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Numerical analysis of fuel injection configuration on nitrogen oxides formation in a jet engine combustion chamber

机译:喷气发动机燃烧室中氮氧化物形成燃料喷射构型的数值分析

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摘要

Emissions of nitrogen oxides from the aviation sector, contrary to the land-based sources, have doubled compared to 1990. Aircraft unique location in the upper atmosphere and daily growth of air-based traffic require particular attention to the effects of these emissions. One way to cope with this problem is to develop and design more efficient combustion systems. In this research, the numerical modelling of combustion process inside a jet engine combustion chamber is presented. The investigated chamber is a theoretical can type chamber mounted with a double stage radial swirler. The advanced k-zeta-f turbulence model was utilised to model the turbulent behaviour, while the spray process was described by the Euler Lagrangian spray modelling approach. Two different modelling approaches for describing the combustion process were employed: reduced chemical mechanism and the 3-zone extended coherent flame (ECFM-3Z) combustion model. Considering the analysis of relevant physical quantities and taking into account the reduction of computational costs while using the ECFM-3Z combustion model, it was employed for analysis of the influence of spray and emission processes by varying number and positioning of fuel introduction nozzle holes. Increase in the number of nozzle holes and their correct positioning can result in emission reduction up to 60%. Such behaviour could be addressed to the specific spray cloud formation and smaller high-temperature regions. Results showed that the presented model can be used as a modern design tool in the early stage of the combustion chamber development.Y
机译:与陆地来源相反,航空部门的氮氧化物排放量与1990年相比翻了一番。飞机独特的位置在高层大气层中,空气交通的日常生活需要特别注意这些排放的影响。应对这个问题的一种方法是开发和设计更有效的燃烧系统。在该研究中,提出了喷射发动机燃烧室内的燃烧过程的数值建模。调查室是安装有双级径向旋流器的理论腔室。先进的K-Zeta-F湍流模型用于模拟湍流行为,而欧拉拉格朗日喷雾建模方法描述了喷涂过程。采用两种不同的建模方法,用于描述燃烧过程:化学机制还原,3区扩展相干火焰(ECFM-3Z)燃烧模型。考虑到相关物理量的分析,并考虑使用ECFM-3Z燃烧模型的计算成本的降低,它采用了通过不同数量和燃料引入喷嘴孔的定位来分析喷雾和排放过程的影响。喷嘴孔的数量增加,它们的正确定位可能导致排放减少高达60%。可以解决特定喷雾云形成和较小的高温区域的这种行为。结果表明,本型号可用作燃烧室开发早期阶段的现代设计工具.Y

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