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Spatial Variability of the Flow and Turbulence Within a Model Canopy

机译:模型冠层内流动和湍流的空间变异性

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摘要

The spatial variability of the mean flow and turbulence in and above a model canopy is investigated using three-dimensional laser Doppler velocimetry. The mean flow and turbulence are shown to be highly variable in space within the canopy but rapidly converge above the canopy. The coherent variations in the mean flow generate dispersive fluxes contributing almost a fifth to the total flux of momentum, and a greater contribution to the divergence of the flux, within the canopy. The higher-order turbulent statistics are more variable than the mean flow and often strongly correlated in space to variations in the mean flow. The implications of this microscale spatial variability for both field experiments and other laboratory experiments into canopy flow are discussed.
机译:使用三维激光多普勒测速仪研究了模型冠层内部和上方的平均流量和湍流的空间变异性。平均流量和湍流在顶篷内的空间变化很大,但在顶篷上方迅速收敛。平均流量的相干变化会产生色散通量,几乎占总动量通量的五分之一,并且对冠层内通量的发散性贡献更大。高阶湍流统计量比平均流量变化更大,并且通常在空间上与平均流量变化密切相关。讨论了这种微观空间变异性对于田间实验和其他实验室实验的冠层流动的影响。

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