论文标题
使用延长的火焰产生的歧管模型对稀释甲醇喷雾火焰的数值分析
Numerical analysis of dilute methanol spray flames in vitiated coflow using extended Flamelet Generated Manifold model
论文作者
论文摘要
目前的工作着重于大型涡流模拟(LES)和使用二级氧化剂火焰产生的模型(FGM)在腐烂的Coflow中研究湍流稀释甲醇喷雾火焰。改进的FGM模型除了先前用于喷雾火焰进度变量,混合分数和焓的其他三个参数外,还使用了其他二级氧化剂参数。气相和液滴性能的结果是针对稀甲醇喷雾剂数据库的变化燃料注入量进行验证的。对于所有情况,液滴统计和提升火焰高度均准确捕获。标量波动的羟基自由基(OH)场和速度 - 温度场的适当正交分解(POD)捕获了点火内核下游区域中的火焰结构。详细的POD分析表明,主要OH场的基本频率等于67.3 Hz的主要涡度结构的基础频率。火焰传播发生在这些主要的涡流结构周围,因为液体混合较低。
The present work focuses on the large eddy simulation (LES) and the study of turbulent dilute methanol spray flames in vitiated coflow using the secondary oxidizer Flamelet Generated Model (FGM). The modified FGM model uses an additional secondary oxidizer parameter in addition to the three other parameters previously used for spray flames progress variable, mixture fraction, and enthalpy. The results for gas phase and droplet properties are validated against the dilute methanol spray flame database for varying fuel injection amounts. The droplet statistics and the lift-off flame heights are accurately captured for all the cases. A proper orthogonal decomposition (POD) of the scalar fluctuating hydroxyl radical (OH) field and velocity-temperature field capture the flame structures in the downstream region of ignition kernels. The detailed POD analysis reveals that the base frequency of the dominant OH field equals that of the dominant vortical structure of 67.3 Hz. The flame propagation happens around these dominant vortical structures because of the less-strained fluid mixing.