Wang Wenkang, Pan Chong, Wang Jinjun
Institute of Fluid Mechanics, Beihang University, Beijing 100191, China.
Entropy (Basel). 2018 Dec 31;21(1):24. doi: 10.3390/e21010024.
Low-speed streaks in wall-bounded turbulence are the dominant structures in the near-wall turbulent self-sustaining cycle. Existing studies have well characterized their spanwise spacing in the buffer layer and below. Recent studies suggested the existence of these small-scale structures in the higher layer where large-scale structures usually receive more attention. The present study is thus devoted to extending the understanding of the streak spacing to the log layer. An analysis is taken on two-dimensional (2D) wall-parallel velocity fields in a smooth-wall turbulent boundary layer with R e τ = 440∼2400, obtained via either 2D Particle Image Velocimetry (PIV) measurement taken here or public Direct Numerical Simulation (DNS). Morphological-based streak identification analysis yields a R e -independent log-normal distribution of the streak spacing till the upper bound of the log layer, based on which an empirical model is proposed to account for its wall-normal growth. The small-scale part of the spanwise spectra of the streamwise fluctuating velocity below y + = 100 is reasonably restored by a synthetic simulation that distributes elementary streak units based on the proposed empirical streak spacing model, which highlights the physical significance of streaks in shaping the small-scale part of the velocity spectra beyond the buffer layer.
壁面边界层湍流中的低速条纹是近壁湍流自持循环中的主导结构。现有研究已经很好地描述了它们在缓冲层及以下区域的展向间距。最近的研究表明,在通常更受关注的大尺度结构所在的较高层中也存在这些小尺度结构。因此,本研究致力于将对条纹间距的理解扩展到对数层。对通过此处进行的二维粒子图像测速(PIV)测量或公开的直接数值模拟(DNS)获得的、具有(R e τ = 440∼2400)的光滑壁面湍流边界层中的二维(2D)壁面平行速度场进行了分析。基于形态学的条纹识别分析得出,直到对数层的上限,条纹间距呈与(R e)无关的对数正态分布,并据此提出了一个经验模型来解释其壁面法向增长。通过基于所提出的经验条纹间距模型分布基本条纹单元的合成模拟,合理地恢复了(y + = 100)以下流向脉动速度展向谱的小尺度部分,这突出了条纹在塑造缓冲层以外速度谱小尺度部分中的物理意义。