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Comparative study of large eddy simulation of film cooling using a dynamic global-coefficient subgrid scale eddy-viscosity model with RANS and Smagorinsky Modeling

机译:使用RANS和Smagorinsky建模的动态全局系数亚网格尺度涡粘性模型对薄膜冷却进行大涡模拟的比较研究

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摘要

An eddy-viscosity subgrid-scale model proposed by You and Moin [1 ] applied in large-eddy simulation of a film cooling flow at Re = 4700. The present model needs only a single-level test filter, and therefore is more suitable for large-eddy simulation (LES) in complex geometries. The present model is not more complicated than the dynamic Smagorinsky model in implementation and does not require any ad hoc spatial and temporal averaging or clipping of the model coefficient for numerical stabilization. In addition, the computational cost is not more expensive than that of the dynamic Smagorinsky model. The numerical results of present study are compared with experimental data, Reynolds Averaged Navier-Stokes (RANS) and Smagorinsky model which are in excellent agreement with the existing experimental ones in comparison with computational results of RANS and Smagorinsky model.
机译:由You和Moin [1]提出的涡粘性亚网格规模模型应用于Re = 4700时薄膜冷却流的大涡模拟。该模型仅需一个单级测试滤波器,因此更适合于复杂几何形状中的大涡模拟(LES)。本模型在实现上并不比动态Smagorinsky模型复杂,并且不需要任何临时的空间和时间平均或模型系数的削波来实现数值稳定。另外,计算成本并不比动态Smagorinsky模型昂贵。将本研究的数值结果与实验数据,雷诺平均纳维-斯托克斯(RANS)模型和Smagorinsky模型进行了比较,与RANS和Smagorinsky模型的计算结果相比,它们与现有的实验结果非常吻合。

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