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Experimental study of natural gas flame enriched by hydrogen and oxygen in a coaxial burner

机译:同轴燃烧器中富氢,富氧天然气火焰的实验研究

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In air combustion, nitrogen brings about a low yield of combustion and a high energetic consumption because the nitrogen contained in the air acts as energy ballast. The substitution of air by oxygen or the oxygen addition to the air permits the improvement of the heat yield, the rise of the adiabatic flame temperature and the extension of the flammability limits. The hydrogen addition to the natural gas combustion shows an increase in adiabatic flame temperature, a reduction in flame thickness and further enhances the auto-ignition characteristics and the global rate of heat release. This work presents the effects of enrichment with oxygen and hydrogen on a non-premixed flame behavior. More specifically, the study focuses on the flame stability, the pollutants emissions such as NOx, CO2, and CO and the jet flow dynamic. Chemiluminescence of OH* radical and Particle Image Velocimetry (PIV) are conducted to describe the structure, the stability and the dynamic of the flame. The measurements are conducted at the stoichiometry for oxygen rate varying from 20 to 50% by volume and hydrogen varying from 0 to 15%. The results show that the addition of oxygen and hydrogen improves the flame stability, increases the CO(2)emission, decreases the CO formation but favors the NOx formation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在空气燃烧中,由于空气中所含的氮起着能量镇流器​​的作用,因此,氮的燃烧率低,能量消耗高。用氧气代替空气或将氧气添加到空气中可以提高热量的产生,提高绝热火焰温度并延长可燃性极限。天然气燃烧中添加的氢气显示出绝热火焰温度的升高,火焰厚度的减小,并进一步增强了自燃特性和整体放热率。这项工作提出了氧和氢的富集对非预混火焰行为的影响。更具体地说,研究集中在火焰稳定性,NOx,CO2和CO等污染物排放以及射流动态方面。进行了OH *自由基的化学发光和粒子图像测速(PIV),以描述火焰的结构,稳定性和动力学。以化学计量进行测量,其中氧的比率为20至50体积%,氢的比率为0至15%。结果表明,氧和氢的添加改善了火焰的稳定性,增加了CO(2)的排放,减少了CO的形成,但有利于NOx的形成。 (C)2016 Elsevier Ltd.保留所有权利。

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