Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, New Jersey 08540, USA.
Phys Rev Lett. 2012 Mar 2;108(9):094501. doi: 10.1103/PhysRevLett.108.094501. Epub 2012 Feb 28.
Both the inherent intractability and complex beauty of turbulence reside in its large range of physical and temporal scales. This range of scales is captured by the Reynolds number, which in nature and in many engineering applications can be as large as 10(5)-10(6). Here, we report turbulence measurements over an unprecedented range of Reynolds numbers using a unique combination of a high-pressure air facility and a new nanoscale anemometry probe. The results reveal previously unknown universal scaling behavior for the turbulent velocity fluctuations, which is remarkably similar to the well-known scaling behavior of the mean velocity distribution.
湍流的固有复杂性和内在美感都在于其广泛的物理和时间尺度。这一尺度范围可以用雷诺数来捕捉,在自然界和许多工程应用中,雷诺数可以高达 10(5)-10(6)。在这里,我们使用高压空气设施和新型纳米风速计探头的独特组合,报告了前所未有的雷诺数范围内的湍流测量结果。结果揭示了湍流速度波动的未知普遍标度行为,这与众所周知的平均速度分布的标度行为非常相似。