例精确控制的方法与设备202011628794.8
一种射频设备模拟阻力件及其制作方法202011515814.0
一种高纯燃料氢气制备和输送系统及其控制方法202011476473.0
一种掺氢天然气运输分离系统及其控制方法202011477933.1
一种燃料自预热的燃料电池电堆202010203027.6
一种基于自抗扰控制方法的质子交换膜燃料电池湿度控制方法201911289079.3
一种SMT载具翻转自动化设备201910951277.5
一种SMT投首自动化设备201910951266.7
一种燃料电池双极板,万忠民201910888528.X
质子交换膜燃料电池双极板、电池及电池堆201910815685.8
一种燃料电池双极板三维流场201910658177.3
一种电池堆电极块的散热装置及燃料电池堆201910600772.1
输送装置201910562389.1
一种质子交换膜燃料电池平行三维波浪形流场201910191814.0
一种可更换式结构不锈钢金属探针模组及其制备方法201910188424.8
一种磁性一维链状纳米复合物的制备和应用201910166455.3
一种地热驱动的甲醇重整制氢的热电氢三联供系统201910001557.X
代表性著作:
[1] Yiyu Chen , Junming Lu, Zekai Liu, Yuanli Liu, Taiming Huang, Xun Ren, Xiaodong Wang, Zhongmin Wan*,Comprehensive evaluation on a heat self-balanced low-temperature ammonia reforming-based high-power hybrid power generation system combined with proton exchange membrane fuel cell and internal combustion engine,Journal of Cleaner Production,491, 1 2025, 144755
[2] Jing Zhang, Zhongkao Tan, Chengzhi Fan, Jingying Tan, Zhongmin Wan*,Research on anode inlet pressure control strategy of PEMFC through hardware-in-the-loop test,Energy Conversion and Management: X,26, 2025, 100983
[3] Taiming Huang, Pintao Zou, Yufan Xiao, Yan Zhang, Zhongmin Wan*, Zhengkai Tu,Comprehensive analysis of half-wave continuous cooling channels in performance of proton exchange membrane fuel cells,International Journal of Heat and Mass Transfer,244, 2025, 126971
[4] Shuangshuang Ren, Xinxin Tang , Hegen Zheng, Zhongmin Wan*,Multi-scale porous nitrogen-rich large carbon networks modified by bimetallic FeNi alloys as exceptional bifunctional catalysts for rechargeable Zn-air batteries,Journal of Energy Storage,105, 1 2025, 114740
[5] Zheng Wang, Zhilin Li, Jinxu Li, Xi Zhu, Zhongmin Wan*,Synergistic enhancement mechanism of mechanical properties and hydrogen embrittlement resistance in medium Mn steels by coupling warm/cold rolling and delta ferrite,Materials Science and Engineering: A,2025, 147506
[6] Taiming Huang, Wu Ding, Yufan Xiao, Yiyu Chen, Zhongmin Wan*, Zhengkai Tu,Manifold geometry optimization and flow distribution analysis in commercial-scale proton exchange membrane fuel cell stacks,Renewable Energy,237, Part B, 2024, 121736
[7] Yiyu Chen, Jie Niu, Wenjie Liu, Liwen Long, Zhongmin Wan*,Experimental analysis and modeling on the blending limit of domestic burner with porous media for hydrogen enriched natural gas,International Journal of Hydrogen Energy,88, 2024, 1321-1331
[8] Yun Sun, Yixiong Lin, Qinglian Wang, Zhongmin Wan*, Ting Qiu,Design and optimization of bilayer structure in metal foam flow field for proton exchange membrane fuel cell,Applied Thermal Engineering,257, Part B, 2024, 124305
[9] Kai-Qi Zhu, Quan Ding, Ben-Xi Zhang, Duu-Jong Lee, Zhong-Min Wan*, Xiao-Dong Wang,An integrated experimental and numerical investigation of performance and heat-mass transport dynamics in air-cooled PEMFCs with a bamboo-shaped flow field design,Applied Energy, 377, Part B, 2025, 124484
[10] Jiang-Hai Xu, Ben-Xi Zhang, Han-Zhang Yan, Zheng Bo, Zhong-Min Wan*, Xiao-Dong Wang,A decoupling control of air supply for the PEM fuel cell with slide mode-active disturbance rejection controller,Sustainable Energy Technologies and Assessments,72, 2024, 104051
[11] Yiyu Chen, Liwen Long, Jie Hu, Taiming Huang, Zhongmin Wan*, Bo Yu,The combustion characteristics and stable limit of a novel combustor with gradient porous media for hydrogen-enriched natural gas,Journal of the Energy Institute, 116, 2024, 101743
[12] Yiyu Chen, Sai Jiang, Mengjun Long, Xiangzhong Kong, Zhongmin Wan*,Optimization on the peroxide ratio control strategy of PEMFC system based on immune algorithm,International Journal of Hydrogen Energy,71, 2024, Pages 110-120
[13] Yun Sun, Yixiong Lin, Zhongmin Wan, Qinglian Wang, Chen Yang, Wang Yin, Ting Qiu,Water management and performance enhancement in proton exchange membrane fuel cell through metal foam flow field with hierarchical pore structure,Chemical Engineering Journal, 494, 2024, 152944
[14] Taiming Huang, Yufan Xiao, Yiyu Chen , Zhongmin Wan*, Xiaodong Wang, Enhancing heat transfer in proton exchange membrane fuel cells through obstructed cooling channels: A comprehensive study,Applied Thermal Engineering,250, 2024, 123326
[15] Shuangshuang Ren, Pengfei Zhang Hegen Zheng, Zhongmin Wan*,Porous nitrogen-doped carbon nanocages decorated with bimetallic iron/cobalt sites as superior oxygen catalysts for liquid and all-solid-state Zn–air batteries,Journal of Energy Storage,83, 2024, 110660
[16] Wan, ZM, Zhou, YH ,Zhang, J,Chen, X,Ou, CJ, Kong, XZ,A frogspawn inspired twin Mo2C/Ni composite with a conductive fibrous network as a robust bifunctional catalyst for advanced anion exchange membrane electrolyzers,NANOSCALE,14 2024,16(11):5845-5854
[17] Jiang-Hai Xu, Ben-Xi Zhang, Zhong-Min Wan*, Xiao-Dong Wang,Sliding mode – Extended state observer control strategy to improve energy transfer of PEMFC connected DC-DC boost converter system,Sustainable Energy Technologies and Assessments,63, 2024, 103654
[18] Jiang-Hai Xu, Ben-Xi Zhang, Kai-Qi Zhu, Zhong-Min Wan*, Shu-Han Hsu, Wei-Mon Yan, Xiao-Dong Wang,Fault diagnosis of PEMFC based on fatal and recoverable failures using multi-scale convolutional neural networks,International Journal of Hydrogen Energy,80, 2024, Pages 916-925
[19] Kai-Qi Zhu, Quan Ding, Ben-Xi Zhang, Jiang-Hai Xu, Duu-Jong Lee, Zhong-Min Wan*, Xiao-Dong Wang,Performance enhancement of air-cooled PEMFC stack by employing tapered oblique fin channels: Experimental study of a full stack and numerical analysis of a typical single cell,Applied Energy,358, 2024, 122595
[20] Yun Sun, Yixiong Lin, Qinglian Wang, Chen Yang, Zhongmin Wan*, Ting Qiu,Novel design and numerical investigation of a windward bend flow field for proton exchange membrane fuel cell,Energy,290, 2024, 130142
[21] Zheng Wang, Zhilin Li, Xi Zhu, Xi Chen, Jinxu Li, Zhongmin Wan*,Correlational research of microstructure characteristics and hydrogen induced cracking in hot-rolled Fe-6Mn-0.2C-3Al steels,Corrosion Science, 228, 2024, 111811
[22] Jing Zhang, Jingxing Feng, Zhenyu Wang, Yu Wu, Shanwu Lu, Xiangzhong Kong, Taiming Huang, Zheng Wang, Xiaodong Wang, Zhongmin Wan,Study on the effect of static magnetic field strength and arrangement on the working performance of PEMFC with different flow fields,Energy Conversion and Management: X,Volume 21, January 2024, 100517
[23] Xiangzhong Kong, Ziyang Xi, Yingjie Jiang, Shi Li, Xi Chen, Zhongmin Wan*, Anqiang Pan,Fe-N-C decorated fibrous network-wrapped biomass SiOx/C with gradient conductive structure for high performance Li-ion battery anodes,Chemical Engineering Journal,477, 2023, 147178
[24] Kong, XZ; Xi, ZY; Jiang, YJ; Li, S ; Chen, X ; Zhang, J,Wan, ZM *,Encapsulating biomass-derived SiOx with internal conductive channels in nitrogen-doped flexible carbon cages for high performance Li ion-battery anodes,INORGANIC CHEMISTRY FRONTIERS,J2024,11(3)912-925
[25] Jiang-Hai Xu, Ben-Xi Zhang, Han-Zhang Yan, Zhong-Min Wan*, Xiao-Dong Wang,A comprehensive assessment of the hybrid power generation system of PEMFC and internal combustion engine based on ammonia decomposition,Energy,2023, 129559
[26] Wan Zhongmin, Pan Dingchang, Zhu Xi, Chen Yiyu, Huang Taiming, Wang Xiaodong,Numerical study on the performance of a novel three-dimensional stepped wavy flow field in PEMFC,Energy Conversion and Management: X ,20, 2023, 100469
[27] Kai-Qi Zhu, Quan Ding, Ben-Xi Zhang, Jiang-Hai Xu, Yan-Ru Yang, Duu-Jong Lee, Zhong-Min Wan, Xiao-Dong Wang,Evaluation of performance and mass transfer characteristics by applying oblique fin flow field to air-cooled PEMFCs under different ambient conditions,Sustainable Energy Technologies and Assessments, 60, 023, 103517
[28] Xi Chen, Chunxi Wang, Jianghai Xu, Shichun Long, Fasen Chai, Wenbin Li, Xingxing Song, Xuepeng Wang, Zhongmin Wan,Membrane humidity control of proton exchange membrane fuel cell system using fractional-order PID strategy,Applied Energy ,2023,343:121182
[29] Zhongmin Wan, Linqing Wang, Yuheng Zhou, Ziyang Xi, Yong Liu, Lihua Wang, Xi Chen, Shi Li, Xiangzhong Kong, Mo2C nanocrystalline coupling with Ni encapsulated in N-doped fibrous carbon network as bifunctional catalysts towards advanced anion exchange membrane electrolyzers,Journal of Alloys and Compounds,2023, 968:172111
[30] Zhongmin Wan, Hanzhang Yan, Chen Yang, Xi Chen, Xiangzhong Kong, Thermal management improvement of air-cooled proton exchange membrane fuel cell by using metal foam flow field, Applied Energy,2023,333: 120642
[31] Xi Chen, Shichun Long , Chunxi Wang, Shi Li, Zhongmin Wan*, Comprehensive assessment on a hybrid PEMFC multi-generation system integrated with solar-assisted methane cracking, International Journal of Hydrogen Energy, 2023
[32] Xi Chen, Shichun Long, Lingxuan He, Xiangzhong Kong, ZhongminWan*,Performance evaluation on thermodynamics-economy-environment of PEMFC vehicle power system under dynamic condition,Energy Conversion and Management, 269, , 116082
[33] Shi Li, Shi Luo, Ziyang Xi, Linqing Wang, Zhongmin Wan*, Fe3Se4 rice grains anchored on cotton-derived porous carbon network for enhanced sodium ion storage and hydrogen evolution reactions, Applied Surface Science, 2023,610, 1:155529
[34] Quan Ding, Kaqi Zhu, Chen Yang, Zhongmin Wan*, Xiaodong Wang, Evaluation criterion of flow fields in PEM fuel cells based on entropy generation analysis,International Journal of Hydrogen Energy, , 2023,48(6):2328-2340
[35] Quan Ding, Kaiqi Zhu, Jianghai Xu, Zhongmin Wan*, Xiaodong Wang, Effects of pumping power on oxygen transport and performance of proton exchange membrane fuel cell,Journal of the Taiwan Institute of Chemical Engineers,2023,,14:104749
(责编/王荣荣 初审/李凯 终审/周勇)