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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Sea-level rise impacts on the temporal and spatial variability of extreme water levels: A case study for St. Peter-Ording, Germany
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Sea-level rise impacts on the temporal and spatial variability of extreme water levels: A case study for St. Peter-Ording, Germany

机译:海平面上升对极限水平的时间和空间变异性的影响:德国圣彼得奥丁的案例研究

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Both the temporal and spatial variability of storm surge water level (WL) curves are usually not taken into account in flood risk assessments as observational data are often scarce. In addition, sea-level rise (SLR) can further affect the variability of WLs. We analyze the temporal and spatial variability of the WL curve of 75 historical storm surge events that have been numerically simulated for St. Peter-Ording at the German North Sea coast, considering the effects induced by three SLR scenarios (RCP 4.5, RCP 8.5, and a RCP 8.5 high end scenario). We assess potential impacts of these scenarios on two parameters related to flooding: overflow volumes and fullness. Our results indicate that due to both the temporal and spatial variability of those events the resulting overflow volume can be two or even three times greater. We observe a steepening of the WL curve with an increase of the tidal range under the three SLR scenarios, although SLR induced effects are relatively higher for the RCP 4.5. The steepening of the WL curve with SLR produces a reduction of the fullness, but the changes in overflow volumes also depend on the magnitude of the storm surge event.
机译:风暴浪涌水位(WL)曲线的时间和空间可变性通常不会在洪水风险评估中考虑,因为观察数据往往是稀缺的。此外,海平面上升(SLR)可以进一步影响WLS的可变性。我们分析了在德国北海海岸的圣彼得古木进行了数量模拟的75次历史风暴浪涌事件的WL曲线的时间和空间可变性,考虑到三个单反场景引起的效果(RCP 4.5,RCP 8.5,和RCP 8.5高端场景)。我们评估这些情景对与洪水相关的两个参数的潜在影响:溢出量和丰满。我们的结果表明,由于这些事件的时间和空间可变性都是由此产生的溢出量可以是两个甚至三倍。我们观察WL曲线的刻度随着三个单反场景下的潮汐范围而增加,尽管SLR诱导的效果对于RCP 4.5相对较高。 WL曲线与SLR的刻度产生了饱和度的降低,但溢出量的变化也取决于风暴浪涌事件的大小。

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