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Understanding the diesel-like spray characteristics applying a flamelet-based combustion model and detailed large eddy simulations

机译:了解柴油样喷雾特性,应用基于燧石的燃烧模型和详细的大涡模拟

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This investigation analyses the structure of spray A from engine combustion network (ECN), which is representative of diesel-like sprays, by means of large eddy simulations and an unsteady flamelet progress variable combustion model. A very good agreement between modelled and experimental measurements is obtained for the inert spray that supports further analysis. A parametric variation in oxygen concentration is carried out in order to describe the structure of the flame and how it is modified when mixture reactivity is changed. The most relevant trends for the flame metrics, ignition delay and lift-off length are well-captured by the simulations corroborating the suitability of the model for this type of configuration. Results show that the morphology of the flame is strongly affected by the boundary conditions in terms of the reactive scalar spatial fields and Z–T maps. The filtered instantaneous fields provided by the simulations allow investigation of the structure of the flame at the lift-off length, whose positioning shows low fluctuations, and how it is affected by turbulence. It is evidenced that small ignition kernels appear upstream and detached from the flame that eventually merge with its base in agreement with experimental observations, leading to state that auto-ignition plays a key role as one of the flame stabilization mechanisms of the flame.
机译:该研究分析了来自发动机燃烧网络(ECN)的喷射A的结构,其代表柴油样喷雾剂,通过大涡模拟和不稳定的燧发燧石进度可变燃烧模型。为支持进一步分析的惰性喷雾获得建模和实验测量之间的非常良好的一致性。进行氧浓度的参数变化,以描述火焰的结构以及当混合反应性改变时如何改变。火焰度量,点火延迟和升降长度最相关的趋势是通过模拟为这种类型的配置的适用性进行了良好捕获的。结果表明,反应标量空间场和Z-T映射的边界条件强烈影响火焰的形态受到强烈影响。通过模拟提供的滤波的瞬时场允许在剥离长度处进行火焰的结构,其定位显示出低波动,以及其如何受到湍流的影响。可以证明,小点火粒上游出现上游,并从最终与实验观察结果与其基础合并的火焰脱离,从而导致自动点火发挥着火焰稳定机制之一的关键作用。

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