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Experimental research on the relation of parameters of C 2H 2-2.5O 2-Ar mixtures detonation: Critical tube diameter, cell size and critical energy of direct initiation

  • Bo Zhang*
  • , Chun Hua Bai
  • , John H.S. Lee
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • McGill University

Research output: Contribution to journalArticlepeer-review

Abstract

A critical tube diameter measurement system was established for C 2H 2-2.5O 2-Ar mixtures detonation. Initiation of detonation was accomplished via a high voltage spark energy source. The critical tube diameters under different initial pressures of C 2H 2-2.5O 2, C 2H 2-2.5O 2-50%Ar, C 2H 2-2.5O 2-70%Ar mixtures were measured in experiments. The results show that, with the increasing of argon dilution for the same tube diameter, the critical pressure, at which the planar detonation can emerge from a tube into unconfined space to form a spherical detonation, increases as well, that indicates the sensitivity of the mixtures detonation decreases. In addition, the relationship between critical tube diameter and cell size for those mixtures were investigated. Finally, the correlation between critical tube diameter and critical energy of direct initiation was analyzed. Good agreement was found by comparing the experiment data with Lee's surface energy model. Therefore, the parametric function between critical tube diameter and the critical energy would be E c=16 -1πρ 0 v CJ 2Id c 3.

Original languageEnglish
Pages (from-to)226-230
Number of pages5
JournalBeijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology
Volume32
Issue number3
Publication statusPublished - Mar 2012

Keywords

  • Cell size
  • Critical energy
  • Critical tube diameter
  • Detonation
  • Spark ignition

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