Evolution of coherent structures in turbulent boundary layers based on moving tomographic PIV

被引:1
|
作者
Qi Gao
Cecilia Ortiz-Dueñas
Ellen K. Longmire
机构
[1] Beijing University of Aeronautics and Astronautics,Key Laboratory of Fluid Mechanics, Ministry of Education
[2] University of Minnesota,Department of Aerospace Engineering and Mechanics
来源
Experiments in Fluids | 2013年 / 54卷
关键词
Turbulent Boundary Layer; Streamwise Velocity; Spanwise Direction; Tomographic Particle Image Velocimetry; Multiplicative Algebraic Reconstruction Technique;
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学科分类号
摘要
A moving tomographic particle image velocimetry method was designed and implemented to measure temporal evolution of velocity fields in three-dimensional volumes and to track coherent structures within a turbulent boundary layer with Reτ ≈ 2,410. The evolution of hairpin structures and eddy packets was examined at two locations in the logarithmic region: z+ = 100–300 and 300–500. Meandering, merging and breaking of long slow regions associated with packets were observed. The meandering of long slow regions at both wall-normal locations was tracked using cross-correlation between neighboring time steps. It was found that long slow regions could persist within the logarithmic region over a travel distance of 15δ corresponding to a time period 24.3δ/U∞ (t+ > 2,300) and that the packet regions could travel stably forward in the streamwise direction while maintaining fixed spanwise inclinations in the range 0°–10°.
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