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Ruowen Zong*, Ruxue Kang, Youran Zhi , Analysis of Flame Extinguishment and Height in Low Frequency Acoustically-excited Excited Methane Jet Diffusion Flame, Microgravity Science and Technology, 2018, 10.1007/s12217-017-9590-5.2021,
Ruowen Zong*, Xiping Liu, Influence of Fire Accelerant on the Thermal Degradation and Ignition of Wood Chip, Australian Journal of Forensic Sciences,DOI:10.1080/00450618.2015.1076035.2021,
Jiyun Wang, Xiaoyang Yu, Ruowen Zong*, A dynamic approach for evaluating the consequences of toxic gas dispersion in the chemical plants using CFD and evacuation modelling, Journal of Loss Prevention in the Process Industries 65 (2020) 104156.2021,
Weifeng Zhao, Ruowen Zong*, Tao Wei, Xuejuan Zhao, Guangxuan, Liao, The Physical Model and Validation Study of Ceiling-jet Flow in Near-Field of Corridor Fires, International Journal of Heat and Mass Transfer, 88(2015), 91-100.2021,
C.F. Tao,Y. Shen,R.W. Zong*,Experimental study on virtual origins of buoyancy-controlled jet flames with sidewalls,Applied Thermal Engineering 106 (2016) 1088–1093.2021,
Changfa Tao, Yan Shen,Ruowen Zong*, Experimental Determination of Flame Length of Buoyancy-Controlled Turbulent Jet Diffusion Flames from Inclined Nozzles, Applied Thermal Engineering, Applied Thermal Engineering,93(2016), 884–887.2021,
C.F. Tao, Y. Shen, R.W. Zong*, F. Tang, An experimental study of flame height and air entrainment of buoyancy-controlled jet flames with sidewalls, Fuel, 183 (2016) 164–169.2021,
Weifeng Zhao, Ruowen Zong*, Jiahao Liu, Jiana Ye, Kongjin Zhu, Study of the fire characteristics for multi-source fires in the confined corridor, Journal of Wind Engineering & Industrial Aerodynamics, 147(2015) 239-250.2021,
Tao Wei, Ruowen Zong*, Weifeng Zhao, Jiping Zhu, Scale model and numerical validation of smoke movement in long-narrow underground fires, Tunneling and Underground Space Technology, 78 (2018) 27–34.2021,
Weifeng Zhao, Ruowen Zong*, Xueliang Fan, Xuejuan Zhao, Impact of openings on fire properties in the confined corridors, Applied Thermal Engineering, 110 (2017) 746–757.2021,
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