首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >LARGE EDDY SIMULATION OF A TURBULENT SWIRLING JET-A1 SPRAY FLAME INCORPORATING CHEMICAL NON-EQUILIBRIUM EFFECTS THROUGH THE FLAMELET MODEL
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LARGE EDDY SIMULATION OF A TURBULENT SWIRLING JET-A1 SPRAY FLAME INCORPORATING CHEMICAL NON-EQUILIBRIUM EFFECTS THROUGH THE FLAMELET MODEL

机译:湍流射流JET-A1喷雾火焰的大涡模拟,包括通过火焰模型的化学非平衡效应

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A large eddy simulation (LES) of a turbulent swirl stabilized jet-A1 flame is presented. The scope of the study is to incorporate a reduced chemistry model, as well as, coupling the turbulent flow characteristics to the chemical reactions and at the same time model the local chemical non-equilibrium due to the turbulent strain. Standard Eulerian and Lagrangian approaches are used to describe both gas and liquid phases, respectively. A joint presumed probability density function (PDF) is used to model turbulent-chemistry interactions in swirling jet-A1 spray flames. A one-component fuel, n-decane, is used as a surrogate for jet-A1. The combustion chemistry of the one component is represented through a reduced chemical kinetic mechanism (CKM) which comprises 139 species and 1 045 reactions, derived from the detailed jet fuel surrogate model, JetSurf 2.0. Numerical results of the gas velocity, the gas temperature and the species mole fractions are compared with a set of published experimental data of a steady flame. In addition to the overall reasonable agreement obtained with the experimental data, it is observed that, by combining a sufficiently realistic chemistry model with LES to simulate a jet-Al spray flame, the prediction of major species is significantly improved while pollutants such as carbon monoxide (CO) and other species involved in slow reactions, are under predicted for reasons discussed in the paper.
机译:提出了湍流稳定的射流-A1火焰的大涡模拟(LES)。研究的范围是合并简化的化学模型,以及将湍流特征与化学反应耦合,同时对由于湍流应变而引起的局部化学非平衡进行建模。标准欧拉和拉格朗日方法分别用于描述气相和液相。联合假定的概率密度函数(PDF)用于模拟旋流喷射Al喷雾火焰中的湍流-化学相互作用。单组分燃料正癸烷用作喷气A1的替代物。一种成分的燃烧化学反应是通过简化的化学动力学机理(CKM)来表示的,该机理包括139种反应和1,045个反应,该反应来自详细的喷气燃料替代模型JetSurf 2.0。将气体速度,气体温度和物质摩尔分数的数值结果与一组已发布的稳定火焰实验数据进行了比较。除了与实验数据获得的总体合理一致性外,可以观察到,通过将足够真实的化学模型与LES结合以模拟喷射Al的喷射火焰,可以显着改善主要物种的预测,同时减少污染物(如一氧化碳)的影响。 (CO)和其他参与缓慢反应的物种,由于本文讨论的原因而被预测不到。

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