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Hydrogen-oxygen flame acceleration and deflagration-to-detonation transition in three-dimensional rectangular channels with no-slip walls

机译:带有防滑壁的三维矩形通道中的氢氧火焰加速和爆燃-爆轰过渡

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摘要

Hydrogen-oxygen flame acceleration and the transition from deflagration to detonation (DDT) in channels with no-slip walls are studied using high resolution simulations of 3D reactive Navier-Stokes equations, including the effects of viscosity, thermal conduction, molecular diffusion, real equation of state and detailed (reduced) chemical reaction mechanism. The acceleration of the flame propagating from the closed end of a channel, which is a key factor for understanding of the mechanism of DDT, is thoroughly studied. The three dimensional modeling of the flame acceleration and DDT in a semi-closed rectangular channel with cross section 10 × 10 mm and length 250 mm confirms validity of the mechanism of deflagration-to-detonation transition, which was proposed earlier theoretically and verified using 2D simulations. We show that 3D model contrary to 2D models allows to understand clearly the meaning of schlieren photos obtained in experimental studies. The "numerical schlieren" and "numerical shadowgraph" obtained using 3D calculations clarify the meaning of the experimental schlieren and shadow photos and some earlier misinterpretations of experimental data.
机译:使用3D反应性Navier-Stokes方程的高分辨率模拟研究了氢氧火焰的加速以及无滑道内通道从爆燃到爆燃(DDT)的转变,包括粘度,导热,分子扩散,实数方程的影响状态和详细的(还原的)化学反应机理。深入研究了从通道封闭端传播的火焰加速度,这是理解滴滴涕机理的关键因素。截面为10×10 mm,长度为250 mm的半封闭矩形通道中的火焰加速和DDT的三维模型证实了爆燃-爆轰过渡机制的有效性,这在理论上已被较早提出并使用2D进行了验证。模拟。我们表明,与2D模型相反的3D模型可以清楚地了解在实验研究中获得的schlieren照片的含义。使用3D计算获得的“数字schlieren”和“数字阴影图”阐明了实验schlieren和阴影照片的含义以及对实验数据的一些早期误解。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第36期|16427-16440|共14页
  • 作者单位

    Joint Institute for High Temperatures, Russian Academy of Sciences, Izhorsteaya 13, Bd. 2, Moscow 125412, Russia;

    Joint Institute for High Temperatures, Russian Academy of Sciences, Izhorsteaya 13, Bd. 2, Moscow 125412, Russia;

    Joint Institute for High Temperatures, Russian Academy of Sciences, Izhorsteaya 13, Bd. 2, Moscow 125412, Russia;

    Moscow Institute of Physics and Technology, Inststitutskii per. 9, Dolgoprudnyi, Moskousk. obl. 141700, Russia,Nordita, KTH Royal Institute of Technology and Stockholm University, Roslagstullsbacken 23, 10691 Stockholm, Sweden;

  • 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

    Hydrogen/oxygen; flame acceleration; DDT; Shock wave; 3D modeling; Detailed chemistry; Detonation;

    机译:氢/氧;火焰加速滴滴涕;激波;3D建模;详细的化学;爆轰;
  • 入库时间 2022-08-18 00:27:59

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