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Biao Feng
Title:Lecturer Education:Ph.D
Research Area:The Substitution of Working Fluids, The Basic Thermophysical Properties of Working Fluids, The Flammability of Working Fluids, The combustion of Flammable Gases and Refrigeration and Heat Pump Technology
  • Biography
  • awards
  • Publications
    Biao Feng is currently a lecturer in the College of Electrical and Power Engineering of Taiyuan University of technology. He received a bachelor of engineering from Shanxi University in 2014, and a doctor's degree and a master's degree from Tianjin University in 2020. His research interests include: the substitution of working fluids, the basic thermophysical properties of working fluids, the flammability of working fluids, the combustion of flammable gases and refrigeration and heat pump technology, etc.
    (1) Biao Feng. Baosteel Education Fund Scholarship for outstanding students. Baosteel Education Fund and Tianjin University, 2018.
    (2) Biao Feng. Suzhou Educational scholarship. Suzhou municipal government and Tianjin University, 2017.
    (3) Biao Feng. Advanced individual of science and technology innovation. Tianjin University, 2019.
    (4) Biao Feng. Advanced individual of science and technology innovation. Tianjin University, 2018.  
    (5) Biao Feng. Advanced individual of science and technology innovation. Tianjin University, 2017.
    (1) Biao Feng, Zhao Yang. Research on burning velocity of R152a and its binary mixture [J]. Combustion and flame, 2021, 228:184-192.
    (2) Biao Feng, Zhao Yang, Hua Liu. Research on inhibition of flame retardants on flammability of R1234yf. International journal of refrigeration, 2020, 118: 302-310.
    (3) Biao Feng, Zhao Yang, Zijian Lv, et al. Effect of gas disturbance on combustion characteristics of flammable refrigerants near LFLs. Journal of hazardous materials, 2019, 368: 21-32.
    (4) Biao Feng, Zhao Yang, Rui Zhai. Experimental study on the influence of the flame retardants on the flammability of R1234yf. Energy, 2018, 143: 212-218.  
    (5) Biao Feng, Zhao Yang, Rui Zhai. Experimental research on the concentration characteristics of R32 and R161’ combustion product HF. Energy, 2017, 125: 671-680.
    (6) Biao Feng, Zhao Yang, Rui Zhai. Experimental Research on the Influence of Airflow Disturbance on Combustion Characteristics of R161 in the Vicinity of the Lower Explosion Limit. Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering, 2018, 39(8): 1661-1664.
    (7) Zhao Yang, Biao Feng, et al. Analysis of Lower GWP and Flammable Alternative Refrigerants. International journal of refrigeration, 2021.  https://doi.org/10.1016/j.ijrefrig.2021.01.022 [
    (8) Biao Feng, Zhao Yang, Rui Zhai, et al. Effect of the Lubricating Oil with Flame Retardant on the Lower Flammable Limit of R600a. The 6th International Conference on Cryogenics and Refrigeration (ICCR 2018), 2018, Shanghai.
    (9) Biao Feng, Zhao Yang, Rui Zhai. Experimental study on concentration of combustion product HF of fluorine-containing refrigerants with low GWP. Refrigeration and airconditioning, 2017, 17(5): 87-91.  
    (10) Rui Zhai, Zhao Yang, Biao Feng, et al. Effect of environmental condition on the flammability limits of two isomers of tetrafluoropropene. Combustion and flame. 2019, 207: 295-301.  
    (11) Rui Zhai, Zhao Yang, Biao Feng, et al. Research on miscibility performances of refrigerants with mineral lubricating oils. Applied Thermal Engineering. 2019, 159: 113811.
    (12) Rui Zhai, Zhao Yang, Biao Feng. Miscibility performance of trans-1,3,3,3tetrafluoroprop-1-ene and its binary blends with lubricating oil. International journal of refrigeration, 2017, 75: 95-103.  
    (13) Rui Zhai, Zhao Yang, Yubo Chen, Biao Feng, et al. Theoretical and experimental studies on the combustion mechanism of Trans-1, 3, 3, 3-tetrafluoroprop-1-ene. Energy, 2019, 189: 116087.
    (14) Rui Zhai, Zhao Yang, Yong Zhang, Zijian Lv, Biao Feng. Effect of Temperature and Humidity on the Flammability Limits of Hydrocarbons. Fuel, 2020, 270: 117442.  
    (15) Yubo Chen, Zhao Yang, Rui Zhai, Biao Feng, et al. Miscibility measurement and evaluation method of R290/R1234yf with mineral oil. Journal of Chemical Industry and Engineering (China), 2019, 70(9): 3248-3255.
    (16) Wenzhong Zhao, Zhao Yang, Rui Zhai, Biao Feng, et al. Experimental Study on the Solubility of R1234ze(E) in Polyol Ester Oils. Journal of Refrigeration, 2020, 41(5): 35-41.
    (17) Yang Zhao, Tian Tian, Wu Xi, Zhai Rui, Feng Biao. Miscibility Measurement and Evaluation for the Binary Refrigerant Mixture Isobutane (R600a) +1,1,1,2,3,3,3-Heptafluoropropane (R227ea) with a Mineral Oil. Journal of Chemical & Engineering Data, 2015, 60: 1781-1786.
    (18) Yubo Chen, Zhao Yang, Hua Liu, Yingying Ge, Rui Zhai, Biao Feng, et al. Experimental study on the contribution of R161 and R1234yf to the miscibility of R32 with lubricating oils. Applied Thermal Engineering, 2020, 175: 1151338.
    Patents
    (1) Zhao Yang, Biao Feng, Tian Tian, et al. A new type of refrigerant for medium and low temperature refrigeration system. Invention patent, Patent number:ZL201510183918.9.
    (2) Zhao Yang, Biao Feng, Jianming Tan, et al. A new refrigerant to replace R134a. Invention patent. Patent number: ZL201910050559.8
    (3) Jianming Tan, Hua Liu, Zhao Yang, Biao Feng, et al. A mixed refrigerant to replace R134a. Invention patent. Patent number: ZL201910050560.0

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