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TWO-DIMENSIONAL SIMULATION ON PROPAGATION MECHANISM OF H_2/O_2 CYLINDRICAL DETONATION WITH A DETAILED REACTION MODEL: INFLUENCE OF INITIAL ENERGY AND PROPAGATION MECHANISM

机译:具有详细反应模型的H_2 / O_2圆柱爆轰传播机理的二维模拟:初始能量和传播机理的影响

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摘要

The authors studied cylindrical detonation (CD) induced by a direct initiation in the hydro-genloxygen gas mixture using the 2-dimensional compressible Euler equations with a detailed chemical reaction model. As the result, a cellular structure of cylindrical detonation is obtained in the maximum pressure histories such as an open-shutter photograph and a smoked-foil record in the experimental results. The influence of the initiation energy on the propagation of cylindrical detonation is studied to obtain the subcritical and supercritical regimes: The generation of new transverse wave is observed and small cells during their propagation appear just after the detonation initiation. Furthermore, the number of transverse waves increases nonlinearly near the detonation front in each condition. The generation rate of the transverse wave under the high initiation energy becomes slow because the overdriven state which produces a strong shock wave is maintained longer than that under the low initiation energy.
机译:作者使用二维可压缩的Euler方程和详细的化学反应模型研究了氢氧混合气体中直接引发的圆柱爆轰(CD)。结果,在实验结果的最大压力历史记录中获得了圆筒形爆炸的孔结构,例如开卷照片和烟箔记录。研究了引发能量对圆柱爆轰传播的影响,以获得亚临界和超临界状态:观察到了新的横波的产生,并且在爆炸开始后刚好出现了小细胞的传播过程。此外,在每种情况下,在爆震前沿附近,横波的数量非线性地增加。高横波能量下横波的产生速度变慢,这是因为产生强冲击波的过驱动状态比低横波能量下维持得更长。

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