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LARGE-EDDY SIMULATION OF A TURBULENT DIFFUSION FLAME LADEN WITH EVAPORATING DROPLETS

机译:带有蒸发液滴的湍流扩散火焰的大涡模拟

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摘要

To investigate the effect of water dilution on turbulent flames, large eddy simulations (LES) of a turbulent reactive jet laden with evaporating droplets are performed under various conditions. A hybrid Eulerian-Lagrangian formulation is adopted for the liquid-gas reactive system described by finite-rate chemistry. Fully dynamic subgrid-scale (SGS) models are developed for the filtered momentum, energy and chemical species equations while a scale similarity SGS model is used for the filtered reaction rate. The developed LES methodology is capable of capturing highly unsteady and localized features and is applied to studying the interaction among turbulence, combustion and evaporating droplets at various droplet size and mass loading ratio (MLR). It is found that smaller droplets can seamlessly follow the flow structures into the reaction zones while larger droplets are insensitive to flow fields, leading to different outcome of combustion suppression. With the same MLR, smaller droplets have a larger total surface area, which increases the evaporation rate and leads to more effective separation of the reaction zones from the oxidizer. For the same droplet size, increasing the MLR initially leads to stronger suppression of combustion. However, further increase in thernMLR beyond a critical value would inhibit evaporation and thus limit its effect on combustion.
机译:为了研究水稀释对湍流火焰的影响,在各种条件下进行了带有蒸发液滴的湍流反应射流的大涡模拟(LES)。通过有限速率化学描述的液-气反应体系采用混合欧拉-拉格朗日公式。开发了全动态亚网格规模(SGS)模型用于过滤动量,能量和化学物种方程,而规模相似性SGS模型用于过滤反应速率。发达的LES方法能够捕获高度不稳定和局部的特征,并被用于研究湍流,燃烧和不同液滴尺寸和质量负载比(MLR)下的蒸发液滴之间的相互作用。发现较小的液滴可以无缝地跟随流动结构进入反应区,而较大的液滴对流场不敏感,从而导致不同的燃烧抑制结果。在相同的MLR下,较小的液滴具有较大的总表面积,这增加了蒸发速率并导致反应区与氧化剂的更有效分离。对于相同的液滴尺寸,增加MLR最初会导致更强的燃烧抑制。然而,进一步增加rnMLR超过临界值将抑制蒸发并因此限制其对燃烧的影响。

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