Combustion Wave Propagation of a Modular Porous Burner with Annular Heat Recirculation  被引量:2

Combustion Wave Propagation of a Modular Porous Burner with Annular Heat Recirculation

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作  者:SONG Fuqiang WEN Zhi FANG Yuan WANG Enyu LIU Xunliang 

机构地区:[1]School of Energy and Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,China [2]School of Energy and Environmental Engineering,Hebei University of Technology,Tianjin 300401,China

出  处:《Journal of Thermal Science》2020年第1期98-107,共10页热科学学报(英文版)

基  金:supported by the National Key R&D Program of China (2018YFB0605904)

摘  要:A numerical investigation of the different arrangements of porous media in a combustor with annular heat recirculation is conducted.The effect of annular heat recirculation and porous block arrangement on the characteristics of combustion wave propagation is numerically studied.Results show that power input,heat capacity of porous matrix,arrangement of porous blocks,and annular heat recirculation are major factors that influence the propagation of combustion wave.The overall temperature of ceramic porous burner is higher than that of ceramic-metal type burner due to the lower heat storage capacity of the former,especially for the temperature downstream.The flame temperature is higher upstream and lower downstream with metal foams in the annulus than that without metal foams.The flame temperature of uniformity type burner is more uniform than that of gradually-varied and modular type burners.The flame front moves more slowly with metal foams in the annulus than that without metal foams due to the better preheating effect of metal foams.The flame position moves downstream,and the flame temperature gradually decreases and is eventually extinguished due to the low preheating temperature.A numerical investigation of the different arrangements of porous media in a combustor with annular heat recirculation is conducted. The effect of annular heat recirculation and porous block arrangement on the characteristics of combustion wave propagation is numerically studied. Results show that power input, heat capacity of porous matrix, arrangement of porous blocks, and annular heat recirculation are major factors that influence the propagation of combustion wave. The overall temperature of ceramic porous burner is higher than that of ceramic-metal type burner due to the lower heat storage capacity of the former, especially for the temperature downstream. The flame temperature is higher upstream and lower downstream with metal foams in the annulus than that without metal foams. The flame temperature of uniformity type burner is more uniform than that of gradually-varied and modular type burners. The flame front moves more slowly with metal foams in the annulus than that without metal foams due to the better preheating effect of metal foams. The flame position moves downstream, and the flame temperature gradually decreases and is eventually extinguished due to the low preheating temperature.

关 键 词:FLASHBACK START-UP modular porous burner heat recirculation 

分 类 号:TK16[动力工程及工程热物理—热能工程]

 

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