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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Imprints of wave climate and mean sea level variations in the dynamics of a coastal spit over the last 250 years: Cap Ferret, SW France
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Imprints of wave climate and mean sea level variations in the dynamics of a coastal spit over the last 250 years: Cap Ferret, SW France

机译:在过去的250年里,波浪气候和平均海平面变化的沿海吐痰的变化:Cap Ferret,SW法国

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In coastal areas, sea level rise (SLR) and changing wave climates are expected to be the main oceanic drivers of shoreline adjustments. These drivers have been shown to vary on a wide spectrum of spatial and temporal scales. Nonetheless, a general rule about how this variability impacts global shorelines remains to be articulated. Here, we discuss the impacts of wave climate changes and SLR on the evolution of a barrier spit-inlet system over the last 250 years. The distal end of the Cap Ferret barrier spit, SW France, has undergone large-scale oscillations that were well correlated with variations of the decadal average of the winter North Atlantic Oscillation (NAO) index. The local wave climate hindcast supports that increased alongshore wave energy fluxes associated with the positive phase of the NAO were responsible for the updrift retreat of the spit. By opposition, the spit has elongated downdrift when waves were less energetic and more shore normal, as during the negative phase of the NAO. In addition, lower rates of SLR appeared to be necessary for the spit to develop, as higher rates of SLR very likely forced the adjacent inlet to enlarge, at the expense of the spit. These results should help to predict and detect coastal adjustments driven by climate change and by climate variability. (c) 2019 John Wiley & Sons, Ltd.
机译:在沿海地区,海平面上升(SLR)和变化波浪气候预计将成为海岸线调整的主要海洋驱动因素。这些驱动程序已被证明在广泛的空间和时间尺度上变化。尽管如此,关于这种可变性如何影响全球海岸线的一般规则仍有阐明。在这里,我们讨论了波浪气候变化和SLR在过去250年中对屏障吐痰​​系统演变的影响。帽丘甲屏障吐的远端,SW法国经历了大规模的振荡,与冬季北大西洋振荡(NAO)指数的近代平均水平的变化良好。局部波浪气候Hindcast支持与Nao的正阶段相关的沿海波能量通量增加,负责唾液的上升撤退。反对派时,当波浪较低的精力较低时,吐痰伸长腹部延长屈服于正常的距离正常。此外,较低的SLR速率似乎是吐痰所必需的,因为SLR的更高速率很可能被迫屈服于吐痰的相邻入口。这些结果应有助于预测和检测由气候变化和气候变化驱动的沿海调整。 (c)2019 John Wiley&Sons,Ltd。

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