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Impact of a sea breeze on the boundary-layer dynamics and the atmospheric stratification in a coastal area of the North Sea

机译:海风对北海沿岸边界层动力学和大气分层的影响

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In-situ sodar and lidar measurements were coupled with numerical simulations for studying a sea-breeze event in a flat coastal area of the North Sea. The study’s aims included the recognition of the dynamics of a sea-breeze structure, and its effects on the lower troposphere stratification and the three-dimensional (3D) pollutant distribution. A sea breeze was observed with ground-based remote sensing instruments and analysed by means of numerical simulations using the 3D non-hydrostatic atmospheric model Meso-NH. The vertical structure of the lower troposphere was experimentally determined from the lidar and sodar measurements, while numerical simulations focused on the propagation of the sea breeze inland. The sea-breeze front, the headwind, the thermal internal boundary layer, the gravity current and the sea-breeze circulation were observed and analysed. The development of a late stratification was also observed by the lidar and simulated by the model, suggesting the formation of a stable multilayered structure. The transport of passive tracers inside the sea breeze and their redistribution above the gravity current was simulated too. Numerical modelling showed that local pollutants may travel backward to the sea above the gravity current at relatively low speed due to the shearing between the landward gravity current and the seaward synoptic wind. Such dynamic conditions may enhance an accumulation of pollutants above coastal industrial areas.
机译:现场声雷达和激光雷达测量与数值模拟相结合,用于研究北海平坦沿海地区的海风事件。该研究的目的包括认识海风结构的动力学及其对低层对流层分层和三维(3D)污染物分布的影响。使用地面遥感仪器观察到海风,并使用3D非静水大气模型Meso-NH通过数值模拟对海风进行了分析。对流层下部的垂直结构是通过激光雷达和声雷达的测量实验确定的,而数值模拟则侧重于海风向内陆的传播。观测并分析了海风锋,逆风,内部热边界层,重力流和海风环流。激光雷达还观察到后期分层的发展,并通过模型进行了模拟,表明形成了稳定的多层结构。还模拟了无源示踪剂在海风中的传输及其在重力流上方的重新分布。数值模拟表明,由于陆上重力流和海向风之间的剪切作用,局部污染物可能以较低的速度向海上方流回重力。这种动态条件可能会增加沿海工业区上方污染物的积累。

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