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基于CFX的双调风旋流燃烧器数值模拟
引用本文:樊孝华,米翠丽,魏刚,张勇胜. 基于CFX的双调风旋流燃烧器数值模拟[J]. 电站系统工程, 2012, 28(2): 8-11
作者姓名:樊孝华  米翠丽  魏刚  张勇胜
作者单位:河北省电力研究院
摘    要:基于CFX软件平台对DRB-4Z型双调风旋流燃烧器的出口流场进行了数值模拟。结果显示:随着内二次风叶片角度的增大,回流区变长,回流直径变小,射流扩展角增大,最大轴向速度和最大切向速度的衰减变慢。随着过渡风速的增大,回流区变小,并且逐渐远离燃烧器喷口。当过渡风速较小时,回流区伸入燃烧器喷口;当过渡风速过大时,回流区大大减小,火炬刚性减弱。

关 键 词:燃烧器  数值模拟  内二次风叶片  过渡风速  回流区

Numerical Simulation on Dual Channel Swirl Burner with CFX
FAN Xiao-hua , MI Cui-li , WEI Gang , ZHANG Yong-sheng. Numerical Simulation on Dual Channel Swirl Burner with CFX[J]. Power System Engineering, 2012, 28(2): 8-11
Authors:FAN Xiao-hua    MI Cui-li    WEI Gang    ZHANG Yong-sheng
Affiliation:FAN Xiao-hua,MI Cui-li,WEI Gang,ZHANG Yong-sheng
Abstract:The outlet flow field of DRB-4Z type dual channel swirl burner was computed on the CFX software flat.The results show that the recirculation zone become longer,the diameter of the recirculation zone become smaller and the flow divergent angle increase with the rising of internal secondary air velocity.Simultaneously,the attenuation of the highest axial velocity and tangential velocity become slower.With the rising of transiting air velocity,the recirculation zone become smaller and far from the burner nozzle.When the transition air velocity is smaller,the recirculation zone reach into the burner nozzle.When the transition air velocity is too large,the recirculation zone decrease greatly and the torch stiffness is weakened.
Keywords:burner  numerical simulation  internal secondary air blade  transition air velocity  recirculation zone
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