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Turbulence vertical structure of the boundary layer during the afternoon transition

机译:下午过渡期间边界层湍流垂直结构

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We investigate the decay of planetary boundary layer (PBL) turbulence in the afternoon, from the time the surface buoyancy flux starts to decrease until sunset. Dense observations of mean and turbulent parameters were acquired during the Boundary Layer Late Afternoon and Sunset Turbulence (BLLAST) field experiment by several meteorological surface stations, sounding balloons, radars, lidars and two aircraft during the afternoon transition. We analysed a case study based on some of these observations and large-eddy simulation (LES) data focusing on the turbulent vertical structure throughout the afternoon transition. The decay of turbulence is quantified through the temporal and vertical evolution of (1) the turbulence kinetic energy (TKE), (2) the characteristic length scales of turbulence and (3) the shape of the turbulence spectra. A spectral analysis of LES data, airborne and surface measurements is performed in order to characterize the variation in the turbulent decay with height and study the distribution of turbulence over eddy size. This study highlights the LES ability to reproduce the turbulence evolution throughout the afternoon. LESs and observations agree that the afternoon transition can be divided in two phases: (1) a first phase during which the TKE decays at a low rate, with no significant change in turbulence characteristics, and (2) a second phase characterized by a larger TKE decay rate and a change in spectral shape, implying an evolution of eddy size distribution and energy cascade from low to high wave number. The changes observed either in TKE decay (during the first phase) or in the vertical wind spectra shape (during the second phase of the afternoon transition) occur first in the upper region of the PBL. The higher within the PBL, the stronger the spectra shape changes.
机译:我们在午后调查行星边界层(PBL)湍流的衰减,从表面浮力通量开始减少到日落时。在下午晚些时候和日落湍流(BLLAST)场实验中,在下午的几个气象表面,发声气球,雷达,楣和两架飞机在下午过渡期间获得了均值和湍流参数的致密观察。基于其中一些观察结果和大型仿真(LES)数据的分析了一个案例研究,该仿真(LES)数据集中在整个下午过渡的湍流垂直结构上。通过(1)湍流动能(TKE)的时间和垂直演进量化湍流的衰减量化,(2)湍流的特征长度和(3)湍流光谱的形状。 LES数据,空气传播和表面测量的光谱分析,以表征具有高度的湍流衰减的变化,并研究涡流的湍流分布。本研究突出了整个下午再现湍流演变的能力。较少和观察结果同意,下午转换可以分为两个阶段:(1)第一阶段,其中TKE以低速率衰减,无明显变化的湍流特性,并且(2)具有更大的第二阶段TKE衰减速率和光谱形状的变化,暗示涡尺寸分布和能量级联从低到高波数的演变。在TKE衰减(在第一阶段期间)或在垂直风光光谱中(在下午转换的第二阶段期间)观察到的变化首先在PBL的上部区域中发生。 PBL内的越高,光谱形状的变化越强。

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