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首页> 外文期刊>Journal of Applied Meteorology and Climatology >External Influences on Nocturnal Thermally Driven Flows in a Deep Valley
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External Influences on Nocturnal Thermally Driven Flows in a Deep Valley

机译:对深谷夜间热驱动流的​​外部影响

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摘要

The dynamics that govern the evolution of nighttime flows in a deep valley, California's Owens Valley, are analyzed. Measurements from the Terrain-Induced Rotor Experiment (T-REX) reveal a pronounced valley-wind system with often nonclassical flow evolution. Two cases with a weak high pressure ridge over the study area but very different valley flow evolution are presented. The first event is characterized by the appearance of a layer of southerly flow after midnight local time, sandwiched between athermally driven low-level downvalley (northerly) flow and a synoptic northwesterly flow aloft. The second event is characterized by an unusually strong and deep downvalley jet, exceeding 15 m s~(-1). The analysis is based on the T-REX measurement data and the output of high-resolution large-eddy simulations using the Advanced Regional Prediction System (ARPS). Using horizontal grid spacings of 1 km and 350 m, ARPS reproduces the observed flow features for these two cases very well. It is found that thelow-level along-valley forcing of the valley wind is the result of a superposition of the local thermal forcing and a midlevel (2-2.5 km MSL) along-valley pressure forcing. The analysis shows that the large difference in valley flow evolution derives primarily from differences in the midlevel pressure forcing, and that the Owens Valley is particularly susceptible to these midlevel external influences because of its specific geometry. The results demonstrate the delicate interplay of forces that can combine to determine the valley flow structure on any given night.
机译:分析了控制深谷(加利福尼亚州的欧文斯谷)夜间流量演变的动力学。地形诱导转子实验(T-REX)的测量结果显示出明显的谷风系统,且通常具有非经典的气流演化。提出了两个案例,研究区域上的高压脊较弱,但谷流演化非常不同。第一个事件的特征是当地时间午夜之后出现了一层南风,夹在非热驱动的低水平谷流(北风)和高空向北风之间。第二个事件的特征是超强的深谷射流,超过15 m s〜(-1)。该分析基于T-REX测量数据和使用高级区域预测系统(ARPS)的高分辨率大涡流模拟的输出。使用1 km和350 m的水平网格间距,ARPS可以很好地重现这两种情况下的观测流动特征。发现谷风的低水平沿谷强迫是局部热强迫与中水平(2-2.5 km MSL)沿谷压力强迫叠加的结果。分析表明,山谷流演化的主要差异主要来自中层压力强迫的差异,并且欧文斯山谷由于其特定的几何形状特别容易受到这些中层外部影响的影响。结果表明,在任意给定的夜晚,力的微妙相互作用可以组合起来确定山谷的流动结构。

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