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A Numerical Study on Premixed Bluff Body Flame of Different Bluff Apex Angle

机译:不同诈唬顶角的预混诈唬体火焰的数值研究

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摘要

In order to investigate effects of apex angle (α) on chemically reacting turbulent flow and thermal fields in a channel with a bluff body V-gutter flame holder, a numerical study has been carried out in this paper. With a basic geometry used in a previous experimental study, the apex angle was varied from 45° to 150°. Eddy dissipation concept (EDC) combustion model was used for air and propane premixed flame. LES-Smagorinsky model was selected for turbulence. The gird-dependent learning and numerical model verification were done. Both nonreactive and reactive conditions were analyzed and compared. The results show that as α increases, recirculation zone becomes bigger, and Strouhal number increases a little in nonreactive cases while decreases a little in reactive cases, and the increase of α makes the flame shape wider, which will increase the chamber volume heat release ratio and enhance the flame stability.
机译:为了调查顶角(α)对具有凹槽体V沟槽槽夹持器的通道中的化学反应湍流和热场的效果,本文进行了数值研究。通过在先前的实验研究中使用的基本几何形状,顶角从45°变化到150°。涡流耗散概念(EDC)燃烧模型用于空气和丙烷预混火焰。选择Les-Smagorinsky模型进行湍流。完成了依赖的学习和数值模型验证。分析并比较非反应性和反应性条件。结果表明,随着α的增加,再循环区变得更大,并且在非反应性情况下,Strouhal数量增加,而无反应性情况下降一点,并且α的增加使火焰形状更宽,这将增加腔室容量热释放比并增强火焰稳定性。

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