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3D RANS Simulation of Turbulent Flow and Combustion in a 5 MW Reverse-Flow Type Gas Turbine Combustor

机译:5 MW逆流式燃气轮机燃烧室湍流和燃烧的3D RANS模拟

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摘要

This study is concerned with 3D RANS simulation of turbulent flow and combustion in a 5 MW commercial gas turbine combustor. The combustor under consideration is a reverse flow, dry low NO_x type, in which methane and air are partially mixed inside swirl vanes. We evaluated different turbulent combustion models to provide insights into mixing, temperature distribution, and emission in the combustor. Validation is performed for the models in STAR-CCM+ against the measurement data for a simple swirl flame . The standard k-e model with enhanced wall treatment is employed to model turbulent swirl flow, whereas eddy break-up (EBU), presumed probability density function laminar flamelet model, and partially premixed coherent flame model (PCFM) are tried for reacting flow in the combustor. Independent simulations are carried out for the main and pilot nozzles to avoid flashback and to provide realistic inflow boundary conditions for the combustor. Geometrical details such as air swirlers, vane passages, and liner holes are all taken into account. Tested combustion models show similar downstream distributions of the mean flow and temperature, while EBU and PCFM show a lifted flame with stronger effects of swirl due to limited increase in axial momentum by expansion.
机译:这项研究涉及5 MW商用燃气轮机燃烧室中湍流和燃烧的3D RANS模拟。所考虑的燃烧器是反向流动,干燥的低NO_x型,其中甲烷和空气在旋流叶片内部分混合。我们评估了不同的湍流燃烧模型,以提供有关燃烧器内混合,温度分布和排放的见解。针对STAR-CCM +中的模型针对简单旋流火焰的测量数据进行验证。燃烧室中采用标准的ke模型和强化壁处理来模拟湍流,而尝试使用涡流分解(EBU),假定的概率密度函数层流小火焰模型和部分预混相干火焰模型(PCFM)来对燃烧室中的反应流进行建模。 。对主喷嘴和引燃喷嘴进行了独立的模拟,以避免回火并为燃烧室提供切合实际的流入边界条件。空气旋流器,叶片通道和衬管孔等几何细节均已考虑在内。经过测试的燃烧模型显示出平均流量和温度的下游分布相似,而EBU和PCFM显示出火焰升起,由于轴向动量因膨胀而有限地增加,因此具有更强的旋流效果。

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