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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >A study of the three-dimensional spectral energy distribution in a zero pressure gradient turbulent boundary layer
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A study of the three-dimensional spectral energy distribution in a zero pressure gradient turbulent boundary layer

机译:零压力梯度湍流边界层中三维光谱能量分布的研究

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摘要

Time-resolved particle image velocimetry (PIV) measurements performed in wall parallel planes at three wall normal locations, y ~+ = 34, 108, and 278, in a zero pressure gradient turbulent boundary layer at Re _τ = 470 are used to illuminate the distribution of streamwise velocity fluctuations in a three-dimensional energy spectrum (2D in space and 1D in time) over streamwise, spanwise, and temporal wavelengths. Two high-speed cameras placed side by side in the streamwise direction give a 10δ × 5δ streamwise by spanwise field of view with a vector spacing of Δx~+ = Δz~+ ≈ 37 and a time step of Δt~+=0.5. Although 3D wavenumber - frequency spectra have been calculated in acoustics studies, to the authors' knowledge this is the first time they has been calculated and presented for a turbulent boundary layer. The calculation and normalization of this spectrum, its relation to 2D and 1D spectra, and the effects of the PIV algorithm on its shape are carefully analyzed and outlined.
机译:在Re_τ= 470的零压力梯度湍流边界层中的三个壁法向位置y〜+ = 34、108和278处,在壁平行平面中执行的时间分辨粒子图像测速(PIV)测量用于照亮在三维能量谱中(空间上为2D,时间上为1D)在流向,跨度和时间波长上的流向速度波动分布。沿流向并排放置的两个高速相机在跨度视场中流向为10δ×5δ,矢量间距为Δx〜+ =Δz〜+≈37,时间步长为Δt〜+ = 0.5。尽管在声学研究中已经计算出3D波数-频谱,但据作者所知,这是首次为湍流边界层进行计算和显示。仔细分析和概述了该光谱的计算和归一化,其与2D和1D光谱的关系以及PIV算法对其形状的影响。

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