學習工作經歷
學習經歷
2007-2011 美國雪城大學,機械工程系,博士
2004-2007 同濟大學,控制理論與控制工程系,碩士
2000-2004 同濟大學,控制理論與控制工程系,學士
工作經歷
2023- 深圳理工大學材料科學與能源工程學院,副教授
中國科學院深圳先進技術研究院碳中和技術研究所,研究員
2011-2019 美國勞倫斯伯克利國家實驗室,科學家(Research Scientist),項目負責人(PI),首席科學工程研究助理,高級工程研究助理
研究領域
智慧城市低碳能源系統
分散式綜合能源微網系統
零碳建築與能源系統
中長期碳排放建模與戰略研究
學術成果
2016 伯克利實驗室年度科研Spot獎
代表文章
1.Fei Yu, Wei Feng, Maohui Luo, Minda Ma, Kairui You, Liqun Sun, Rui Jiang, Jiawei Leng.Techno-economic analysis of residential building heating strategies,perspectives on cost-effective upgrades in European cities. 2023. iScience (Accepted)
2.Clara Camarasa, Érika Mata, Juan Pablo Jiménez Navarro, Janet Reyna, Paula Bezerra, Gerd Brantes Angelkorte, Wei Feng, Faidra Filippidou, Sebastian Forthuber, Chioke Harris, Nina, Holck Sandberg, Sotiria Ignatiadou, Lukas Kranzl, Jared Langevin, Xu Liu, Andreas Müller, Rafael Soria, Daniel Villamar, Gabriela Prata Dias, Joel Wanemark, Katarina Yaramenka. Global buildings’ decarbonization 2050: A cross-country comparison of modelling scenarios towards 1.5 and 2 °C targets. Natural Communication.
3.N Zhou, N Khanna, W Feng, J Ke, M Levine. Scenarios of energy efficiency and CO2 emissions reduction potential in the buildings sector in China to year 2050.Nature Energy, volume 3, pages978–984 (2018)
4.Y Su, L Wang, W Feng, N Zhou, L Wang. Analysis of green building performance in cold coastal climates: An indepth evaluation of green buildings in Dalian, China.
Renewable and Sustainable Energy Reviews 146, 111149.
5.R Wang, S Lu, W Feng, B Xu. Tradeoff between heating energy demand in winter and indoor overheating risk in summer constrained by building standards. Building Simulation 14 (4), 987-1003.
6.Q Chen, N Li, W Feng*. Model predictive control optimization for rapid response and energy efficiency based on he state-space model of a radiant floor heating system. Energy and Buildings 238, 110832.
7.R Wang, W Feng*, L Wang, S Lu. A comprehensive evaluation of zero energy buildings in cold regions: Actual performance and key technologies of cases from
China, the US, and the European Union. Energy 215, 118992.
8.DL Gerber, F Musavi, OA Ghatpande, SM Frank, J Poon, RE Brown, et. al. A Comprehensive Loss Model and Comparison of AC and DC Boost Converters.Energies 14 (11), 3131.
9.H Ai, M Guan, W Feng, K Li.Influence of classified coal consumption on PM2. 5 pollution: Analysis based on the panel cointegration and error-correction model. Energy 215, 119108.
10.S Zhang, W Xu, K Wang, W Feng, A Athienitis, G Hua, M Okumiya, G Yoon, et. al. Scenarios of energy reduction potential of zero energy building promotion in the Asia-Pacific region to year 2050. Energy 213, 118792.
11.X Dai, Y Li, K Zhang, W Feng*. A robust offering strategy for wind producers considering uncertainties of demand response and wind power. Applied Energy 279, 115742.
12.X Wang, H Tian, F Yan, W Feng, R Wang, J Pan. Optimization of a distributed energy system with multiple waste heat sources and heat storage of different temperatures based on the energy quality. Applied Thermal Engineering 181, 115975.
13.R Wang, S Lu, W Feng, X Zhai, X Li. Sustainable framework for buildings in cold regions of China considering life cycle cost and environmental impact as well as thermal comfort. Energy Reports 6, 3036-3050.
14.C Lin, Y Gao, J Huang, D Shi, W Feng, Q Liu, X Du. A novel numerical model for investigating macro factors influencing building energy consumption intensity. Sustainable Production and Consumption 24, 308-323.
15.W Zhu, W Feng*, X Li, Z Zhang. Analysis of the embodied carbon dioxide in the building sector: A case of China Journal of Cleaner Production, 122438.