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Numerical study of cellular detonation wave reflection over a cylindrical concave wedge

机译:圆柱形凹楔上蜂​​窝爆炸波反射的数值研究

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摘要

Numerical simulations were performed to study reflection of a stable detonation wave with regular cellular patterns over a cylindrical concave wedge. The dynamics of this reflection phenomenon was described by the two-dimensional reactive Euler equations with a two-step induction-reaction kinetic model and solved numerically using the adaptive mesh refinement code AMROC. The effects of various parameters on the reflection evolution were analyzed in detail. The results indicate that the reflection-type transition of a stable cellular detonation is similar to that of a planar shock wave over a concave wedge. The triple-point trajectory resulted from the Mach reflection when the cellular detonation first encounters the concave wedge coincides with that of the planar shock propagating for the case with the same incident Mach number. As the effective wedge angle continuously increases, the Mach reflection of cellular detonation deviates from that of a planar shock with a reduced Mach stem height, and the transition from Mach to regular reflection occurs at a smaller angle. This observation is further explored by adopting the length-scale (or "corner-signal") concept, examining the velocity variation of corner signals generated by fluid particles around the wedge tip. The reflection dynamics is described qualitatively by the ratio of two length scales characterizing the detonation structure, namely, the induction-zone and reaction-zone lengths. The increase of these length scales raises the Mach stem height and transition angle. Apart from the detonation length scales, the wedge curvature radius is found to have an opposite effect since the increase of radius expands the region where the corner signals are generated by the particles behind the induction zone, and makes the corner signals persist in a state with attenuating velocity. (C) 2019 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:进行数值模拟,以研究圆柱形凹楔上规则蜂窝图案的稳定爆轰波的反射。二维反应性欧拉方程具有两步感应反应动力学模型的二维反应性欧拉方程描述了该反射现象的动态,并使用自适应网格精制码AMROC在数值上进行解决。详细分析了各种参数对反射演化的影响。结果表明,稳定的蜂窝爆炸的反射型转变类似于凹面楔上的平面冲击波的反射型转变。当蜂窝爆炸首先遇到凹面楔时,从马赫反射引起的三穴轨迹与具有相同入射马赫数的壳体的平面冲击传播的平面冲击的轨迹产生。随着有效的楔角连续增加,蜂窝爆炸的马赫反射偏离与减小的马赫杆高度的平面冲击的反射,并且从马赫到常规反射的过渡以较小的角度发生。通过采用长度(或“角信号”)概念,进一步探索该观察,检查由楔形尖端的流体颗粒产生的拐角信号的速度变化。定性地描述了反射动态,其两个长度尺度的比率与爆炸结构的比例,即感应区和反应区长度。这些长度尺度的增加提高了马赫杆高度和过渡角。除了爆震长度尺度外,楔形曲率半径被发现具有相反的效果,因为半径的增加展开了由感应区域后面的粒子产生的角信号,并且使角信号持续存在于状态的区域衰减速度。 (c)2019燃烧研究所。由elsevier Inc.出版的所有权利保留。

著录项

  • 来源
    《Combustion and Flame》 |2019年第4期|179-194|共16页
  • 作者单位

    Natl Univ Def Technol Sci & Technol Scramjet Lab Changsha 410073 Hunan Peoples R China|Concordia Univ Dept Mech Ind & Aerosp Engn Montreal PQ H3G 1M8 Canada;

    Natl Univ Def Technol Sci & Technol Scramjet Lab Changsha 410073 Hunan Peoples R China;

    McGill Univ Dept Mech Engn Montreal PQ H3A 2K6 Canada;

    Concordia Univ Dept Mech Ind & Aerosp Engn Montreal PQ H3G 1M8 Canada;

  • 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

    Cellular detonation; Regular/Mach reflection; Cylindrical wedge; Length-scale effects;

    机译:细胞爆炸;常规/马赫反射;圆柱形楔形;长度尺度效应;

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