Combustion performance of plasma-stabilized lean flames in a gas turbine model combustor

IF 5 Q2 ENERGY & FUELS
Victorien P. Blanchard, Philippe Scouflaire, Christophe O. Laux, Sébastien Ducruix
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引用次数: 0

Abstract

This work presents an experimental study of the stabilization of lean methane-air flames by nanosecond repetitively pulsed (NRP) discharges. The experimental facility consists of a gas turbine model combustor with a Lean-Premixed-Prevaporized injector. The working pressure is 1 atm. The fuel is injected through two stages, each stabilized by swirl. The main stage consists of a multipoint annular injection. This facility is representative of a single sector of a gas turbine combustion chamber. The NRP discharges significantly extend the lean blow-off limit for a wide range of operating conditions, down to an equivalence ratio of 0.16. Lean flame stabilization is demonstrated for flame thermal powers up to 100 kW, with an electric power of less than 0.2% of the flame thermal power. We also observe plasma-assisted lean flames emiting less NOX than the leanest stable flames without plasma. Finally, by exploring the application of various pulse patterns instead of applying the discharges continuously at a constant repetition frequency, the plasma-to-flame power ratio required to stabilize a lean flame is decreased to 0.06% and the pollutant emissions can be further decreased.

等离子体稳定贫焰在燃气轮机模型燃烧室中的燃烧性能
本文对纳秒重复脉冲放电稳定贫甲烷空气火焰进行了实验研究。该实验设施由一个燃气轮机模型燃烧器和一个贫预混合预蒸发喷射器组成。工作压力为1大气压。燃油通过两个阶段喷射,每个阶段通过涡流稳定。主级由多点环形注入组成。该设施代表了燃气轮机燃烧室的单个扇区。NRP排放显著延长了宽范围运行条件下的贫排放极限,降低到0.16的当量比。对于高达100kW的火焰热功率,以及小于火焰热功率0.2%的电功率,证明了贫火焰稳定性。我们还观察到,与没有等离子体的最稀薄稳定火焰相比,等离子体辅助的稀薄火焰释放出更少的NOX。最后,通过探索各种脉冲模式的应用,而不是以恒定的重复频率连续施加放电,稳定贫火焰所需的等离子体与火焰功率比降低到0.06%,并且可以进一步降低污染物排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
4.20
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0.00%
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