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首页> 外文期刊>Boundary-Layer Meteorology >Propagation and Effects of a Mesoscale Gravity Wave Over a Weakly-Stratified Nocturnal Boundary Layer During the SABLES2006 Field Campaign
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Propagation and Effects of a Mesoscale Gravity Wave Over a Weakly-Stratified Nocturnal Boundary Layer During the SABLES2006 Field Campaign

机译:SABLES2006野战期间弱分层夜间边界层上中尺度重力波的传播及其影响

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摘要

During the SABLES2006 (Stable Atmospheric Boundary Layer Experiment in Spain 2006) field campaign, a gravity-wave episode was observed on the night of July 11 by the microbarometers deployed at the surface and on the 100-m tower. The high-amplitude, low-frequency periodic pressure fluctuations were very well correlated with the wind speed and direction. Data from neighbouring automatic stations showed that the gravity wave was not local, but long-lived and mesoscale. The propagation of the wave over the experimental site had significant effects on the structure of the weakly-stratified nocturnal boundary layer that developed that night: the stability increased, turbulent vertical motions were suppressed, the nocturnal low-level jet was disrupted, and periodic temperature fluctuations of amplitude up to 3–4 K were observed. In this work we analyse the different available data sources (tower data, RASS-SODAR, microbarometric, satellite imagery, automatic stations) to describe the phenomena in depth and to find a suitable explanation for the generation and propagation of the wave. The linear wave theory explains remarkably well most of the observations, and the wave parameters could be estimated by applying a wavelet-based technique to surface microbarometric measurements. We also analyse the vertical structure of the wave and find wave ducting conditions above the surface. Finally, by means of the multi-resolution flux decomposition, we analyse in detail the changes in vertical turbulent fluxes and the spectra of turbulent motions produced by the interaction between the gravity wave and the local flow.
机译:在SABLES2006(西班牙2006年稳定的大气边界层实验)野外活动期间,7月11日晚上,部署在地面和100米塔上的微气压计观测到了重力波发作。高振幅,低频周期性压力波动与风速和风向有很好的相关性。来自邻近自动站的数据表明,重力波不是局部的,而是长寿命的中尺度的。波在实验点上的传播对当晚形成的弱分层夜间边界层的结构具有重大影响:稳定性增加,湍流垂直运动受到抑制,夜间低空急流被破坏,周期性温度观察到幅度波动高达3-4K。在这项工作中,我们分析了不同的可用数据源(塔架数据,RASS-SODAR,微气压计,卫星图像,自动站),以描述深度现象并为波的产生和传播找到合适的解释。线性波理论可以很好地解释大多数观测结果,并且可以通过将基于小波的技术应用于表面微气压测量来估算波参数。我们还分析了波浪的垂直结构,并找到了表面上方的波浪导管条件。最后,通过多分辨率通量分解,我们详细分析了垂直湍流的变化以及重力波与局部流之间的相互作用所产生的湍流运动谱。

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