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Differential diffusion effects during the ignition of a thermally stratified premixed hydrogen-air mixture subject to turbulence

机译:热分层预混合氢气与空气混合物着火期间的微分扩散效应

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Recent research efforts have focused on the usage of lean hydrogen-air mixtures in Homogeneous Charge Compression Ignition (HCCI) engines. In this work we investigate the effect of temperature stratification on the occurrence of differential diffusion during the autoignition of a lean premixed hydrogen-air mixture at high pressure, constant volume conditions. We employ a Direct Numerical Simulation methodology including hydrogen-air finite-rate chemistry and molecular transport based on a Lewis number formulation for individual species [E.R. Hawkes, R. Sankaran, P.P. Pebay, J.H. Chen, Combust. Flame 145 (1-2) (2006) 145-159]. At the highest level of temperature stratification tested, we find that differential diffusion has an impact on the heat release rate. Early in the ignition, regions with mixture fraction higher than the initial value are created by differential diffusion and they subsequently burn to achieve higher temperatures, which can be accounted for by simple equilibrium calculations. Later in the ignition process, differential diffusion enhances heat release rate along positively stretched fronts and reduces it for negatively stretched regions. Finally, it is found that mixture fraction is not a conserved scalar due to differential diffusion.
机译:最近的研究努力集中在均匀电荷压缩点火(HCCI)发动机中的瘦氢气混合物的用途。在这项工作中,我们研究了温度分层对高压,恒定体积条件下贫液预混空气混合物自燃期间差分扩散的发生的影响。我们采用直接数值模拟方法,包括基于单个物种的Lewis编号配方的氢气有限速率化学和分子运输[E.R.霍克斯,R. Sankaran,P.P. Pebay,J.H.陈,燃烧。火焰145(1-2)(2006)145-159]。在测试的最高水平的温度分层上,我们发现差分扩散对热释放速率产生影响。在点火中,通过差分扩散产生高于初始值的混合级分的区域,随后燃烧以实现更高的温度,这可以通过简单的平衡计算来占据较高的温度。后来在点火过程中,差分扩散可以沿积极拉伸的前线增强热释放速率,并将其减少为带负拉伸区域。最后,由于差分扩散,发现混合物馏分不是保守的标量。

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