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Combustion characteristics of an ultra low NO_x two-stage premixed combustor

机译:超低NO_X两级预混燃烧器的燃烧特性

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This paper describes the investigation on the characteristics of a two-stage lean premix combustion technique for gas turbine combustors. Numerical as well as experimental methods have been applied to gain detailed understanding of the combustion phenomena. Emphasis has been put on the oxidation behavior of CH_4 and CO in the secondary stage in which the primary hot combustion product mixes with the secondary ultra lean premixture. The computer code CHEMKIN has been used to numerically analyze the chemical kinetics of combustion. The effects of process parameters on the oxidation of CH_4 and CO have been identified. A test combustor has been used to examine the results of the numerical analysis and to gain further understanding of the combustion phenomena in a practical combustor. It has been demonstrated that temperature is the most important parameter for the oxidation of CH_4 and CO. When the temperature in the secondary stage is maintained higher than approximately 900-1000 deg C, the secondary ultra lean premixture can be successfully oxidized for a wide range of operating conditions, in particular for that of the secondary excess air ratio, even though it is out of the flammability limit. By using the knowledge gained by this study, ultra low NO_x emission (10 ppm 0percent O_2 at 1 ata) and high combustion efficiency have been successfully accomplished.
机译:本文介绍了燃气轮机燃烧器两级精益预混燃烧技术的特性研究。已经应用了数值以及实验方法,以获得对燃烧现象的详细了解。在次级阶段的CH_4和CO中的氧化行为已经提出了强调,其中初级热燃烧产物与二级超精益预混物混合。计算机代码Chemkin已用于数值分析燃烧的化学动力学。鉴定了工艺参数对CH_4和CO氧化的影响。测试燃烧器已被用于检查数值分析的结果,并进一步了解实际燃烧器中的燃烧现象。已经证明,温度是CH_4和CO的氧化的最重要参数。当次级阶段的温度保持高于约900-1000℃时,次级超精加工可以成功氧化宽范围操作条件,特别是对于次级过剩的空气比率,即使它超出可燃性极限。通过使用本研究获得的知识,已经成功完成了超低的NO_X发射(10ppm 0ppm o_2)和高燃烧效率已经成功完成。

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