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Pengfei Jie



Pengfei Jie, male, Associate Professor, Master's Supervisor. He received the Doctor of Engineering in Heating, Ventilation and Air Conditioning from Tianjin University. And he was a Postdoctoral Fellow at Tsinghua University. He serves as a reviewer for more than 20 international journals

 

I. Major Research Areas

  1. District Heating
  2. Distributed Energy
  3. Building Energy Conservation and Carbon Reduction

 

II. Research Projects

  1. Research on Waste Heat Utilization Improvement of Nuclear Power Plants, 2024-2025
  2. Digital-Driven Heat Regulation Technology for Heating Systems, 2023
  3. Research on Anticorrosion Technology for Heating Pipelines, 2023
  4. Research on Energy System Upgrade and Renovation Technology for Existing Urban Residential Districts, 2018-2021
  5. Research on Energy Conservation of District Heating Systems Based on Energy Quantity and Energy Quality, 2018-2021
  6. Research on Optimal Integration Mechanism and Viability Evaluation System of Biomass Gasification-Based Building CCHP Systems, 2017-2018
  7. Research on Optimal Operation and Evaluation System of District Heating Systems, 2017-2018
  8. Research and Demonstration of Key Technologies for Energy Efficiency Improvement Equipment of Urban Heating Systems in China, 2012-2015
  9. Implementation System for Heat Metering and Energy Conservation Renovation of Existing Residential Buildings in Northern Heating Areas of China During the 12th Five-Year Plan Period, 2010
  10. Research on Key Technologies for Evaluation and Optimal Design of Energy Supply Systems of Existing Public Buildings in Northern China, 2006-2010

 

III. Representative Publications

  1. Pengfei Jie*, Yuan Zhou, Zhijie Zhang, Fengjun Wei. Heating energy consumption prediction based on improved GA-BP neural network model [J]. Energy, 2025, 328: 136392
  2. Pengfei Jie*, Xinwei Jin, Zhijie Zhang, Yu Fu, Fengjun Wei. Impact of incentive policies on the optimal confguration and performance of biomass gas-driven combined cooling, heating and power system [J]. Energy, 2025, 327: 136374
  3. Pengfei Jie*, Wanyue Zhao, Fuchun Yan, Xiaoxin Man, Chunhua Liu. Economic, energetic and environmental optimization of hybrid biomass gasification-based combined cooling, heating and power system based on an improved operating strategy [J]. Energy, 2022, 240: 122730
  4. Pengfei Jie*, Zhe Li, Yanli Ren*, Fengjun Wei. Economy-energy-environment optimization of biomass gasifcation CCHP system integrated with ground source heat pump [J]. Energy, 2023, 277: 127554
  5. Pengfei Jie*, Fuchun Yan, Zhimei Wen, Jing Li. Evaluation of the biomass gasification-based combined cooling, heating and power system using the maximum generalized entropy principle [J]. Energy Conversion and Management, 2019, 192: 150-160
  6. Pengfei Jie*, Fuchun Yan, Jing Li, Yumei Zhang, Zhimei Wen. Optimizing the insulation thickness of walls of existing buildings with CHP-based district heating systems [J]. Energy, 2019, 189: 116262
  7. Pengfei Jie*, Wanyue Zhao, Fating Li, Fengjun Wei, Jing Li. Optimizing the pressure drop per unit length of district heating piping networks from an environmental perspective [J]. Energy, 2020, 202: 117681
  8. Pengfei Jie, Xiangfei Kong*, Xian Rong, Shangqun Xie. Selecting the optimum pressure drop per unit length of district heating piping network based on operating strategies [J]. Applied Energy, 2016, 177: 341-353
  9. Pengfei Jie*, Zhe Li, Yang Hu, Chunhua liu, Yanli Ren*. Optimization of biomass gasification combined cooling, heating and power system integrated with solar energy [J]. Journal of Building Engineering, 2023, 70: 106279
  10. Pengfei Jie*, Neng Zhu, Deying Li. Operation optimization of existing district heating systems [J]. Applied Thermal Engineering, 2015, 78: 278-288
  11. Pengfei Jie, Zhe Tian*, Shanshan Yuan, Neng Zhu. Modeling the dynamic characteistics of a district heating network [J]. Energy, 2012, 39 (1): 126-134
  12. Pengfei Jie*, Fenghe Zhang, Zhou Fang, Hongbo Wang, Yunfeng Zhao. Optimizing the insulation thickness of walls and roofs of existing buildings based on primary energy consumption, global cost and pollutant emissions [J]. Energy, 2018, 159: 1132-1147
  13. Hongbing Chen, Lei Zhang, Pengfei Jie*, Yaxuan Xiong, Peng Xu, Huixing Zhai. Performance study of heat-pipe solar photovoltaic/thermal heat pump system [J]. Applied Energy, 2017, 190: 960-980
  14. Xiangfei Kong, Pengfei Jie*, Chengqiang Yao, Yun Liu. Experimental study on thermal performance of phase change material passive and active combined using for building application in winter [J]. Applied Energy, 2017, 206: 293-302
  15. Xiangfei Kong, Chengqiang Yao, Pengfei Jie*, Yun Liu, Chengying Qi, Xian Rong. Development and thermal performance of an expanded perlite-based phase change material wallboard for passive cooling in building [J]. Energy and Buildings, 2017, 152: 547-557
  16. Ruihuai Wang, Pengfei Jie*, Delai Wang, Fating Li, Chunhua Liu. Optimization of insulation thickness of double buried district heating pipes using the Eco-indicator method [J]. Journal of Building Engineering, 2021, 41:102393
  17. Pengfei Jie*, Ziyang Zhou, Fengjun Wei, Yanli Ren*. Optimization of radiator area of CHP-based district heating system based on energy cascade utilization [J]. Alexandria Engineering Journal, 2023, 68: 619-631
  18. JIE Peng-fei, KONG Xiang-fei*, LI Jing. Exergy analysis of operation process of district heating systems [J]. Journal of Central South University, 2017, 24 (7): 1663-1670
  19. Fating Li, Pengfei Jie*, Zhou Fang, Zhimei Wen. Determining the optimum economic insulation thickness of double pipes buried in the soil for district heating systems. Frontiers in Energy, 2021, 15 (1): 170-185
  20. Yumei Zhang, Pengfei Jie*, Chunhua Liu, Jing Li. Optimizing environmental insulation thickness of buildings with CHP-based district heating system based on amount of energy and energy grade [J]. Frontiers in Energy, 2022, 16 (4): 613-628
  21. Pengfei Jie*, Fengjun Wei, Fenghe Zhang, Jing Li. Evaluating the performance of biomass gasification based combined cooling, heating, and power system operated under different operating strategies [J]. Advances in Mechanical Engineering, 2019, 11 (2): 1-17
  22. Lingling Bao, Chaoyang Zhong, Pengfei Jie*, Yan Hou. The effect of nanoparticle size and nanoparticle aggregation on the flow characteristics of nanofluids by molecular dynamics simulation [J]. Advances in Mechanical Engineering, 2019, 11 (11): 1-17
  23. Yan Hou*, Pengfei Jie, Huanguang Wang. Heat transfer mechanisms of single droplet impacting onto flowing film [J]. International Journal of Heat and Mass Transfer, 2019, 132: 952-960

 

IV. Patents and Software Copyrights

  1. Pengfei Jie, Fuchun Yan, Lizhen Guo, Yumei Zhang, Fating Li. An optimization method for building wall insulation thickness based on exergoeconomy and exergoenvironment. ZL202010363539.9
  2. Pengfei Jie, Wanyue Zhao, Jiahui Jiang, Fating Li, Fuchun Yan. A method for obtaining optimal insulation thickness of district heating buried pipes based on exergoeconomy. ZL202010801382.3
  3. Pengfei Jie, Wanyue Zhao, Zhuyuan Li, Jingyi Liu. A multi-objective optimization method for biomass gasification CCHP systems. ZL202011480818.X
  4. Pengfei Jie, Wanyue Zhao, Lizhen Guo, Yumei Zhang, Fating Li. A method for determining optimal environmental insulation thickness of building walls based on genetic algorithm. ZL202010054197.2
  5. Pengfei Jie, Huijie Pan, Fating Li, Fuchun Yan, Tingfeng Zhao, Yumei Zhang. An optimization method for insulation thickness of district heating buried pipes based on Eco-indicator-99. ZL201910484142.2
  6. Pengfei Jie, Fuchun Yan, Fating Li, Zhen Shen, Yumei Zhang, Zhou Fang, Han Ma. A method for optimizing pressure drop per unit length of district heating pipes. ZL201910620553.X
  7. Pengfei Jie, Runlin Cong, Fuchun Yan. Biomass gasification trigeneration system and its evaluation method of operational economy. ZL201910203519.2
  8. Pengfei Jie, Fuchun Yan, Fating Li, Yumei Zhang, Tingfeng Zhao, Zhou Fang. An optimization method for insulation thickness of district heating pipes. ZL201811385588.1
  9. Pengfei Jie, Fuchun Yan, Zhou Fang, Shuaiqi Zeng, Zhen Shen. A cooling load prediction method based on genetic algorithm-support vector machine. ZL201811277491.9
  10. Pengfei Jie, Fuchun Yan, Tingfeng Zhao, Fating Li, Yumei Zhang. An optimization method for radiator area in district heating systems. ZL201811385611.7

 

V. Admissions Information

  1. Recruited Majors

(1) Professional Master's Program: Energy and Power (Code: 0858), with a research focus on Clean Energy Technology (Specialization Code: 085807)

(2) Academic Master's Program: Mechanical Engineering (Code: 0802)

  1. Preferred Background

Students with bachelor's degrees in Heating, Ventilation and Air Conditioning, Energy and Power Engineering, New Energy Science and Engineering, Mechanical Engineering, and other related majors, who are diligent, innovative, with strong computer application skills and high English proficiency are warmly welcomed to join the research team.

Contact Information:

Phone: +86 18911120639

E-mail: pengfeijie@163.com