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首页> 外文期刊>Flow, Turbulence and Combustion >DNS Scrutiny of the ζ-f Elliptic-Relaxation Eddy-Viscosity Model in Channel Flows with a Moving Wall
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DNS Scrutiny of the ζ-f Elliptic-Relaxation Eddy-Viscosity Model in Channel Flows with a Moving Wall

机译:带有流动壁的通道流中ζ-f椭圆弛豫涡流-粘度模型的DNS审查

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摘要

In this paper we present a Direct Numerical Simulations (DNS) of channel flow with stationary and moving walls. Three cases, Poiseuille-type with UW/Ub = 0.75, intermediate-type with UW/Ub = 1.215, and Couette-type with UW/Ub = 1.5 (UW and Ub are the wall and the bulk velocity), were compared with the pure Poiseuille UW/Ub = 0, at a bulk Reynolds number equal to 4,800 corresponding to Re uptau = 288_{uptau} =288. The DNS results were used to scrutinize the capabilities of ζ-f eddy viscosity model (based on the elliptic relaxation concept) in reproducing the near-wall turbulence in non conventional flows where the shear stress structures are strongly different with respect to the cases used for models calibration. The ζ-f model (also in its basic formulation) demonstrated to have good prospects to reproduce the main phenomenology of such class of flows due to its built-in capabilities to account separately for the different (and opposite) near wall effects on turbulence: the damping due to viscosity and pressure reflection. The results of the computations demonstrated that standard ζ-f model can reasonably reproduce the phenomenology of these flows in terms of velocity and turbulent kinetic energy profiles and budgets.
机译:在本文中,我们提出了具有固定壁和移动壁的通道流动的直接数值模拟(DNS)。 U W / U b = 0.75的Poiseuille型,U W / U b b的中间型3种情况sub> = 1.215,并且Couette类型的U W / U b = 1.5(U W 和U b 是壁和体积速度),与纯Poiseuille U W / U b = 0进行比较,体积雷诺数等于4,800,对应于Re < sub> uptau = 288_ {uptau} = 288。 DNS结果用于仔细研究ζ-涡流粘度模型(基于椭圆弛豫概念)在非常规流中重现近壁湍流的能力,在非常规流中,剪应力结构相对于所用情况非常不同。模型校准。 ζ-f模型(也在其基本公式中)被证明具有重现此类流动的主要现象学的良好前景,这是因为它具有内置的能力,能够分别考虑不同的(相对的)近壁对湍流的影响:由于粘度和压力反射引起的阻尼。计算结果表明,标准的ζ-f模型可以根据速度和湍动能分布和预算合理地再现这些流动的现象。

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