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Analysis of auto-ignition of heated hydrogen-air mixtures with different detailed reaction mechanisms

机译:具有不同详细反应机理的加热的氢气-空气混合物的自燃分析

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Auto-ignition processes of hydrogen, diluted with nitrogen, in heated air are numerically investigated by means of an unsteady laminar flamelet approach in mixture fraction space. The focus is on the auto-ignition delay time and the most reactive mixture fraction as obtained with five chemical mechanisms. Two strongly different levels of dilution, corresponding to experiments in the open literature, are considered. This concerns low-temperature chemistry at atmospheric pressure. The temperature of the air stream is much higher than the temperature of the fuel stream in the cases under study. We extensively investigate the effect of the co-flow temperature, the conditional scalar dissipation rate and the resolution in mixture fraction space for one case. With respect to the conditional scalar dissipation rate, we discuss the Amplitude Mapping Closure (AMC) model with imposed maximum scalar dissipation rate at mixture fraction equal to 0.5, as well as a constant conditional scalar dissipation rate value over the entire mixture fraction value range. We also illustrate that an auto-ignition criterion, based on a temperature rise, leads to similar results as an auto-ignition criterion, based on OH mass fraction, provided that the hydrogen is not too strongly diluted.
机译:通过在混合馏分空间中使用不稳定的层流小火焰方法,对在加热的空气中被氮气稀释的氢气的自动点火过程进行了数值研究。重点是通过五种化学机理获得的自燃延迟时间和最具反应性的混合物分数。考虑与公开文献中的实验相对应的两种完全不同的稀释水平。这涉及大气压下的低温化学。在所研究的情况下,空气流的温度远高于燃料流的温度。我们广泛研究了同流温度,条件标量耗散率和混合分数空间分辨率对一种情况的影响。关于条件标量耗散率,我们讨论了在混合分数等于0.5时施加最大标量耗散率的振幅映射闭合(AMC)模型,以及在整个混合分数值范围内恒定的条件标量耗散率值。我们还说明,基于氢温升高的自动点火标准所得出的结果与基于OH质量分数的自动点火标准所产生的结果相似,但前提是氢的稀释要求不应太强。

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