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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Investigation of the Effect of Incomplete Droplet Prevaporization on NO_x Emissions in LDI Combustion Systems
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Investigation of the Effect of Incomplete Droplet Prevaporization on NO_x Emissions in LDI Combustion Systems

机译:LDI燃烧系统中不完全液滴预蒸发对NO_x排放的影响研究

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摘要

The influence of incomplete liquid fuel prevaporization on the emissions of nitric oxides in a swirl stabilized model gas turbine combustor is investigated experimentally and numerically. The design of the model combustor enables the variation of the degree of prevaporization. This is achieved by using two liquid fuel injectors. One injector is located far upstream of the combustor and generates a fully prevaporized and premixed air fuel mixture. The second injector is located at the combustor inlet. Consequently, the liquid fuel mass flow split between the two injectors determines the fraction of nonpre-vaporized fuel present in the reaction zone. The NO/NO_2 measurements were performed with a chemoluminescence analyzer. In accordance to the findings of other researchers, the present experimental study revealed that the influence of prevaporization on nitric oxide emissions is of significance for practical applications. The experimental studies were accompanied by numerical studies of partially prevaporized lean combustion in an abstracted configuration. The purpose of this numerical study is to gain a detailed understanding of the influence of droplet slip on droplet flame position and peak temperature. The droplet slip velocity was found to have a significant impact on the peak temperature of the droplet flame and, therefore, NO formation rates within the droplet flame. The combustion system used for the experimental investigation was characterized regarding droplet slip velocities with an extended laser Doppler anemometry technique. The comparison between numerical and experimental results shows that the droplet slip velocities in the macroscopic reaction zone are within the transition range from an envelope to a wake flame. It is concluded that small-scale mixing effects play a significant role in the formation of nitric oxides in spray combustion systems with incomplete prevaporization.
机译:实验和数值研究了不完全液体燃料的预蒸发对涡流稳定型燃气轮机燃烧室中一氧化氮排放的影响。模型燃烧器的设计可以改变预蒸发程度。这可以通过使用两个液体燃料喷射器来实现。一个喷射器位于燃烧器的上游,并产生完全预蒸发和预混合的空气燃料混合物。第二喷射器位于燃烧器入口处。因此,在两个喷射器之间分配的液体燃料质量流确定了反应区内存在的未预蒸发燃料的比例。用化学发光分析仪进行NO / NO_2测量。根据其他研究人员的发现,本实验研究表明,预蒸发对一氧化氮排放的影响对实际应用具有重要意义。在实验研究的同时,还进行了部分抽象蒸发的稀薄燃烧的数值研究。该数值研究的目的是获得对液滴滑移对液滴火焰位置和峰值温度的影响的详细理解。发现液滴滑移速度对液滴火焰的峰值温度具有显着影响,因此,对液滴火焰内的NO形成速率具有显着影响。使用扩展的激光多普勒风速计技术,对用于实验研究的燃烧系统进行了关于液滴滑移速度的表征。数值和实验结果的比较表明,宏观反应区中的液滴滑移速度在从包络到尾焰的过渡范围内。结论是,预混合不完全的喷雾燃烧系统中,小规模混合效应在形成一氧化氮中起重要作用。

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