起爆
障碍物
机械
加速度
爆燃转爆轰
氢
爆燃
材料科学
同种类的
化学
热力学
爆炸物
经典力学
物理
法学
有机化学
政治学
作者
Jiabao Wang,Xinyu Zhao,Longkun Gao,Xujiang Wang,Yuejin Zhu
标识
DOI:10.1016/j.ijhydene.2022.02.035
摘要
Ensuring hydrogen safety has become of great significance nowadays, whose leakage can possible result in the deflagration to detonation (DDT). The numerical study aims to explore the effect of solid obstacle distribution on the DDT in a homogeneous hydrogen-air mixture. Results show that the detonation initiation process can be classified into two types: i) local spherical detonation caused by the coupling of flame surface and high-pressure region; ii) detonation triggered by the interaction between the upper wall and multiple compression waves in front of the flame. Also, this study finds that the flame acceleration (FA) experiences two periodic “acceleration-deceleration” processes before the detonation initiation, and the initiation distance and time are the shortest when the obstacles are symmetrically distributed. Further, the higher the unilateral blockage ratio, the more unfavorable DDT occurs. The present results highlight the effect of different solid obstacle distribution patterns on the FA and DDT process. • Different obstacle distribution patterns affect the flame acceleration process. • Two different detonation initiation processes are classified. • Flame velocity undergoes periodic “acceleration-deceleration” processes. • Symmetrical distribution of obstacles is most conducive to DDT. • Location and time of detonation initiation vary with the obstacle distribution.
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