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On the dynamic detonation parameters in acetylene-oxygen mixtures with varying amount of argon dilution

机译:氩气稀释量不同的乙炔-氧气混合物中的动态爆轰参数

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摘要

In this investigation, the dynamic detonation parameters for stoichiometric acetylene-oxygen mixtures diluted with varying amount of argon are measured and analyzed. The experimental results show that the critical tube diameter and the critical energy for direct initiation of spherical detonations increase with the increase of argon dilution. The scaling behavior between the critical tube diameter d_c and the detonation cell size λ as well as the critical direct initiation energy E_c is systematically studied with the effect of argon dilution. The present results again validate that the relation d_c= 13λ holds for 0-30% argon diluted mixtures and breaks down when argon dilution increases up to 40%. It is found that the explosion length scaling of R_o ~ 26λ becomes also invalid when the mixture contains approximately this same amount of argon dilution or more. This critical argon dilution is indeed close to that found from experiments in porous-walled tubes by Radulescu and Lee (2002) which exhibit a distinct transition in the failure mechanism. Cell size analysis in literature also indicates that the cellular detonation front starts to become more regular (or stable) when the argon dilution reaches more than 40-50%. Regardless of the degree of argon dilution or mixture sensitivity, the phenomenological model developed from the surface energy concept by Lee, which provides a relation that links the critical tube diameter and the critical energy remains valid. The present experimental results also follow qualitatively the observation from chemical kinetic and detonation instability analyses.
机译:在这项研究中,测量并分析了用不同量的氩气稀释的化学计量乙炔-氧气混合物的动态爆轰参数。实验结果表明,直接引爆球形爆轰的临界管径和临界能量随氩气稀释率的增加而增加。在氩气稀释的影响下,系统地研究了临界管直径d_c与爆轰孔尺寸λ以及临界直接引发能E_c之间的结垢行为。目前的结果再次证明,对于0-30%的氩稀释混合物,d_c =13λ成立,并且在氩稀释增加至40%时分解。结果发现,当混合物中氩气稀释量大致相同或更多时,R_o〜26λ的爆炸长度定标也变得无效。氩气的这种临界稀释确实与Radulescu和Lee(2002)在多孔壁管中的实验所发现的稀释度非常接近,该实验在失效机理上表现出明显的转变。文献中的细胞大小分析还表明,当氩气稀释达到40-50%以上时,细胞爆轰前沿开始变得更加规则(或稳定)。不管氩气稀释的程度或混合物的敏感性如何,由Lee提出的表面能概念开发的现象学模型均有效,该模型提供了将临界管直径与临界能联系起来的关系。本实验结果也定性地遵循了从化学动力学和爆轰不稳定性分析中观察到的结果。

著录项

  • 来源
    《Combustion and Flame》 |2014年第5期|1390-1397|共8页
  • 作者单位

    East China University of Science and Technology, State Environmental Protection Key Laboratory of Risk Assessment and Control on Chemical Process, Shanghai 200237, China,Beijing Institute of Technology, State Key Laboratory of Explosion Science and Technology, Beijing 100081, China;

    Concordia University, Department of Mechanical and Industrial Engineering, Montreal H3G 1M8, Canada;

    Concordia University, Department of Mechanical and Industrial Engineering, Montreal H3G 1M8, Canada;

    McGill University, Department of Mechanical Engineering, Montreal H3A 2K6, Canada;

    Beijing Institute of Technology, State Key Laboratory of Explosion Science and Technology, Beijing 100081, 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
  • 关键词

    Detonation; Critical tube diameter; Critical initiation energy; Cell size; Argon dilution;

    机译:爆震临界管直径;临界引发能;像元大小氩稀释;
  • 入库时间 2022-08-18 00:11:31

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