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Study on the effect of hydrogen fraction on the premixed combustion characteristics of syngas/air mixtures

机译:氢馏分对合成气/空气混合物预混燃烧特性的影响研究

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摘要

Effect of hydrogen fraction on the combustion characteristics of syngas/air mixtures was experimentally investigated at various hydrogen fractions and equivalence ratios in a turbulent combustion bomb under atmospheric temperature and pressure. The laminar burning velocity and turbulent burning velocity at various hydrogen fractions were measured, and the promotion of turbulence on the burning velocity at various hydrogen fractions was systematically investigated. The results show that the laminar burning velocity of the H_2/CO/air mixture exhibits a non-linear increasing trend with increasing hydrogen fraction. With increasing equivalence ratio, the laminar burning velocity increases remarkably. Reaction CO + OH = CO_2 + H is identified as the most dominate chain branching reactions and reaction H + OH + M = H_2O + M is the most dominant chain termination reaction. The laminar burning velocity exhibits linear and non-linear growth with the maximum concentration of radical H and OH, respectively. With increasing the hydrogen fraction, the value of u_T/u_L shows a non-linear decreasing trend as a whole and the growth rate gradually decreases. As the equivalence ratio increases, the u_T/u_L value decrease. When the hydrogen fraction is more than 50%, the promoting effect of turbulence on the burning velocity decreases gradually.
机译:在大气温度和压力下,在各种氢气级分和湍流燃烧轰炸中的各种氢馏分和等效比的实验研究了氢馏分对合成气/空气混合物的燃烧特性。测量各种氢级分的层状燃烧速度和湍流燃烧速度,系统地研究了各种氢级分的燃烧速度上的湍流。结果表明,随着氢馏分的增加,H_2 / CO /空气混合物的层状燃烧速度表现出非线性增加趋势。随着等效率的增加,层状燃烧速度显着增加。反应CO + OH = CO_2 + H被鉴定为最统称的链支化反应,反应H + OH + M = H_2O + M是最显着的链终止反应。层状燃烧速度分别表现出线性和非线性生长,分别具有最大浓度的自由基H和OH。随着氢馏分的增加,U_T / U_L的值显示了整体的非线性降低趋势,并且生长速率逐渐降低。随着等效比率的增加,U_T / U_L值减少。当氢馏分大于50%时,湍流对燃烧速度的促进效果逐渐降低。

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  • 来源
    《Energy》 |2020年第1期|117592.1-117592.7|共7页
  • 作者单位

    School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China Key Laboratory of Vehicle Advanced Manufacturing Measuring and Control Technology (Beijing Jiaotong University) Ministry of Education Beijing 100044 China;

    School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China Key Laboratory of Vehicle Advanced Manufacturing Measuring and Control Technology (Beijing Jiaotong University) Ministry of Education Beijing 100044 China;

    School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China Key Laboratory of Vehicle Advanced Manufacturing Measuring and Control Technology (Beijing Jiaotong University) Ministry of Education Beijing 100044 China;

    School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China Key Laboratory of Vehicle Advanced Manufacturing Measuring and Control Technology (Beijing Jiaotong University) Ministry of Education Beijing 100044 China;

    School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China Key Laboratory of Vehicle Advanced Manufacturing Measuring and Control Technology (Beijing Jiaotong University) Ministry of Education Beijing 100044 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Syngas; Hydrogen fraction; Turbulence intensity; Turbulent burning velocity; Laminar burning velocity;

    机译:合成气;氢馏分;湍流强度;湍流燃烧速度;层流燃烧速度;

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