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The Structure Design and Numerical Simulation of Dual-Fuel Gas Turbine Nozzle

机译:双燃料燃气轮机喷嘴的结构设计与数值模拟

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This paper designed several dual-fuel nozzle structures for the chemically recuperated gas turbine (CRGT) combustor and then the numerical simulation in regard to the combustion flow fields of the combustors with these nozzle structures was carried out with the aid of CFD method and finally the contrastive analysis was made. Realizable k-ε turbulence model, PDF combustion model and the SIMPLE algorithm method were applied in the numerical simulation. According to the contrast of these nozzle structure models' flame length, position of the high temperature zone, wall temperature and the evenness of exit temperature field as the key influencing factors of the combustor, we could know that the gas swirling dual-fuel nozzle with oblique holes, on the one hand, can produce preswirl flow in the gas channel to enable a better mixing of the pyrolysis gas and air; on the other hand, can protect the nozzle and the wall of flame tube from fire and keep the exit temperature in a moderate level.
机译:本文设计了用于化学回收的燃气轮机(CRGT)燃烧器的多个双燃料喷嘴结构,然后通过CFD方法对具有这些喷嘴结构的燃烧器的燃烧流场的燃烧流场的数值模拟进行了数值模拟。最后对比分析。可实现的K-ε湍流模型,PDF燃烧模型和简单算法方法应用了数值模拟。根据这些喷嘴结构模型的对比度的火焰长度,高温区的位置,壁温和出口温度场的均匀度作为燃烧器的关键影响因素,我们可以知道气体旋转双燃料喷嘴一方面,倾斜孔可以在气体通道中生产预奶流动,以便更好地混合热解气体和空气;另一方面,可以保护喷嘴和火焰管壁免受火力,并将出口温度保持在适度的水平。

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