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首页> 外文期刊>Energy & fuels >Measurement Of Laminar Burning Velocities Of Dimethyl Ether-air Premixed Mixtures With N_2 And Co_2 Dilution
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Measurement Of Laminar Burning Velocities Of Dimethyl Ether-air Premixed Mixtures With N_2 And Co_2 Dilution

机译:N_2和Co_2稀释的二甲醚空气预混混合物的层流燃烧速度测定

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摘要

Measurements of laminar burning velocities of dimethyl ether-air premixed mixtures with N_2 and CO_2 dilution were made at room temperature and atmospheric pressure using the spherically expanding flame and schlieren photography over a wide range of dilution and equivalence ratios. The stretched flame propagation speed, the unstretched flame propagation speed, the unstretched laminar burning velocity, and the Markstein length (L_b) were obtained and analyzed. The results show that the flame speeds and the burning velocities decrease monotonously with the increase of the dilution ratio. The maximum value of the unstretched laminar burning velocity is presented at the equivalence ratio of 1.1, regardless of N_2 dilution ratios, while it slightly shifts to the rich mixture side with the increase of the CO_2 dilution ratio. This phenomenon reveals the different dilution effect on the unstretched laminar burning velocity between the triatomic molecule gas CO_2 and the diatomic molecule gas N_2. The Markstein length increases with the increase of the dilution ratio. The addition of diluents to the stoichiometric and/or the lean mixture has a larger influence on the Markstein length compared to those of the rich mixture. The addition of diluents obviously enhances the stability of the flame front for the lean mixture, but the impact is slight for the rich mixture. The influence of CO_2 as the diluent on the flame speed and the flame stability is larger than that of N_2 as the diluent for dimethyl ether-air mixture combustion.
机译:在室温和大气压下,使用球形膨胀火焰和Schlieren摄影,在较宽的稀释度和当量比范围内,测量了N_2和CO_2稀释的二甲醚-空气预混混合物的层流燃烧速度。得到并分析了拉伸的火焰传播速度,未拉伸的火焰传播速度,未拉伸的层状燃烧速度和马克斯坦长度(L_b)。结果表明,随着稀释比的增加,火焰速度和燃烧速度单调降低。不论N_2稀释比如何,未拉伸层流燃烧速度的最大值均以当量比1.1表示,而随着CO_2稀释比的增加,其略微移至富混合气一侧。这种现象揭示了三原子分子气体CO_2和双原子分子气体N_2对未拉伸层流燃烧速度的不同稀释作用。 Markstein长度随着稀释率的增加而增加。与浓混合物相比,向化学计量和/或稀混合物中添加稀释剂对马克斯坦长度的影响更大。稀释剂的添加明显增强了稀混合气的火焰前沿稳定性,但对浓混合气的影响很小。作为稀释剂的CO_2对二甲醚-空气混合物燃烧的影响,其火焰速度和火焰稳定性大于作为稀释剂的N_2的影响。

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  • 来源
    《Energy & fuels》 |2009年第1期|p.735-739|共5页
  • 作者单位

    State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

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