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首页> 外文期刊>Boundary-layer Meteorology >A Coastal Bay Summer Breeze Study, Part 2: High-resolution Numerical Simulation of Sea-breeze Local Influences
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A Coastal Bay Summer Breeze Study, Part 2: High-resolution Numerical Simulation of Sea-breeze Local Influences

机译:沿海湾夏季微风研究,第2部分:海风局部影响的高分辨率数值模拟

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摘要

We complete the analysis of the data obtained during the experimental campaign around the semi circular bay of Quiberon, France, during two weeks in June 2006 (see Part 1). A reanalysis of numerical simulations performed with the Advanced Regional Prediction System model is presented. Three nested computational domains with increasing horizontal resolution down to 100 m, and a vertical resolution of 10 m at the lowest level, are used to reproduce the local-scale variations of the breeze close to the water surface of the bay. The Weather Research and Forecasting mesoscale model is used to assimilate the meteorological data. Comparisons of the simulations with the experimental data obtained at three sites reveal a good agreement of the flow over the bay and around the Quiberon peninsula during the daytime periods of sea-breeze development and weakening. In conditions of offshore synoptic flow, the simulations demonstrate that the semi-circular shape of the bay induces a corresponding circular shape in the offshore zones of stagnant flow preceding the sea-breeze onset, which move further offshore thereafter. The higher-resolution simulations are successful in reproducing the small-scale impacts of the peninsula and local coasts (breeze deviations, wakes, flow divergences), and in demonstrating the complexity of the breeze fields close to the surface over the bay. Our reanalysis also provides guidance for numerical simulation strategies for analyzing the structure and evolution of the near-surface breeze over a semi-circular bay, and for forecasting important flow details for use in upcoming sailing competitions.
机译:我们在2006年6月两周内完成了法国半圆湾半圆湾的实验活动期间获得的数据分析(见第1部分)。提出了利用先进的区域预测系统模型进行了数值模拟的重新分析。三个嵌套计算域随着水平分辨率向下增加至100米,以及最低水平的10米的垂直分辨率,用于再现靠近海湾水面的微风的局部比例变化。天气研究和预测Messcale模型用于吸收气象数据。在三个地点获得的实验数据的模拟比较揭示了海湾流量的良好一致性,在海风发展的白天期间,Quiberon半岛周围地区。在海上概率流动的条件下,模拟表明,海湾的半圆形形状在海风发作前的近岸流动的近岸流动中引起相应的圆形形状,此后的进一步移动。更高分辨率的模拟是成功再现半岛和局部海岸的小规模影响(微风偏差,醒来,流动分歧),并证明靠近海湾表面的微风场的复杂性。我们的Reanalysis还提供了用于分析半圆形湾的近表面微风的结构和演化的数值模拟策略的指导,并预测在即将到来的帆船比赛中使用的重要流动细节。

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