首页> 外文会议>2011 International Conference on Computer Distributed Control and Intelligent Environmental Monitoring >Numerical Study of Effect of Burner Jet Parameters on High Temperature Air Combustion of Coal Gas
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Numerical Study of Effect of Burner Jet Parameters on High Temperature Air Combustion of Coal Gas

机译:燃烧器射流参数对煤气高温空气燃烧影响的数值研究

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A numerical simulation was carried out on the High Temperature Air Combustion of coal gas in an industrial furnace with a multi-jet burner. The effect of jet parameters on NOx emission, temperature and oxygen distribution was investigated. A Beta function PDF(Probability Density Function) combustion model was selected to simulate the gas combustion combined with the standard k-ƒÕ model to simulate the turbulent flow. The radiation was simulated by a Discrete Ordinates method. The NOx emission was simulated by thermal NOx model. The effect of jet parameters, i.e., the velocity ratio of fuel jet and air jet and the fuel jet inclined angle on the combustion characteristics was discussed. The simulated results showed that the jet parameters changed the recirculation of flue gas in the furnace leading to different mixing of the fuel, air and hot flue gas which determined the local temperature, oxygen concentration and NOX production. As the velocity ratio of fuel jet and air jet and the fuel jet inclined angle increased, the flue gas recirculation was enhanced and the low oxygen zone enlarged. The maximum and mean temperature both decreased and NOX emission decreased.
机译:对带有多喷嘴燃烧器的工业炉中煤气的高温空气燃烧进行了数值模拟。研究了射流参数对NOx排放,温度和氧气分布的影响。选择了Beta函数PDF(概率密度函数)燃烧模型来模拟气体燃烧,并与标准k-ƒÕ模型相结合来模拟湍流。辐射是通过离散标准方法模拟的。通过热NOx模型模拟NOx排放。讨论了喷射参数,即燃料喷射和空气喷射的速度比以及燃料喷射倾斜角对燃烧特性的影响。模拟结果表明,射流参数改变了炉内烟气的再循环,导致燃料,空气和热烟气的不同混合,从而决定了局部温度,氧气浓度和NOX的产生。随着燃料喷射和空气喷射的速度比以及燃料喷射倾斜角的增加,烟气再循环得到增强,低氧区扩大。最高温度和平均温度均下降,NOX排放量下降。

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