首页> 外文会议>ASME Turbomachinery Technical Conference and Exposition >THE EFFECT OF STRATIFICATION RATIO ON THE MACROSTRUCTURE OF STRATIFIED SWIRL FLAMES: EXPERIMENTAL AND NUMERICAL STUDY
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THE EFFECT OF STRATIFICATION RATIO ON THE MACROSTRUCTURE OF STRATIFIED SWIRL FLAMES: EXPERIMENTAL AND NUMERICAL STUDY

机译:分层比对分层旋流火焰宏观结构的影响:实验和数值研究

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The present article reports experimental and numerical analyses of the macrostructures featured by a stratified swirling flame for varying stratification ratio (SR). The studies are performed with the Beihang Axial Swirler Independently-Stratified (BASIS) burner, a novel double-swirled full-scale burner developed at Beihang University. Experimentally, it is found that depending on the ratio between the equivalence ratios of the methane-air mixtures from the two swirlers, the flame stabilizes with three different shapes: attached V-flame, attached stratified flame and lifted flame. In order to better understand the mechanisms leading to the three macrostructures, large eddy simulations (LES) simulations are performed via the open source Computational Fluid Dynamics software OpenFOAM using the incompressible solver ReactingFoam. Changing the SR, simulation results show good agreement with experimentally observed time-averaged flame shapes, demonstrating that the incompressible LES are able to fully characterize the different flame behaviours observed in stratified burners. When the LES account for heat loss from walls, they better capture the experimentally observed flame quenching in the outer shear layer. Finally, insights into the flame dynamics are provided by analysing probes located near the two separate streams.
机译:本文报告了以分层旋转火焰为特征的实验性和数值分析,用于不同分层比(SR)。这些研究是用独立分层(基础)燃烧器的北旺轴流旋流器进行,这是在北阳大学开发的新型双旋转的全刻度燃烧器。实验发现,根据来自两个旋流器的甲烷 - 空气混合物的等效比之间的比率,火焰用三种不同的形状稳定:附着V-Flame,附着的分层火焰和提升的火焰。为了更好地理解导致三个宏观结构的机制,使用不可压缩的求解器反应FOAM通过开源计算流体动力学软件OpenFoam进行大型涡流模拟(LES)模拟。改变SR,仿真结果表明,与实验观察到的时间平均火焰形状表现出良好的一致性,表明不可压缩的LES能够完全表征分层燃烧器中观察到的不同火焰行为。当LES占壁的热量损失时,它们更好地捕获外剪切层中的实验观察的火焰淬火。最后,通过分析位于两个单独的流附近的探针来提供对火焰动态的见解。

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