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Direct numerical simulation of ignition of syngas (H-2/CO) mixtures with temperature and composition stratifications relevant to HCCI conditions

机译:具有与HCCI条件有关的温度和成分分层的合成气(H-2 / CO)混合物着火的直接数值模拟

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In this paper, ignition characteristics of syngas (H-2/CO) under homogeneous charge compression ignition environment have been studied using direct numerical simulation (DNS) and detailed reaction mechanism with temperature stratification. 2D DNS are performed by varying several parameters such as fuel composition, temperature fluctuation (T') and with different temperature and composition correlations. Results show that high H2 content syngas mixture exhibits increase in peak mean heat release rate (HRR) and decrease in spreading of mean HRR. Also, for large T', deflagration mode of ignition becomes dominant source of HRR and reduces the effects of fuel composition on peak mean HRR. On the contrary, spontaneous mode of ignition becomes dominant source of HRR and occurs more homogenously for small T', and this phenomenon becomes significant for low H2 content syngas mixture. The effect of different correlations between temperature and composition on ignition in syngas illustrate that HRR occurs from mixed mode of deflagration and spontaneous ignition for uncorrelated cases, whereas spontaneous mode of ignition occurring homogeneously is the major source of HRR for negatively correlated cases. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文利用直接数值模拟(DNS)和详细的温度分层反应机理研究了均相充量压缩点火环境下合成气(H-2 / CO)的点火特性。通过更改几个参数(例如燃料成分,温度波动(T'))并使用不同的温度和成分相关性来执行2D DNS。结果表明,高H2含量的合成气混合物表现出峰值平均热释放速率(HRR)的增加和平均HRR的散布的减小。同样,对于大T',点火的爆燃模式成为HRR的主要来源,并减少了燃料成分对峰值平均HRR的影响。相反,自燃模式成为HRR的主要来源,并且对于较小的T'会更均匀地发生,并且这种现象对于低H2含量的合成气混合物而言变得很明显。温度和成分之间不同相关性对合成气中着火的影响表明,在不相关的情况下,HRR发生于爆燃和自燃的混合模式,而在不相关的情况下,均匀发生的自燃是HRR的主要来源。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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