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Combustion characteristics of natural gas-hydrogen hybrid fuel turbulent diffusion flame

机译:天然气氢混合燃料湍流扩散火焰的燃烧特性

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Combustion characteristics of natural gas - hydrogen hybrid fuel were investigated experimentally in a free jet turbulent diffusion flame flowing into a slow co-flowing air stream. Experiments were carried out at a constant jet exit Reynolds number of 4000 and with a wide range of NG-H_2 mixture concentrations, varied from 100%NG to 50%NG-50% H_2 by volume. The effect of hydrogen addition on flame stability, flame length, flame structure, exhaust species concentration and pollutant emissions was conducted. Results showed that, hydrogen addition sustains a progressive improvement in flame stability and reduction in flame length, especially for relatively high hydrogen concentrations. Hydrogen-enriched flames found to have a higher combustion temperatures and reactivity than natural gas flame. Also, it was found that hydrogen addition to natural gas is an ineffective strategy for NO and CO reduction in the studied range, while a significant reduction in the %CO_2 molar concentration by about 30% was achieved.
机译:实验研究了天然气-氢混合燃料的燃烧特性,该燃烧特性是在自由射流湍流扩散火焰流入缓慢并流的气流中进行的。实验在恒定的射流出口雷诺数为4000且NG-H_2混合物浓度范围较宽的情况下进行,实验范围从100%NG到50%NG-50%H_2。进行了氢气添加对火焰稳定性,火焰长度,火焰结构,废气种类浓度和污染物排放的影响。结果表明,添加氢气可保持火焰稳定性的逐步改善和火焰长度的减少,特别是对于相对较高的氢气浓度。发现富氢火焰比天然气火焰具有更高的燃烧温度和反应性。另外,还发现,在研究范围内,向天然气中添加氢气是降低NO和CO的无效策略,同时可将%CO_2摩尔浓度显着降低约30%。

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