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Fu Wang
Department/Institute: Department of Marine Engineering / Institute of Mechanical, Electrical and Energy Engineering, Ningbo University
Position:
Title: Professor
Phone:
Email: wangfu@nbu.edu.cn
Address: Wang Mingkang Lexuefang Maritime Building, Meishan Campus, Ningbo University, No. 169 Qixing South Road, Meishan Subdistrict, Beilun District, Ningbo, Zhejiang Province, China
Research Fields -

· Carbon emission reduction technologies and innovative methodologies for energy systems
· Fuel cell integration and control technologies
· Intelligent control and advanced energy management strategies for hybrid-powered ships
· Advanced thermal management and energy quality improvement technologies

Personal Profile -

Fu Wang, Professor and Ph.D. Supervisor. He received his B.Eng. degree in Thermal Energy and Power Engineering from Tianjin University in 2011 and obtained his Ph.D. degree in Thermal Energy Engineering from Tianjin University in 2017. He conducted postdoctoral research and served as a visiting scholar at Mälardalen University, Sweden. He is currently a core member of the Ningbo “3315 Innovation Team”, and has been selected as a Leading and Distinguished Talent of the Yongjiang Talent Program of Ningbo, a Ningbo Young Science and Technology Innovation Leading Talent, and a participant in the International Clean Energy Outstanding Innovative Talent Training Program supported by the China Scholarship Council (CSC).

His research focuses on new energy marine power systems and energy management, solid oxide fuel cell (SOFC) system integration, marine carbon capture, and clean energy utilization. In response to the development demands of low-carbon and zero-carbon marine propulsion systems, he has carried out extensive research on energy management and system optimization of integrated fuel cell–energy storage–conventional propulsion hybrid systems. He has achieved a series of innovative results in the areas of marine new energy system architecture design, reversible solid oxide fuel cell system integration, and coordinated control of multi-energy microgrids. He has proposed thermodynamic analysis methodologies and advanced energy management strategies for multi-energy coupled power systems, providing theoretical foundations and technical solutions for the efficient operation of next-generation green marine power systems.

He has led more than 10 national, provincial, municipal, and industry-sponsored research projects, including sub-projects under the National Key Research and Development Program of China and projects funded by the National Natural Science Foundation of China (NSFC). He has published more than 80 peer-reviewed papers in journals such as Journal of Marine Science and Application, Journal of Dalian Maritime University, and Ship Science and Technology, including 2 highly cited papers. His publications have received more than 2,400 citations according to Google Scholar, with an H-index of 26. He has applied for more than 40 patents, including more than 20 granted Chinese invention patents.


Teaching Courses -

Marine Auxiliary Machinery
Energy Saving and Emission Reduction Technologies for Ships
Fuel Cell Technology
New Energy and Electric Propulsion Technologies for Ships

Publications -

1. Shenao Li, Jingjie He, Xiaoxuan Mu, Lan Xia, He Miao, Chunfei Zhang, Jinliang Yuan, Fu Wang*. Energy-efficient shipboard CO2 capture via an aqueous ammonia/[C4mim][PF6] blend absorbent: Modeling and system integration. Energy, 2026, 360:141584.
2. Lina Wang, Jie Yu, Chaoqi Ma, Chunfei Zhang, Fu Wang*, Jinliang Yuan. Optimization of reversible solid oxide fuel cells for enhanced dual-mode operation: a multi-objective approach using NSGA-II algorithm. Journal of Cleaner Production, 2026, 557: 148220.
3. Shenao Li, Xiaoxuan Mu, Zhiheng Zhang, Xuanmiao Lei, Jinliang Yuan, Fu Wang*, Houcheng Zhang. Modeling and performance analysis of ammonia-based carbon capture integrated with absorption refrigeration system. Applied Thermal Engineering, 2025:127956.
4. Zhiheng Zhang, Xiaoxuan Mu, Xianhui Zhu, Shenao Li, Fu Wang*, Chunfei Zhang, He Miao, Lan Xia, Jinliang Yuan. Bifunctional ionic liquid solutions for efficient CO2 and NH3 absorption: Quantum chemical simulation and experimental investigation. Journal of Molecular Liquids, 2025: 128181.
5. Weihao Guo, Xiaoxuan Mu, Weida Shen, Chaoqi Ma, Jie Yu, Fu Wang*, Jinliang Yuan. The Purge Characteristics and Strategy in a Proton Exchange Membrane Fuel Cell with a Linear Segmentation-Based Anode Recirculation System. Energies, 2025, 18(9): 2156.
6. Yujie Wang, Shuhuan Ding, Aibing Yan, He Miao, Fu Wang*, JinliangYuan. Flow and heat transfer performance analysis of brazed plate heat exchangers under marine vibration conditions. International Journal of Thermal Sciences, 2024, 205, 109270.
7. Lina Wang, Weihao Guo, Zhiheng Zhang, Fu Wang*, Jinliang Yuan. Performance analysis and optimization of syngas composition for reversible solid oxide fuel cells in dual-mode operation based on extreme learning machine. Journal of Power Sources, 2024, 614: 234982.
8. Zhuo Hu, Weihao Guo, Kege Zhou, Lei Wang, Fu Wang*, Jinliang Yuan. Optimization of PID control parameters for marine dual-fuel engine using improved particle swarm algorithm. Scientific Reports, 2024, 14(1): 12681.
9. Fu Wang, Ouyang Liang, Lina Wang, He Miao, Houcheng Zhang, Lan Xia, Lei Wang, Jinliang Yuan. Thermodynamic investigation of an integrated near-zero CO2 emission power generation system with SOFC, MGT, SCO2BC, and CO2 capture. Process Safety and Environmental Protection, 2024, 182: 638-651.
10. Jiecheng Xia, Zhiheng Zhang, Lei Wang, Fu Wang*, He Miao, Houcheng Zhang, Lan Xia, Jinliang Yuan. Performance evaluation and optimization of hollow fiber membrane contactors for carbon dioxide absorption: A comparative study of ammonia, ethanolamine, and diethanolamine solvents. Journal of Environmental Chemical Engineering, 2023, 11(6): 111354.
11. Fu Wang, Nian Victor, Campana Pietro E., Jakub Jurasz, Hailong Li, Chen Li, Tao Wen Quan, Jinyue Yan. Do ‘green’data centres really have zero CO2 emissions?. Sustainable Energy Technologies and Assessments, 2022, 53: 102769.
12. Fu Wang, Lei Wang, Houcheng Zhang, Lan Xia, He Miao, Jinliang Yuan*. Design and optimization of hydrogen production by solid oxide electrolyzer with marine engine waste heat recovery and ORC cycle. Energy Conversion and Management, 2021, 229: 113775.
13. Fu Wang, Lei Wang, Yangliang Ou, Xuanmiao Lei, Jinliang Yuan, Xingjiang Liu, Yingying Zhu. Thermodynamic analysis of solid oxide electrolyzer integration with engine waste heat recovery for hydrogen production. Case Studies in Thermal Engineering, 2021, 27: 101240.
14. Qin Zhao, Houcheng Zhang*, Ziyang Hu, Fu Wang*. A novel hybrid system consisting of a dye-sensitized solar cell and an absorption refrigerator for power and cooling cogeneration. International Journal of Refrigeration, 2020, 113:115-125.
15. Fu Wang, Shuai Deng, Houcheng Zhang, Jiatang Wang, Jiapei Zhao, He Miao, Jinliang Yuan*, Jinyue Yan*. A comprehensive review on high-temperature fuel cells with carbon capture. Applied Energy, 2020, 275: 115342.
16. Fu Wang, Jun Zhao, Houcheng Zhang, He Miao, Jiapei Zhao, Jiatang Wang, Jinliang Yuan*, Jinyue Yan*. Efficiency evaluation of a coal-fired power plant integrated with chilled ammonia process using an absorption refrigerator. Applied Energy, 2018, 230: 267-276.
17. Fu Wang, Jun Zhao, He Miao, Jiapei Zhao, Houcheng Zhang, Jinliang Yuan*, Jinyue Yan*. Current status and challenges of the ammonia escape inhibition technologies in ammonia-based CO2 capture process. Applied energy, 2018, 230: 734-749.
18. Fu Wang, Jun Zhao*, Hailong Li, Shuai Deng, Jinyue Yan*. Preliminary experimental study of post-combustion carbon capture integrated with solar thermal collectors. Applied Energy, 2017, 185: 1471-1480.
19. Fu Wang*, Shuai Deng, Jun Zhao, Jiapei Zhao, Guohua Yang, Jinyue Yan. Integrating geothermal into coal-fired power plant with carbon capture: A comparative study with solar energy. Energy Conversion and Management, 2017, 148: 569-582.
20. Fu Wang, Shuai Deng, Jun Zhao*, Junyao Wang, Taiwei Sun, Jinyue Yan*. Performance and economic assessments of integrating geothermal energy into coal-fired power plant with CO2 capture. Energy, 2017, 119: 278-287.
21. Fu Wang, Hailong Li, Jun Zhao*, Shuai Deng, Jinyue Yan*. Technical and economic analysis of integrating low-medium temperature solar energy into power plant. Energy Conversion and Management, 2016, 112: 459-469.