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Modelling Of Combustion And Nitrogen Oxide Formation In Hydrogen-fuelled Internal Combustion Engines Within A 3d Cfd Code

机译:在3d Cfd代码中对氢燃料内燃机的燃烧和氮氧化物形成的建模

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摘要

The concerns about global warming and long-term lack of fossil fuels are strong incentives for alternative fuel research and adaptation of the internal combustion engines (ICE) to these fuels. Because it is free of any carbon compounds and can be produced from alternative sources, hydrogen is an interesting candidate for future ICE-based powertrains. However, the peculiar properties of hydrogen, among those its low density and its very high laminar flame speed, impose specific operating strategies and the adaptation of the conventional research tools. In this context, the 3D CFD models dedicated to combustion and pollutant prediction have to be modified. In the present work, the ECFM (Extended Coherent Flame Model) is adapted to hydrogen combustion through the addition of a new laminar flame speed correlation and a new laminar flame thickness expression. Furthermore, the prediction of the NO_x emissions is performed with a modified version of the extended Zeldovitch model.
机译:对于全球变暖和长期缺乏化石燃料的担忧,强烈推动了替代燃料研究以及内燃机(ICE)对这些燃料的适应性发展。因为它不含任何碳化合物,并且可以从其他来源生产,所以氢是未来基于ICE的动力总成的有趣候选者。然而,在氢的低密度和非常高的层流火焰速度中,氢的独特特性强加了特定的操作策略和对传统研究工具的适应。在这种情况下,必须修改专用于燃烧和污染物预测的3D CFD模型。在当前的工作中,通过添加新的层流火焰速度相关性和新的层流火焰厚度表达式,使ECFM(扩展相干火焰模型)适用于氢气燃烧。此外,使用扩展的Zeldovitch模型的修改版本来执行NO_x排放量的预测。

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