首页> 外文会议>2014 IEEE Workshop on Electronics, Computer and Applications >Numerical analysis of hydrogen-oxygen combustion in Combustion Light Gas gun with detailed kinetic mechanisms
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Numerical analysis of hydrogen-oxygen combustion in Combustion Light Gas gun with detailed kinetic mechanisms

机译:详细的燃烧机理数值分析燃烧轻气枪氢氧燃烧

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The burning process of premixed hydrogen-oxygen gas in combustion light gas gun is quite dependent on the chemical reaction rate. This paper has established the single-zone mathematical model of hydrogen-oxygen combustion, and simulated the burning process of hydrogen-oxygen in combustion light gas gun with detailed chemical kinetic mechanisms. The computed results agree quite well with the experimental results. The effects of different chemical kinetic models on the burning process were analyzed and compared with each other, and the mole fraction changes of some chemistry species for different kinetic models during the burning process was studied respectively too. The results show that the induction time is earliest when using the single-step kinetic model, and latest when using the seven-step kinetic model, the formations of species H2O2 and OH are particularly important to the combustion of hydrogen-oxygen, the chemical kinetic mechanism has an important impact on the hydrogen-oxygen combustion in combustion light gas gun.
机译:燃烧轻气枪中预混合氢气的燃烧过程完全取决于化学反应速率。建立了氢氧燃烧的单区数学模型,并通过详细的化学动力学机理模拟了燃烧轻气枪中氢氧的燃烧过程。计算结果与实验结果非常吻合。分析并比较了不同化学动力学模型对燃烧过程的影响,并分别研究了不同化学模型在燃烧过程中某些化学物质的摩尔分数变化。结果表明,单步动力学模型的诱导时间最早,而七步动力学模型的诱导时间最新,H2O2和OH的形成对氢氧的燃烧,化学动力学特别重要。机理对燃烧轻气枪的氢氧燃烧有重要影响。

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