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Temporal large-eddy simulation of unstratifled and stably stratified turbulent channel flows

机译:未分层稳定分层湍流通道的时间大涡模拟

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摘要

Recently, Pruett et al. [Pruett, CD., Gatski, T.B., Grosch, C.E., Thacker, W.D., 2003. The temporally filtered Navier-Stokes equations: properties of the residual stress. Phys. Fluids 15, 2127-2140] proposed an approach to large-eddy simulation (LES) based on time-domain filtering; their approach was termed temporal large-eddy simulation or TLES. In a continuation of their work, Pruett and collaborators tested their methodology by successfully performing TLES of unstratified turbulent channel flow up to Reynolds number of 590 (based on channel half-height and friction velocity) [Pruett, C.D., Thomas, B.C., Grosch, C.E., Gatski, T.B., 2006. A temporal approximate deconvolution model for LES. Phys. Fluids 18, 028104, 4p], Here, we carefully analyze the TLES methodology in order to understand the role of its key components and in the process compare TLES to more traditional approaches of spatial LES. Furthermore, we extend the methodology to stably stratified turbulent channel flow.
机译:最近,Pruett等。 [CD,Pruett,T.B.,Gatski,C.E.,Thacker,W.D.,2003。时间过滤的Navier-Stokes方程:残余应力的性质。物理[Fluids 15,2127-2140]提出了一种基于时域滤波的大涡模拟(LES)方法;他们的方法被称为时间大涡模拟或TLES。在继续工作过程中,Pruett和合作者成功地执行了无分层湍流的TLES,直到雷诺数590(基于通道的半高和摩擦速度)来测试他们的方法[Pruett,CD,Thomas,BC,Grosch, CE,Gatski,TB,2006年。LES的时间近似反卷积模型。物理流体18,028104,4p],这里,我们仔细分析TLES方法论,以了解其主要成分的作用,并在此过程中将TLES与更传统的空间LES方法进行比较。此外,我们将方法扩展到稳定分层的湍流通道。

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