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Numerical Simulations of Detonation Re-Initiation Behind an Obstacle.

机译:障碍物后面爆炸再起爆的数值模拟。

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摘要

This numerical study explored the mechanisms responsible for the re-initiation of a detonation, which quenched while diffracting over a half-cylinder obstacle. Its purpose was to accurately predict when detonation re-initiations occur, determine roles of re-initiation mechanisms, and compare effects of chemical models.;The model used reactive Euler equations with the one-step Arrhenius or two-step chain-branching chemical models, calibrated to post-shock conditions to reproduce the ignition delay. Simulations were validated using the stoichiometric methane-oxygen experiments of Bhattacharjee et al..;The model accurately predicted detonation re-initiation conditions found in experiments with good qualitative and quantitative agreement. While the one-step model was sufficient in predicting re-initiation, the two-step model reproduced finer details. Kelvin-Helmholtz and Richtmyer-Meshkov instabilities did not appear to influence detonation re-initiation of the Mach stem. Detonation re-initiation occurred due to adiabatic compression of the Mach stem, or transport of a flame along the wall jet. Transverse detonations were poorly reproduced.
机译:这项数值研究探索了引起爆炸重新开始的机制,该爆炸在绕过半圆柱障碍物扩散时被淬灭。其目的是准确地预测何时发生爆炸再起爆,确定起爆机理的作用,并比较化学模型的效果。该模型使用具有一阶Arrhenius或两步链支化化学模型的反应性Euler方程。 ,针对震后条件进行校准,以重现点火延迟。使用Bhattacharjee等人的化学计量甲烷-氧气实验对模拟进行了验证;该模型以良好的定性和定量一致性,准确地预测了在实验中发现的爆炸起爆条件。虽然一步模型足以预测重新初始化,但是两步模型可以再现更详细的信息。 Kelvin-Helmholtz和Richtmyer-Meshkov不稳定性似乎不影响马赫杆的起爆重新初始化。由于马赫杆的绝热压缩或沿壁射流的火焰传输,引爆过程重新开始。横向爆轰再现不佳。

著录项

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2013
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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