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Effect of Very-Large-Scale Motions on One- and Two-Point Statistics in Turbulent Pipe Flow Investigated by Direct Numerical Simulations

机译:直接数值模拟研究湍流管道流动对湍流管道流动统计的影响与两点统计的影响

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Very-large-scale motions appear in the bulk region of turbulent pipe flow. They become increasingly energetic with the Reynolds number and interact with the near-wall turbulence. These structures appear either in the shape of positive (high-speed) or negative (low-speed) streamwise velocity fluctuation. The impact of the sign of the structures on the pipe flow turbulence is analysed in this study by means of conditionally averaged one- and two-point statistics, using data from direct numerical simulations of turbulent pipe flow in a flow domain of length L = 42R and friction Reynolds numbers of 180 ≤ Re_T ≤ 1500. Conditionally averaged two-point velocity correlations reveal that low-speed motions are longer and more energetic than their high-speed counterparts. The latter are predominately responsible for the Reynolds number dependency of turbulence statistics in the vicinity of the wall, which is in good agreement with observations of the so-called amplitude modulation in wall-bounded turbulence.
机译:湍流管道流量的散装地区出现了非常大的尺寸动作。它们与雷诺数变得越来越精力充沛,与近壁湍流相互作用。这些结构的形状为正(高速)或负(低速)流动速度波动。通过条件平均统计分析了本研究分析了结构对管道流湍流的影响,使用来自长度L = 42R的流动域中的湍流管道流程的直接数值模拟的数据进行了分析摩擦雷诺数为180≤Re_t≤1500.条件平均的两点速度相关性揭示了低速运动比其高速对应物更长且更精力。后者主要负责墙壁附近的湍流统计的雷诺数依赖性,这与壁限制湍流中所谓的幅度调制的观察良好。

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