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Numerical study of plane Couette flow: turbulence statistics and the structure of pressure-strain correlations

机译:平面Couette流的数值研究:湍流统计和压力-应变相关性的结构

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The paper presents the results of direct numerical simulation of turbulent plane Couette flow. The calculations were performed for Reynolds numbers Re = U0Hu (H is the height of the channel, +/- U-0/2 is the motion velocities of the lower and upper walls, respectively,. is the kinematic viscosity) from 5200 (where viscous effects significantly affect the flow structure) to 80000 (where a logarithmic layer is clearly observed). Estimates of terms of the equation for the balance of turbulent Reynolds stresses are obtained, which indicate the importance of the kinetic energy transport by velocity fluctuations. The vertical transport of the turbulent momentum flux is less important and partly compensated by the transport of pressure fluctuations. It is shown that in the logarithmic layer the normal components of the 'pressure-strain rate' correlation tensor are described in the framework of the 'isotropization of production' model, and in the central part of the channel they are described by the linear Rotta model [29]. The additive model considering both the interaction of the velocity field fluctuation and the influence of the mean velocity gradient is a good approximation only for the off-diagonal component of the tensor entering the balance equation for the turbulent momentum flux.
机译:本文提出了湍流平面库埃特流直接数值模拟的结果。从5200开始对雷诺数Re = U0H / nu(H是通道的高度,+ /-U-0 / 2是下壁和上壁的运动速度,分别是运动粘度)进行计算。 (其中粘性效应会显着影响流动结构)到80000(其中清晰观察到对数层)。获得了关于湍流雷诺应力平衡的方程式项的估计,这表明了通过速度波动传递动能的重要性。湍动量通量的垂直传输不那么重要,并且压力波动的传输可以部分补偿。结果表明,在对数层中,“压力-应变率”相关张量的正态分量在“各向同性”模型的框架中描述,而在通道的中心部分,它们由线性Rotta描述。模型[29]。仅考虑张量的非对角线分量进入湍动量通量的平衡方程时,同时考虑了速度场波动的相互作用和平均速度梯度的影响的加性模型是一个很好的近似值。

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