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Diffusion-Controlled Autoignition of Hydrogen Outflowing into an Air-Filled Channel

机译:扩散控制的自燃氢气充入充满空气通道的自燃

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摘要

The results of a numerical study of the pulsed outflow of hydrogen into an air-filled channel are presented. The adjustable parameters were the initial pressure of hydrogen in the reservoir and the distance from the diaphragm to the ignition point. The pressure, temperature, and water vapor mass fraction profiles along the channel wall at various moments of time were calculated. The autoignition parameters were calculated with account of turbulence, boundary layer formation, heat transfer, and diaphragm opening time. It was demonstrated that the boundary layer effect promotes hydrogen autoignition. The dependence of the distance from the diaphragm to the autoignition point was calculated as a function of the pressure in the reservoir with hydrogen. The simulation results were found to be in close agreement with the available experimental data.
机译:给出了对氢气脉冲进入充气通道的数值研究的结果。可调参数是储罐中氢气的初始压力以及从隔膜到点火点的距离。计算了在不同时间沿通道壁的压力,温度和水蒸气质量分数分布。计算自燃参数时要考虑湍流,边界层形成,传热和隔膜打开时间。结果表明,边界层效应促进了氢的自燃。计算出从隔膜到自燃点的距离的依赖关系,该依赖关系是储氢罐中氢气压力的函数。发现仿真结果与可用的实验数据非常吻合。

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