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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Numerical analysis of developing turbulent flow in a 180(circle) bend tube by an algebraic Reynolds stress model
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Numerical analysis of developing turbulent flow in a 180(circle) bend tube by an algebraic Reynolds stress model

机译:用代数雷诺应力模型对180(圆)弯管内湍流发展的数值分析

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摘要

A numerical analysis has been performed for three-dimensional developing turbulent flow in a 180 degrees bend tube with straight inlet and outlet section used by an algebraic Reynolds stress model. To our knowledge, numerical investigations, which show the detailed comparison between calculated results and experimental data including distributions of Reynolds stresses, are few and far between. From this point of view, an algebraic Reynolds stress model in conjunction with boundary-fitted co-ordinate system is applied to a 180 degrees bend tube in order to predict the anisotropic turbulent structure precisely. Calculated results are compared with the experimental data including distributions of Reynolds stresses. As a result of this analysis, it has been found that the calculated results show a comparatively good agreement with the experimental data of the time-averaged velocity and the secondary vectors in both the bent tube and straight outlet sections. For example, the location of the maximum streamwise velocity, which appears near the top or bottom wall in the bent tube, is predicted correctly by the present method. As for the comparison of Reynolds stresses, the present method has been found to simulate many characteristic features of streamwise normal stress and shear stresses in the bent tube qualitatively and has a tendency to under-predict its value quantitatively. Judging from the comparison between the calculated and the experimental results, the algebraic Reynolds stress model is applicable to the developing turbulent flow in a bent tube that is known as a flow with a strong convective effect. Copyright (c) 2005 John Wiley A Sons, Ltd.
机译:对于代数雷诺应力模型所使用的具有直进,断面的180度弯管中的三维发展湍流进行了数值分析。据我们所知,数值研究显示了计算结果与包括雷诺应力分布在内的实验数据之间的详细比较,而且相差甚远。从这个角度出发,将代数雷诺应力模型与边界拟合坐标系结合起来,应用于180度弯管,以便精确地预测各向异性湍流结构。将计算结果与包括雷诺应力分布的实验数据进行比较。分析的结果表明,计算结果与弯曲管和出口直管段中的时均速度和次矢量的实验数据具有较好的一致性。例如,通过本方法可以正确预测出现在弯管的顶壁或底壁附近的最大水流速度的位置。关于雷诺应力的比较,已经发现本方法定性地模拟了弯管中的流向法向应力和剪切应力的许多特征,并且存在定量地低估其值的趋势。从计算结果与实验结果之间的比较来看,代数雷诺应力模型适用于弯管中正在发展的湍流,这被称为对流效果强的流。版权所有(c)2005 John Wiley A Sons,Ltd.

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