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首页> 外文期刊>Coastal engineering >The depth-varying response of coastal circulation and water levels to 2D radiation stress when applied in a coupled wave-tide-surge modelling system during an extreme storm
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The depth-varying response of coastal circulation and water levels to 2D radiation stress when applied in a coupled wave-tide-surge modelling system during an extreme storm

机译:当在极端风暴期间应用在耦合浪潮-潮汐模拟系统中时,海岸环流和水位对二维辐射应力的深度变化响应

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摘要

During storm events wave setup in shallow regions can contribute significantly to the total water elevation, and radiation stress can also generate alongshore drift influencing sediment transport. In low lying coastal regions this generates the potential for flood inundation and morphological change. A coupled tide-surge-wave modelling system is therefore required for accurate forecasting. Liverpool Bay, UK, is taken as a case study because it has a resource of observations and incorporates three estuaries, thus providing conditions to assess the model performance both at the open coast and within estuarine environments. The model covers a region encompassing depths from about 50 m below the mean tidal level to shallow wetting and drying regions, and has previously given good wave and surge hindcasts both for individual storm events and multi-year studies. The present study builds on an already accepted model, to include and assess the spatial influence of 2D radiation stress when implemented in a 3D circulation model. The results show that the method is computationally efficient, so relevant for operational use, and also provides a plausible solution. The varied influence of radiation stress across a coastal domain is demonstrated, with larger impact at an estuary mouth and along the open coast, while having lesser impact within an estuary and further offshore.
机译:在暴风雨事件中,浅水区的波浪形成可显着影响总水位,辐射应力也会产生沿岸漂移,从而影响沉积物的运输。在低洼的沿海地区,这可能导致洪水泛滥和形态变化。因此,为了准确的预测,需要使用耦合的潮浪波建模系统。以英国利物浦湾为例,因为它具有观测资源并结合了三个河口,从而为评估开放海岸和河口环境中的模型性能提供了条件。该模型覆盖的区域深度范围从平均潮汐水平以下约50 m到浅湿润和干燥区域,并且以前针对个别风暴事件和多年研究都给出了良好的波浪和潮汐后兆。本研究建立在已经接受的模型的基础上,以包括和评估在3D循环模型中实施时2D辐射应力的空间影响。结果表明,该方法计算效率高,因此与操作使用相关,并且还提供了可行的解决方案。结果表明,辐射应力在整个沿海地区的影响各不相同,在河口和沿海沿岸的影响更大,而在河口和更远的海上影响较小。

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