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首页> 外文期刊>Fluids >Numerical Prediction of Turbulent Spray Flame Characteristics Using the Filtered Eulerian Stochastic Field Approach Coupled to Tabulated Chemistry
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Numerical Prediction of Turbulent Spray Flame Characteristics Using the Filtered Eulerian Stochastic Field Approach Coupled to Tabulated Chemistry

机译:湍流喷雾火焰特性的数值预测使用过滤的欧拉随机场接近耦合到制表化学

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摘要

The Eulerian stochastic fields (ESF) method, which is based on the transport equation of the joint subgrid scalar probability density function, is applied to Large Eddy Simulation of a turbulent dilute spray flame. The approach is coupled with a tabulated chemistry approach to represent the subgrid turbulence–chemistry interaction. Following a two-way coupled Eulerian–Lagrangian procedure, the spray is treated as a multitude of computational parcels described in a Lagrangian manner, each representing a heap of real spray droplets. The present contribution has two objectives: First, the predictive capabilities of the modeling framework are evaluated by comparing simulation results using 8, 16, and 32 stochastic fields with available experimental data. At the same time, the results are compared to previous studies, where the artificially thickened flame (ATF) model was applied to the investigated configuration. The results suggest that the ESF method can reproduce the experimental measurements reasonably well. Comparisons with the ATF approach indicate that the ESF results better describe the flame entrainment into the cold spray core of the flame. Secondly, the dynamics of the subgrid scalar contributions are investigated and the reconstructed probability density distributions are compared to common presumed shapes qualitatively and quantitatively in the context of spray combustion. It is demonstrated that the ESF method can be a valuable tool to evaluate approaches relying on a pre-integration of the thermochemical lookup-table.
机译:基于接合底板标量密度密度函数的传输方程的欧拉随机区域(ESF)方法应用于湍流稀释喷雾火焰的大涡模拟。该方法与制表化学方法耦合,以表示底耕湍流 - 化学相互作用。通过双向耦合的Eulerian-lagrangian程序,将喷雾作为拉格朗日方式描述的众多计算包,每个都代表了一堆真正的喷雾液滴。目前的贡献具有两个目标:首先,通过使用8,16和32个随机区域进行比较具有可用实验数据的模拟结果来评估建模框架的预测能力。同时,将结果与先前的研究进行比较,其中将人工增稠的火焰(ATF)模型应用于研究。结果表明,ESF方法可以合理地再现实验测量。与ATF方法的比较表明ESF结果更好地描述了火焰夹带进入火焰的冷喷雾核心。其次,研究了底图标量贡献的动态,并将重建的概率密度分布与在喷雾燃烧的上下文中定性和定量地定义和定量的常见假定形状。据证明ESF方法可以是评估依赖于热化学查找表的预集成方法的方法的有价值的工具。

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