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Effects of radius ratio on turbulent concentric annular pipe flow and structures

机译:半径比对湍流同心环形管道流动和结构的影响

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摘要

The effects of radius ratio on fully-developed turbulent concentric annular pipe flow and structures are investigated using direct numerical simulations (DNS). In order to study the radius ratio effects on the flow, four radius ratios of a concentric annular pipe (for R-i/R-o = 0.1-0.7) are compared at a fixed Reynolds number. Here, R-i and R-o are the radii of the inner and outer pipes, respectively. It is observed that the radius ratio influences the interaction of two boundary layers developed over the inner and outer cylinder surfaces, and has a significant impact on the turbulent flow structures and dynamics. The characteristics of the flow field are investigated in both physical and spectral spaces, which include the analyses of the first- and second-order statistical moments, budget balance of the transport equation of Reynolds shear stress, two-point correlation coefficients, and premultiplied spectra of velocity and vorticity fluctuations.
机译:使用直接数值模拟(DNS)研究了半径比对完全开发的湍流同心环形管道流动和结构的影响。为了研究对流量的半径比效应,在固定的雷诺数比较了同心环形管的四个半径比(用于R-I / R-o = 0.1-0.7)。这里,R-I和R-O分别是内管的半径。观察到半径比率影响在内筒表面和外筒表面上产生的两个边界层的相互作用,并且对湍流结构和动力学产生显着影响。在物理和光谱空间中研究了流场的特征,包括分析第一和二阶统计时刻,雷诺剪切应力的传输方程的预算平衡,双点相关系数和预磨耗的光谱速度和涡旋波动。

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