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Large Eddy Simulation of Stratified and Sheared Flames of a Premixed Turbulent Stratified Flame Burner Using a Flamelet Model with Heat Loss

机译:带有热损失的小火焰模型对预混湍流分层火焰燃烧器的分层和剪切火焰的大涡模拟

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This paper presents large eddy simulations (LES) of the Darmstadt turbulent stratified flame burner (TSF) at different operating conditions including detailed heat loss modeling. The target cases are a non-reacting and two reacting cases. Both reacting cases are characterized by stratification, while one flame additionally features shear. In the regime diagram for premixed combustion, the studied flames are found at the border separating the thin reaction zones regime and the broken reaction zones regime. A coupled level set/progress variable model is utilized to describe the combustion process. To account for heat loss, an enthalpy defect approach is adopted and reformulated to include differential diffusion effects. A novel power-law rescaling methodology is proposed to integrate the enthalpy defect approach into the level set/progress variable model which is extensively val- idated in two validation scenarios. It is demonstrated that the LES with the newly developed model captures the influence of heat loss well and that the incorporation of heat loss effects improves the predictions of the TSF-burner over adiabatic simulations, while reproducing the experimentally observed flame lift-off from the pilot nozzle.
机译:本文介绍了达姆施塔特湍流分层火焰燃烧器(TSF)在不同运行条件下的大型涡流模拟(LES),包括详细的热损失模型。目标案例是非反应案例和两个反应案例。两种反应情况均具有分层特征,而一个火焰还具有剪切特征。在预混燃烧的状态图中,在将稀薄反应区和破碎反应区分开的边界处发现了研究火焰。耦合的水平设定/进度变量模型用于描述燃烧过程。为了解决热量损失,采用了一种焓缺陷方法,并将其重新公式化以包括微分扩散效应。提出了一种新颖的幂律定标方法,将焓缺陷方法集成到水平集/进度变量模型中,该模型在两种验证方案中得到了广泛验证。结果表明,采用新开发的模型的LES很好地捕获了热损失的影响,并且结合了热损失效果,通过绝热模拟改善了TSF燃烧器的预测,同时再现了从飞行员那里观察到的实验观察到的火焰剥离喷嘴。

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