首页> 外文会议>ASME power conference >INFLUENCE OF EXCESS AIR FACTOR ON NOX EMISSIONS FROM A 200 KW SWIRL BURNER
【24h】

INFLUENCE OF EXCESS AIR FACTOR ON NOX EMISSIONS FROM A 200 KW SWIRL BURNER

机译:过量空气因子对200 kW旋流燃烧器NOx排放的影响

获取原文
获取外文期刊封面目录资料

摘要

NOx formation during the combustion process occurs mainly through the oxidation of nitrogen in the combustion air (thermal NOx) and through oxidation of nitrogen with the fuel (prompt NOx). The present study aims to investigate numerically the problem of NOx pollution using a model of combustion chamber with 200 kW swirl burner utilizing propane as fuel. The importance of this problem is mainly due to its relation to the pollutants produced by boiler furnaces and gas turbines, which used widely in thermal industrial plants. Governing conservation equations of mass, momentum and energy, and equations representing the transport of species concentrations, turbulence, combustion and radiation modeling in addition to NOx modeling equations were solved together to present temperature and OH distribution inside the combustion chamber, and the NOx concentration at the combustion chamber exit, at various operating conditions of fuel to air ratio. In particular, the simulation provided more insight on the correlation between the peak flame temperature and the thermal NOx concentration. The results have shown that the peak flame temperature and NOx concentration decrease as the excess air factor λ increases. When considering a fixed value of mass flow rate of fuel, the results show that increasing λ. results in a maximum value of thermal NOx concentration at the exit of the combustion chamber at λ = 1.05. As the combustion air temperature increases, and the thermal NOx concentration increases sharply. However, when λ exceeds this value NOx concentration starts to decrease due to the combustion air temperature decrease.
机译:燃烧过程中形成NOx的过程主要是通过燃烧空气中氮的氧化(热NOx)和燃料中氮的氧化(提示NOx)而发生的。本研究旨在使用带有丙烷作为燃料的200 kW旋流燃烧器的燃烧室模型来数值研究NOx污染问题。这个问题的重要性主要是由于它与锅炉炉和燃气轮机产生的污染物有关,这些锅炉炉和燃气轮机广泛用于热力工厂。控制质量,动量和能量的守恒方程,以及表示物种浓度,湍流,燃烧和辐射建模的方程,除NOx建模方程外,还一起求解,以显示燃烧室内的温度和OH分布,以及燃烧室出口在各种空燃比条件下工作。特别地,该模拟提供了关于峰值火焰温度与热NOx浓度之间的相关性的更多见解。结果表明,峰值火焰温度和NOx浓度随过量空气系数λ的增加而降低。当考虑燃料质量流率的固定值时,结果表明λ增加。导致燃烧室出口处的热NOx浓度在λ= 1.05时达到最大值。随着燃烧空气温度的升高,热NOx浓度急剧增加。然而,当λ超过该值时,由于燃烧空气温度降低,NOx浓度开始降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号