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Comparison Between LES and RANS Modeling of Turbulent Swirling Flows and Swirling Diffusion Combustion

机译:湍流和湍流扩散燃烧的LES和RANS模型比较

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摘要

Turbulent swirling flows and methane-air swirling diffusion combustion are simulated by both large-eddy simulation (LES) using a Smagorinsky-Lilly subgrid-scale (SGS) turbulence model, a second-order moment (SOM) subgrid-scale combustion model and an eddy break up (EBU) combustion model and Reynolds-averaged Navier-Stokes (RANS) modeling using the Reynolds stress equation model and a second-order moment (SOM) combustion model. For swirling flows, the LES statistical results give better agreement with the experimental results than the RANS modeling, indicating that the adopted subgrid-scale turbulence model is suitable for swirling flows. For swirling combustion, both the proposed SOM SGS combustion model and the RANS-SOM model give the results in good agreement with the experimental results, but the LES-EBU modeling results are not in agreement with the experimental results.
机译:使用Smagorinsky-Lilly子网格规模(SGS)湍流模型,二阶矩(SOM)子网格规模燃烧模型和大涡模拟(LES)来模拟湍流和甲烷-空气漩涡扩散燃烧。使用雷诺应力方程模型和二阶矩(SOM)燃烧模型建立涡旋破碎(EBU)燃烧模型和雷诺平均Navier-Stokes(RANS)模型。对于旋流,LES统计结果比RANS建模更符合实验结果,表明所采用的亚网格尺度湍流模型适用于旋流。对于涡旋燃烧,所提出的SOM SGS燃烧模型和RANS-SOM模型均与实验结果吻合良好,但LES-EBU建模结果与实验结果不一致。

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