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Kinetic simulation of flameless burners with methane/hydrogen blended fuel: Effects of molecular diffusion and Schmidt number

机译:甲烷/氢混合燃料无焰燃烧器的动力学模拟:分子扩散和施密特数的影响

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摘要

The newly developed concept of MILD combustion has paved the way through achievement of high thermal efficiencies with low levels of pollutants and greenhouse gases. High fidelity numerical models play key role in design and optimization of these burners. The present research aims to assess the effect of molecular diffusion and deviations in the amount of different species Schmidt number on the precision of the model. To this end, a previously investigated MILD burner is opted as case-study. From the results it is evident that in contrast to conventional combustion regimes problems, the impact of the often neglected laminar diffusion is comparable to turbulent diffusion. On the other hand, consideration of molecular diffusion in the species transport equation significantly improves the model accuracy only if proper Schmidt number for species are considered. Suitable Sutherland coefficients and Schmidt numbers for each species are found based on relevant data in the literature and reported.
机译:新开发的MILD燃烧概念为实现高热效率,低污染物和温室气体铺平了道路。高保真数值模型在这些燃烧器的设计和优化中起着关键作用。本研究旨在评估分子扩散和不同物种施密特数的数量偏差对模型精度的影响。为此,选择了以前研究过的MILD燃烧器作为案例研究。从结果可以明显看出,与常规燃烧方案问题相反,经常被忽略的层流扩散的影响与湍流扩散相当。另一方面,仅在考虑物种的适当施密特数的情况下,考虑物种迁移方程中分子扩散的作用,才可以大大提高模型的准确性。根据文献中的相关数据,找到并记录了每个物种的合适萨瑟兰系数和施密特数。

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