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A Parametric Study of LEM3D Based on Comparison with a Turbulent Lifted Hydrogen Jet Flame in a Vitiated Co-Flow

机译:基于与湍流升氢喷射火焰的比较,LEM3D参数研究

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摘要

A novel model, the hybrid RANS-LEM3D model, is applied to a lifted turbulent N-2 diluted hydrogen jet flame in a vitiated co-flow of hot products from lean H-2/air combustion. In the present modeling approach, mean-flow information from RANS provides model input to LEM3D, which returns the scalar statistics needed for more accurate mixing and reaction calculations. The dependence of lift-off heights and flame structure on iteration schemes and model parameters are investigated in detail, along with other characteristics not available from RANS alone, such as the instantaneous and detailed species profiles and small-scale mixing. Two different iteration procedures, a breadth-first search (BFS) and a checkerboard algorithm, as well as parameters of the model framework are examined and tested for sensitivity toward the results. The impact of heat release and thermal expansion is demonstrated and evaluated in detail. It is shown for the current application that LEM3D provides additional details compared to the RANS simulation with a low computational cost in comparison with a conventional DNS simulation.
机译:一种新型模型,混合RAN-LEM3D模型应用于来自贫H-2 /空气燃烧的无活性的热产物的提升湍流N-2稀释的氢气喷射火焰。在本发明的建模方法中,来自RAN的平均流量信息为LEM3D提供了模型输入,其返回更准确的混合和反应计算所需的标量统计。升空高度和火焰结构在迭代方案和模型参数上的依赖性进行了详细研究,以及单独的RANS的其他特性,例如瞬时和详细的物种曲线和小规模混合。两种不同的迭代程序,广度第一搜索(BFS)和棋盘算法,以及模型框架的参数,并测试了对结果的敏感性。对热释放和热膨胀的影响详细说明和评估。与传统DNS仿真相比,与REM3D以低计算成本相比,LEM3D提供额外细节的当前应用。

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