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Experimental investigation on the effects of hydrogen addition on thermal characteristics of methane/air premixed flames

机译:加氢对甲烷/空气预混火焰热特性影响的实验研究

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摘要

This paper presented an experimental study on the measurements of premixed laminar methane/air flames with and without hydrogen addition. The premixed flames were stabilized on a McKenna flat fame burner at atmospheric pressure. The traveling thermocouple approach was used to measure the axial flame temperature profiles over ranges of equivalence ratios and hydrogen enriching ratios. The measured temperatures, corrected by considering radiation loss, were analyzed to estimate the rate of flame heat release, by solving the continuity equations of mass, energy, and species which were applied to a fiat flame. Some of important flame properties, such as the peak temperature, the average temperature, the flame thickness, the thickness of reaction zone and combustion efficiency, were presented to characterize the effect of hydrogen enrichment on laminar flame propagation. It is shown that the presence of hydrogen in laminar flame can promote flame reaction to some extent. With an increase of hydrogen addition fraction in fuel, the peak rate of heat release and combustion efficiency show increases, while the average temperature gives decrease. The analysis of the heat release profiles suggested that hydrogen addition has significant effect on the early part of flame heat release profile. The flames enriched by hydrogen show linear approximations in the plots of the logarithmic heat release rate against the reciprocal of flame temperature. A modeling for one dimensional premixed laminar burner-stabilized flame had been implemented with GRI-Mech 3.0 detailed kinetic reaction mechanism, based on the measured temperature profiles of these premixed flames. And then an analysis on the heat release was performed for each reaction. It suggested that the reaction OH + H_2 ⇔ H + H_20 gradually increases its contribution to the early heat release with the increase of hydrogen enrichment, which is due to the fact of hydrogen addition resulting in an increased concentration of radical H in flame. The promoted H formation accelerates the flame burning velocity, and then thins the thicknesses of flame and reaction zone to a great extent.
机译:本文介绍了在添加和不添加氢气的情况下,测量预混合层状甲烷/空气火焰的实验研究。在大气压力下,将预混火焰稳定在McKenna平板烟囱上。行进热电偶方法用于测量当量比和氢富集比范围内的轴向火焰温度曲线。通过考虑辐射损失进行校正后,对测得的温度进行了分析,以通过求解应用于法式火焰的质量,能量和物质的连续性方程来估算火焰放热的速率。提出了一些重要的火焰特性,例如峰值温度,平均温度,火焰厚度,反应区厚度和燃烧效率,以表征富氢对层流火焰传播的影响。结果表明,层流火焰中氢的存在可以在一定程度上促进火焰反应。随着燃料中氢添加比例的增加,峰值放热速率和燃烧效率显示出增加,而平均温度降低。放热曲线的分析表明,氢气的添加对火焰放热曲线的早期有重要影响。富氢火焰在对数放热速率与火焰温度倒数的关系图中显示出线性近似。基于这些预混火焰的温度分布,已使用GRI-Mech 3.0详细的动力学反应机理对一维预混层流燃烧器稳定火焰进行了建模。然后对每个反应进行放热分析。这表明随着氢富集的增加,反应OH + H_2⇔H + H_20逐渐增加了其对早期放热的贡献,这是由于添加了氢导致火焰中自由基H的浓度增加的事实。促进的H形成加快了火焰的燃烧速度,并在很大程度上减小了火焰和反应区的厚度。

著录项

  • 来源
    《Fuel 》 |2014年第1期| 232-240| 共9页
  • 作者单位

    School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, PR China;

    School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, PR China;

    School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, PR China;

    Department of Power Engineering, College of Chongqing Communication, Chongqing 400035, PR China;

    Department of Power Engineering, College of Chongqing Communication, Chongqing 400035, PR China;

    Department of Power Engineering, College of Chongqing Communication, Chongqing 400035, PR China;

    School of Thermal Power Engineering, Chongqing University, Chongqing 400044, PR China;

    School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen; Rate of heat release; Flame thickness; l Thickness of reaction zone; Contributing reaction;

    机译:氢;放热率;火焰厚度l反应区厚度;促成反应;

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