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[1] Yuan Zhang, Yikang Wang, Feifei Wang*, Xinhua Xu, Xiaohui Wu. Numerical investigation on the transmission and dispersion of aerosols in a 7-stories building drainage system, Building and Environment, 201(15) 2021, 108009.
[2] Jianchun Mi, Pengfei Li, Feifei Wang, Jianpeng Zhang, Guochang Wang. Review on MILD combustion of gaseous fuel: its definition, ignition, evolution, and emissions. Energy & Fuels, 2021. 35, 9, 7572–7607.
[3] Cuijiao Ding, Pengfei Li, G. Shi, Y. Liu, Feifei Wang, Fan Hu. Comparative study between flameless combustion and swirl flame combustion using low preheating temperature air for homogeneous fuel no reduction. Energy & Fuels, 2021, 35, 9, 8181-8193.
[4] Feifei Wang*, Pengfei Li, Jianchun Mi, Ziyun Shu, A novel method to improve stability of MILD combustion in a highly heat-extracted furnace, Fuel, 2021, 120315.
[5] Jiaxin Chen, Hui Hu*, Feifei Wang*, Air quality characteristics in Wuhan (China) during the 2020 COVID-19 pandemic, Environmental Research, 195, 2021, 110879.
[6] Chong Zhang, Liao Li, Jinbo Wang, Feifei Wang*, Wenjie Gang*. Utilization of earth-to-air heat exchanger to pre-cool/heat ventilation air and its annual energy performance evaluation: A case study, Sustainability, 12(20) 2020, 1-17
[7] Jinghua Yu, Kangxin Leng, Feifei Wang*, Hong Ye, Yongqiang Luo, Simulation study on dynamic thermal performance of a new ventilated roof with form-stable pcm in Southern China, Sustainability, 12(22) 2020, 1-21
[8] Minhao Wang, Feifei Wang*, Pengfei Li. Dependence of the blowout limit on flow structure, heat transfer, and pressure loss in a bluff-body micro-combustor. International Journal of Hydrogen Energy. 2020, 45(38) 19912-19925.
[9] Ziyun Shu, Feifei Wang, Chong Dai, Jianchun Mi. Characteristics of nitric-oxide emissions from traditional flame and mild combustion operating in a laboratory-scale furnace. Journal of Thermal Science. 2019, https://doi.org/10.1007/s11630-020-1235-0.
[10] Feifei Wang*, Pengfei Li, Jianchun Mi, JinboWang. A refined global reaction mechanism for modeling coal combustion under moderate or intense low-oxygen dilution condition, Energy, 2018, 157: 764~777.
[11] Feifei Wang*, Enshi Zhang. Xinhua Xu, Jinbo Wang, Jianchun Mi. Particle deposition in ventilation duct with convex or concave wall cavity, Journal of Central South University of Technology, 2018, 25, 2601~2614.
[12] Fan Hu, Pengfei Li, Junjun Guo, Feifei Wang, Kai Wang et al., Optimal equivalence ratio to minimize no emission during moderate or intense low-oxygen dilution combustion, Energy & Fuels, 2018 32(4): 4478−4492.
[13] Xudong Jiang, Pengfei Li, Junjun Guo, Fan Hu, Feifei Wang, Jianchun Mi, Zhaohui Liu, Detailed investigation of NO mechanism in non-premixed oxy-fuel jet flames with CH4/H2 fuel blends, International Journal of Hydrogen Energy, 2018, 43(17):8534~8557.
[14] Feifei Wang*, Enshi Zhang, Jinbo Wang. A study of particle deposition in ventilation ducts with convex or concave wall cavity. Procedia Engineering, 2017, 205: 3285-3292.
[15] Jianpeng Zhang, Pengfei Li, Feifei Wang, Jianchun Mi, Emissions of NO and CO from counterflow combustion of CH4 under MILD and oxyfuel conditions, Energy, 2017, 124:652~664.
[16] Feifei Wang*, Pengfei Li, Jianchun Mi, Jinbo Wang. Chemical kinetic effect of hydrogen addition on ethylene jet flames in a hot and diluted coflow, International Journal of Hydrogen Energy, 2015, 40(46): 16634~16648.
[17] Feifei Wang, Pengfei Li, Jianpeng Zhang, Zhenfeng Mei, Jianchun Mi, Jinbo Wang. Routes of formation and destruction of nitrogen oxides in ch4/h2 jet flames in a hot coflow. International Journal of Hydrogen Energy, 2015, 40(18), 6228-6242.
[18] Zhenfeng Mei, Pengfei Li, Jianchun Mi, Feifei Wang, Jianpeng Zhang. Diffusion MILD combustion of firing pulverized-coal at a pilot furnace. Flow, Turbulence and Combustion, DOI: 10.1007/s10494-015-9642-0, 2015
[19] Jianpeng Zhang, Jianchun Mi, Pengfei Li, Feifei Wang, B. Dally. MILD combustion of methane diluted by CO2 and N2. Energy & Fuels, 2015, 29(7), 4576-4585.
[20] Zhenfeng Mei, Jianchun Mi, Feifei Wang, Pengfei Li, Jianpeng Zhang. Chemical flame length of a methane jet into oxidant stream. Flow, Turbulence and Combustion. 2015, 94:767-794.
[21] Pengfei Li, Feifei Wang, Jianchun Mi, B.B. Dally, A. Parente. Mechanisms of NO formation in MILD combustion of CH4/H2 Fuel Blends. International Journal of Hydrogen Energy, 2014, 39(33), 19187-19203.
[22] Pengfei Li, Feifei Wang, Y. Tu, Zhenfeng Mei, Jianpeng Zhang, Y. et al. MILD Oxy-combustion of light fuel oil and pulverized coal in a pilot-scale furnace. Energy & Fuels, 2014; 28 (2): 1524-1535.
[23] Pengfei Li, Feifei Wang, Jianchun Mi, B.B. Dally, Zhenfeng Mei. MILD combustions at different fuel-air patterns and characteristics of the reaction regime. Energy & Fuels, Accepted. 2014.
[24] Feifei Wang, Pengfei Li, Zhenfeng Mei, Jianpeng Zhang, Jianchun Mi. Combustion of CH4/O2/N2 in a well stirred reactor. Energy, 2014, 72(1), 242-253.
[25] Feifei Wang, Pengfei Li, Zhenfeng Mei, Jianchun Mi. Auto- and forced-ignition temperatures of diffusion flames obtained through the steady RANS modeling. Energy & Fuels, 2014; 28 (1), 666–677. (The Most Read Article in Energy & Fuels in 2014)
[26] Zhenfeng Mei, Pengfei Li, Feifei Wang, Jianpeng Zhang, Jianchun Mi. Influences of reactant injection velocities on MILD coal combustion. Energy & Fuels, 2014; 28 (1), 369–384. (The Most Read Article in Energy & Fuels in 2014)
[27] Pengfei Li, B.B. Dally, Jianchun Mi, Feifei Wang. MILD Oxy-combustion of gaseous fuels in a laboratory scale furnace. Combustion and Flame, 2013; 160(5), 933-946. (The hottest article in Combustion and Flame in 2013 full year)
[28] Feifei Wang, Jianchun Mi, Pengfei Li. Combustion regimes of a jet diffusion flame in hot coflow. Energy & Fuels, 2013; 27 (6), 3488-3498.
[29] Zhenfeng Mei, Feifei Wang, Pengfei Li, Jianchun Mi. Diffusion flame of a CH4/H2 jet in a hot coflow: effects of coflow oxygen and temperature. Chinese Journal Chemical Engineering, 2013; 21(7), 787-799. 2013.
[30] Zhenfeng Mei, Jianchun Mi, Feifei Wang, Dimension of CH4-jet flame in hot O2/CO2 coflow, Energy & Fuel, 2012; 26 (6), 3257-3266.
[31] Jianchun Mi, Feifei Wang, Pengfei Li, B.B. Dally, Modified vitiation by operational parameters in a MILD combustion furnace, Energy & Fuel, 2012; 26(1), 265-277.
[32] Feifei Wang, Jianchun Mi, Pengfei Li, C. Zheng. Diffusion flame of a CH4/H2 jet in hot low-oxygen coflow, International Journal of Hydrogen Energy, 2011; 36(15): 9267-9277.
[33] 王怡康,王飞飞*,徐新华,圆盘通风制曲设备气流组织均匀性优化,煤气与热力,2021,A19.
[34] 刘畅,胡辉,王飞飞*,中度污染情景下武汉市空气质量改善研究,环境科学与技术,2020,9,1-6
[35] 姬鹏程,王飞飞*,高校教室二氧化碳监测与受访者主观评价,煤气与热力,2020,40,10-13
[36] 王明昊,王飞飞。回流与火焰拉伸对氢气微尺度燃烧的影响,华中科技大学自然科学学报,2019,9,127-132.
[37] 石昕平,王飞飞. 换热器中水流动方向对换热量的影响. 建筑热能通风空调 2019; 38 (12): 10-3.
[38] 张恩实, 王飞飞. 冷却塔折流板除雾器叶片折角优化数值模拟. 流体机械 2018, 46(07): 69-75.
[39] 魏苗苗, 王飞飞, 徐新华, 王劲柏. 管壁带凸肋板和凹槽的通风管内颗粒沉降研究. 建筑热能通风空调, 2017, (08): 5-9.
[40] 梅振锋,王飞飞,张健鹏,李鹏飞,米建春. 一次风风速对高温预热空气下的煤粉MILD燃烧的影响, 工程热物理学报, 2014, 35(4), 782-786.
[41] 王飞飞,李鹏飞,米建春,炉壁散热率和烟气循环率对预混燃烧的影响,中国电机工程学报,2011, 31(14): 44-49.
[42] 李鹏飞,王飞飞,米建春,梅振峰,燃料当量比与燃料-空气混合模式对无焰燃烧的影响. 工程热物理学报,2011 (32): 1592-1506.