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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Numerical Study of the Turbulent Flow Inside an ORACLES Configuration
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Numerical Study of the Turbulent Flow Inside an ORACLES Configuration

机译:ORACLES构造内部湍流的数值研究

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This numerical investigation deals with the validation of the experimental results in the inert cases of Nguyen et al., obtained in the framework of the European Union-funded research program MOLECULES (Modelling of Low Emissions Combustors Using Large Eddy Simulations). This study is based on the benchmark of testing one rig for accurate comparisons with large eddy simulations configuration (ORACLES), aimed at helping the design of reliable lean premixed prevaporized) combustion chambers and supplied with two identical flows of air channels. Therefore, this study is based on the 3D numerical simulation using large eddy simulation-wall adapting local eddy viscosity (LES-WALE) model that aims to determine the longitudinal velocity, the longitudinal velocity fluctuation and the length of recirculation zone for the three cases of flow in different inlet Reynolds (Re = 25,000, 50,000, 75,000). Calculations are carried out by the FLUENT_CFD. The results obtained are compared with experimental measurements of Nguyen et al. The LES_WALE eddy viscosity computation presents a good agreement with the experimental data where we could observe the asymmetrical flow and also detect the recirculation zones and the differences between the cases of the flow.
机译:该数值研究处理了在Nguyen等人的惰性案例中的实验结果的验证,该案例是在欧盟资助的研究计划MOLECULES(使用大涡模拟对低排放燃烧器进行建模)的框架下获得的。这项研究基于测试一台钻机与大型涡流模拟配置(ORACLES)进行精确比较的基准,旨在帮助设计可靠的稀薄预混预蒸发燃烧室,并为其提供两个相同的空气通道。因此,本研究基于使用大型涡模拟壁自适应局部涡粘度模型(LES-WALE)进行的3D数值模拟,旨在确定三种情况下的纵向速度,纵向速度波动和回流区长度。流入不同的雷诺进气口(Re = 25,000,50,000,75,000)。计算由FLUENT_CFD进行。将获得的结果与Nguyen等人的实验测量值进行比较。 LES_WALE涡流粘度计算结果与实验数据非常吻合,在实验数据中我们可以观察到不对称流动,还可以检测出回流区域和流动情况之间的差异。

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