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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Computational and Experimental Analysis of a Compact Combustor Integrated Into a JetCat P90 RXi
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Computational and Experimental Analysis of a Compact Combustor Integrated Into a JetCat P90 RXi

机译:Compact Combustor集成到JetCAT P90 RXI中的紧凑型燃烧器的计算与实验分析

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Ultra compact combustors (UCCs) look to reduce the overall combustor length and weight in modern gas turbine engines. Previously, a UCC achieved self-sustained operation at subidle speeds in a JetCat P90 RXi turbine engine with a length savings of 33% relative to the stock combustor. However, that combustor experienced flameout as reactions were pushed out of the primary zone before achieving mass flow rates at the engine's idle condition. A new combustor that utilized a bluff body flame stabilization with a larger combustor volume looked to keep reactions in the primary zone within the same axial dimensions. This design was investigated computationally for generalized flow patterns, pressure losses, exit temperature profiles, and reaction distributions at three engine power conditions. The computational results showed the validity of this new UCC, with a turbine inlet temperature of 1080 K and a pattern factor (PF) of 0.67 at the cruise condition. The combustor was then built and tested in the JetCat P90 RXi with rotating turbomachinery and gaseous propane fuel. The combustor maintained a stable flame from ignition through the 36,000 revolutions per minute idle condition. The engine ran self-sustained from 25,000 to 36,000 revolutions per minute with an average exit gas temperature of 980 K, which is comparable to the stock engine.
机译:超紧凑型燃烧器(UCC)看,以减少现代燃气涡轮发动机的整体燃烧器长度和重量。此前,UCC在JetCAT P90 RXI涡轮发动机中以Pureclow速度实现了自持续运行,相对于股票燃烧器的长度节省为33%。然而,在在发动机怠速条件下实现质量流速之前,燃烧器经历了熄火作为反应的反应。利用较大的燃烧室容积利用虚空体火焰稳定的新型燃烧器看起来将在相同的轴向尺寸内保持在主区域中的反应。在计算上调查该设计,用于三个发动机电源条件下的广义流动模式,压力损耗,出口温度谱和反应分布。计算结果显示了这种新型UCC的有效性,涡轮机入口温度为1080 k和0.67的图案因子(PF)在巡航条件下。然后在JetCat P90 RXI中建立和测试燃烧器,旋转涡轮机械和气态丙烷燃料。燃烧器通过每分钟怠速条件的36,000转旋转从点火中保持稳定的火焰。该发动机运转从25,000到36,000次的每分钟自持,平均出口气体温度为980 k,与股票引擎相当。

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