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Coupling of wave and circulation models in coastal–ocean predicting systems: a case study for the German Bight

机译:沿海-海洋预测系统中波浪和环流模型的耦合:以德国湾为例

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This study addresses the impact of coupling between wave and circulation models on the quality of coastal ocean predicting systems. This is exemplified for the German Bight and its coastal area known as the Wadden Sea. The latter is the area between the barrier islands and the coast. This topic reflects the increased interest in operational oceanography to reduce prediction errors of state estimates at coastal scales, which in many cases are due to unresolved non-linear feedback between strong currents and wind waves. In this study we present analysis of wave and hydrographic observations, as well as results of numerical simulations. A nested-grid modelling system is used to produce reliable nowcasts and short-term forecasts of ocean state variables, including waves and hydrodynamics. The database includes ADCP observations and continuous measurements from data stations. The individual and combined effects of wind, waves and tidal forcing are quantified. The performance of the forecast system is illustrated for the cases of several extreme events. The combined role of wave effects on coastal circulation and sea level are investigated by considering the wave-dependent stress and wave breaking parameterization. Also the response, which the circulation exerts on the waves, is tested for the coastal areas. The improved skill of the coupled forecasts compared to the non-coupled ones, in particular during extreme events, justifies the further enhancements of coastal operational systems by including wave effects in circulation models.
机译:这项研究解决了波浪和环流模型之间的耦合对沿海海洋预报系统质量的影响。德国湾及其沿海地区瓦登海就是一个例子。后者是障碍岛和海岸之间的区域。本主题反映了对操作海洋学的兴趣日益浓厚,以减少沿海规模的状态估计的预测误差,这在很多情况下是由于强流和风波之间未解决的非线性反馈造成的。在这项研究中,我们介绍了波浪和水文观测的分析以及数值模拟的结果。嵌套网格建模系统用于生成可靠的临近预报和海洋状态变量(包括波浪和流体动力学)的短期预测。该数据库包括ADCP观测值和来自数据站的连续测量值。对风,波浪和潮汐强迫的单独和综合影响进行了量化。举例说明了几种极端事件情况下的预测系统性能。通过考虑波浪相关的应力和波浪破碎参数,研究了波浪效应对海岸环流和海平面的综合作用。还对沿海地区测试了循环施加在波浪上的响应。与非耦合预测相比,耦合预测的技巧提高了,特别是在极端事件期间,通过将波浪效应包括在环流模型中,证明了海岸作业系统的进一步增强。

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