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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Blowout Limits and Computational Flow Field of Axial Single and Multijet Flames
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Experimental Blowout Limits and Computational Flow Field of Axial Single and Multijet Flames

机译:轴向单喷和多喷火焰的实验爆破极限和计算流场

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摘要

Measurements of the lean blowout equivalence ratio (Φ_(overall,b)) along with the numerical simulations of flame structure and dynamics of the flow field for coaxial burner configurations are reported. The burner comprises central mixture (air + liquefied petroleum gas) issuing either through six holes distributed radially each of 2 mm diameter or through a circular single port of area equal to the total areas of the six holes. A bluff-body stabilizer is attached to provide recirculation of the coaxial air surrounding the central flame. The study covers the effect of the central injection configuration with emphasis on the multijet on the overall lean equivalence ratio at which flame is extinguished. The dynamics of the flow field for the multiflame configurations were identified and compared with the single flame, using the generalized finite-rate chemistry model of FLUENT 6.2 with the detailed chemical reaction mechanism defined by gri-mech 3.0 and other mechanisms for the higher carbon species. The computed flow field of the multijet flame provides an extra intermediate vortex in addition to the two counter-rotating vortices observed for cases of the single central stream configuration. Such a vortex is believed to enhance the stability characteristics for all the test flames in the form of reduced experimental Φ_(overall,b) -values.
机译:报告了稀薄吹出当量比(Φ_(overall,b))的测量以及同轴燃烧器配置的火焰结构和流场动力学的数值模拟。燃烧器包括中央混合物(空气+液化石油气),该混合物通过六个直径为2 mm的径向分布的孔或与六个孔的总面积相等的圆形单个面积孔发出。连接了钝体稳定器,以提供围绕中心火焰的同轴空气的再循环。这项研究涵盖了中央喷射构型的影响,重点是多喷嘴对熄灭火焰的总稀薄当量比的影响。使用FLUENT 6.2的广义有限速率化学模型,由gri-mech 3.0定义的详细化学反应机理以及其他针对高碳物种的机理,确定了多火焰构型的流场动力学并将其与单火焰进行了比较。除了在单个中心流配置的情况下观察到的两个反向旋转涡流之外,计算的多喷嘴火焰流场还提供了额外的中间涡流。认为这种涡流以减小的实验Φ_(overall,b)-值的形式增强了所有测试火焰的稳定性。

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