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Large eddy simulation of turbulent channel flows by the rational large eddy simulation model

机译:合理的大涡模拟模型对湍流通道大涡模拟

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The rational large eddy simulation (RLES) model is applied to turbulent channel flows. This approximate deconvolution model is based on a rational (subdiagonal Pade) approximation of the Fourier transform of the Gaussian filter and is proposed as an alternative to the gradient (also known as the nonlinear or tensor-diffusivity) model. We used a spectral element code to perform large eddy simulations of incompressible channel flows at Reynolds numbers based on the friction velocity and the channel half-width Re-tau=180 and Re-tau=395. We compared the RLES model with the gradient model and the Smagorinsky model with Van Driest damping. The RLES model was much more stable than the gradient model and yielded improved results. Both the RLES model and the gradient model predicted the off-diagonal Reynolds stresses better than the Smagorinsky model with Van Driest damping. The latter, however, yielded better results for the diagonal Reynolds stresses. (C) 2003 American Institute of Physics. [References: 52]
机译:有理大涡模拟(RLES)模型应用于湍流通道。该近似反卷积模型基于高斯滤波器傅立叶变换的有理(次对角Pade)近似,并被提议作为梯度(也称为非线性或张量扩散率)模型的替代方法。我们基于摩擦速度和通道半角Re-tau = 180和Re-tau = 395,使用频谱元素代码对雷诺数下的不可压缩通道流动进行了大涡模拟。我们将RLES模型与梯度模型以及Smagorinsky模型与Van Driest阻尼进行了比较。 RLES模型比梯度模型稳定得多,并且产生了改进的结果。 RLES模型和梯度模型都比具有Van Driest阻尼的Smagorinsky模型更好地预测了非对角线雷诺应力。但是,对于对角雷诺应力,后者产生了更好的结果。 (C)2003美国物理研究所。 [参考:52]

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