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Numerical study on three-dimensional C-J detonation waves: detailed propagating mechanism and existence of OH radical

机译:三维C-J爆震波的数值研究:详细传播机制与oh激进的存在

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An unsteady three-dimensional simulation is performed for a hydrogen/air C-J detonation in a rectangular tube, where a detailed chemical reaction model is used to reveal the C-J detonation structure. In this simulation, detailed propagating detonation structures for a diagonal mode are described in three-dimensions. The detonation front structures, the line of triple points, and the strong explosions at the corners of the rectangular tube are revealed by using a three-dimensional numerical visualization. From the spatial isosurface profiles of H_2 mass fraction, it is confirmed that the triple point lines have a role of "shutter" to generate unburned gas pockets and become of a ring shape behind the detonation front due to its explosion. The explosion process and its influence on an induction delay are observed by visualizing the spatial isosurface profiles of OH mass fraction. Moreover, a high "peninsula-shaped" OH mass fraction area, which has been experimentally reported, is reproduced on the side wall of the rectangular tube.
机译:对矩形管中的氢/空气C-J爆炸进行不稳定的三维模拟,其中使用详细的化学反应模型来揭示C-J爆炸结构。在该模拟中,详细传播对角线模式的传播爆震结构在三维中描述。通过使用三维数值可视化揭示了爆震前结构,三维点线和矩形管的拐角处的强爆炸。从H_2质量分数的空间等孔关剖视图中,确认三针线具有“快门”的作用,以产生未燃烧的气体袋,并且由于其爆炸而导致爆炸前面的环形。通过可视化OH质量分数的空间异质曲线观察到爆炸过程及其对感应延迟的影响。此外,在矩形管的侧壁上再现了已经通过实验报道的高“半岛形”OH质量分数区域。

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