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Analysis of extreme water levels in the lower Chesapeake Bay

机译:切萨皮克湾下游极端水位分析

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The lower Chesapeake Bay (LCB) experiences coastal flooding due to both tropical and extratropical systems. Water levels produced from these events is often called storm surge; however, storm tide (a combination of the predicted tide, storm surge, and local anomaly), is a more appropriate term. Storm tide levels vary spatially in the LCB. Here we assess this spatial variability relative to local datums, such as highest astronomical tide (HAT) and mean lower low water (MLLW). We determined whether there was any difference in hours above HAT between each of our stations for each storm. We revealed a trend that central bay stations, such as Windmill Point and Lewisetta, spend more time above HAT than the stations in the south bay and Washington. The maximum water level above MLLW and HAT was determined for each station and storm and then analyzed for spatial trends. We found that, in general, central bay stations have smaller maximum heights above HAT than the south bay stations. Washington does not follow the pattern of other large tidal-range stations, such as the south bay stations.
机译:切萨皮克湾下游(LCB)由于热带和温带系统而遭受沿海洪灾。这些事件产生的水位通常称为风暴潮。但是,风暴潮(预测潮汐,风暴潮和局部异常的组合)是一个更合适的术语。 LCB中的风暴潮水平在空间上变化。在这里,我们评估相对于本地基准的这种空间变异性,例如最高的天文潮(HAT)和平均较低的低水位(MLLW)。我们确定了每个风暴期间每个站之间的HAT上方小时数是否存在差异。我们揭示了一种趋势,即中央海湾车站(例如,风车角和刘易塞塔)在HAT上方停留的时间比南海湾和华盛顿车站的停留时间更长。确定每个气象站和暴雨的最高水位和最高水位以上的水位,然后分析其空间趋势。我们发现,一般而言,中央海湾站的最大高度要比南部海湾站的HAT小。华盛顿没有遵循其他大型潮汐测距站的模式,例如南湾站。

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