首页> 外文期刊>Combustion Science and Technology >ON THE NUMERICAL MODELING OF BUOYANCY- DOMINATED TURBULENT DIFFUSION FLAMES BY USING LARGE-EDDY SIMULATION AND k-εTURBULENCE MODEL
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ON THE NUMERICAL MODELING OF BUOYANCY- DOMINATED TURBULENT DIFFUSION FLAMES BY USING LARGE-EDDY SIMULATION AND k-εTURBULENCE MODEL

机译:大涡模拟和k-ε湍流模型的浮力湍流扩散火焰数值模拟

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This work concerns the modeling of buoyancy-dominated turbulent diffusion flames. In these flames, ambient air is entrained just above the burning surface into the reactive zone at large mass flow rates. To describe the buoyancy-induced flow, both large-eddy simulation (LES) and the k-ε turbulence model are used. The two models, including direct effects of buoyancy, have been validated using experimental data from three (pool-like, vertical, and interaction between pool-like and vertical wall fires) turbulent diffusion flames. It is found that LES successfully predicted the variation of both the mean and fluctuating velocity/temperature. Important features of highly oscillating buoyancy-induced flows (recirculalion zone, narrowing and broadening of the flame) have been correctly reproduced by LES, whereas the standard Smagorinsky model should be improved to model turbulent mixing near the vertical burning wall. It is found that interaction between pool-like and vertical wall fires induces an entraining ambient air at larger mass flow rates compared to a pool-like fire or a single vertical burning wall.
机译:这项工作涉及浮力为主的湍流扩散火焰的建模。在这些火焰中,周围空气以大的质量流率刚好在燃烧表面上方被带入反应区。为了描述浮力引起的流动,使用了大涡模拟(LES)和k-ε湍流模型。这两个模型,包括浮力的直接影响,已经使用来自三个湍流扩散火焰(池状,垂直,池状和垂直壁火之间的相互作用)的实验数据进行了验证。发现LES成功地预测了平均值和波动速度/温度的变化。 LES正确地再现了由高浮力引起的流动的重要特征(再循环区域,火焰变窄和变宽),而标准的Smagorinsky模型应加以改进以模拟垂直燃烧壁附近的湍流混合。已经发现,与池状火或单个垂直燃烧壁相比,池状火与垂直壁火之间的相互作用在较大的质量流率下引起了夹带的环境空气。

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