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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Large Eddy Simulation of Light- Round in an Annular Combustor With Liquid Spray Injection and Comparison With Experiments
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Large Eddy Simulation of Light- Round in an Annular Combustor With Liquid Spray Injection and Comparison With Experiments

机译:环形喷嘴燃烧器喷液中轻弹的大涡模拟及与实验的比较

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摘要

The light-round is defined as the process by which the flame initiated by an ignition spark propagates from burner to burner in an annular combustor, eventually leading to a stable combustion. Combining experiments and numerical simulation, it was recently demonstrated that under perfectly premixed conditions, this process could be suitably described by large eddy simulation (LES) using massively parallel computations. The present investigation aims at developing light-round simulations in a configuration that is closer to that found in aero-engines by considering liquid n-heptane injection. The LES of the ignition sequence of a laboratory scale annular combustion chamber comprising sixteen swirled spray injectors is carried out with a monodisperse Eulerian approach for the description of the liquid phase. The objective is to assess this modeling approach of the two-phase reactive flow during the ignition process. The simulation results are compared in terms of flame structure and light-round duration to the corresponding experimental images of the flame front recorded by a high-speed intensified charge-coupled device camera and to the corresponding experimental delays. The dynamics of the flow is also analyzed to identify and characterize mechanisms controlling flame propagation during the light-round process.
机译:轻火定义为由点火火花引发的火焰在环形燃烧器中从燃烧器传播到燃烧器的过程,最终导致稳定燃烧。结合实验和数值模拟,最近证明了在完美的预混合条件下,该过程可以通过使用大规模并行计算的大型涡模拟(LES)进行适当描述。本研究旨在通过考虑液体正庚烷喷射,以与航空发动机中更接近的配置开发光轮模拟。实验室规模的环形燃烧室的点火顺序的LES,包括16个涡旋式喷射器,采用单分散欧拉方法进行描述。目的是评估点火过程中两相反应流的这种建模方法。将模拟结果在火焰结构和光持续时间方面与由高速增强型电荷耦合器件相机记录的火焰前锋的相应实验图像以及相应的实验延迟进行了比较。还分析了流动的动力学特性,以识别和表征控制光轮过程中火焰传播的机制。

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