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Water level response to 1999 Hurricane Floyd in the Chesapeake Bay

机译:切萨皮克湾对1999年弗洛伊德飓风的水位响应

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During the passage of Hurricane Floyd, a unique water level fluctuation occurred in the Chesapeake Bay with double high peaks of storm tide in the lower Bay and a moderate set-down in the upper Bay. The response of water level inside the Bay to the hurricane has been studied through analysis of observations and model simulations. The ADvance CIRculation (ADCIRC) model was applied to the Chesapeake Bay for this study. A high-resolution tide and storm surge model capable of storm surge prediction has been developed for the Bay. The study shows that the water level variation during the hurricane inside the Bay can be well explained by the superposition of two distinct physically driven mechanisms: storm tide that developed in the offshore regions propagating into the Bay and surge generated by local wind. The double peaks of storm tide that occurred in the lower Bay regions are mainly caused by the tidal component, which modulates the incoming surge wave generated in the offshore regions. The model experiments show that the incoming storm tide can propagate to the head of the estuary without much attenuation. Consequently, the superposition of the surge generated by the local northeasterly and northwesterly winds and the incoming storm tide results in an enhanced set-up in the lower Bay region, while the set-down in the upper Bay regions is reduced. The offshore water level variation influences the lower Bay regions more significantly. The storm tide propagating into the Bay accounts for most of the water level variation in the lower Bay regions during the storm. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在弗洛伊德飓风过后,切萨皮克湾出现了独特的水位波动,下湾出现了两次双高峰的风暴潮,上湾出现了中等程度的降落。通过观测分析和模型模拟研究了海湾内部水位对飓风的响应。这项研究将先进的循环(ADCIRC)模型应用于切萨皮克湾。已经为海湾开发了能够预报风暴潮的高分辨率潮汐和风暴潮模型。研究表明,海湾内部飓风期间的水位变化可以通过两种不同的物理驱动机制的叠加来很好地解释:在沿海地区传播到海湾的风暴潮和局部风产生的浪涌。在下海湾地区发生的风暴潮双峰主要是由潮汐分量引起的,潮汐分量调制了近海区域产生的浪涌。模型实验表明,传入的风暴潮可以传播到河口顶部而没有太大的衰减。因此,由局部东北风和西北风产生的浪涌与风暴潮的叠加导致下部湾区的构造增强,而上部湾区的构造减小。海上水位变化对下海湾地区的影响更大。传播到海湾的风暴潮是造成风暴期间海湾下部地区水位变化的主要原因。 (c)2006 Elsevier Ltd.保留所有权利。

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