海平面上升引起的沿海低洼地暴露变化:对沿海保护战略的影响

IF 1.6 Q4 ENVIRONMENTAL SCIENCES Anthropocene Coasts Pub Date : 2024-02-27 DOI:10.1007/s44218-024-00041-1
Rémi Thiéblemont, Gonéri le Cozannet, Jérémy Rohmer, Adrien Privat, Romain Guidez, Caterina Negulescu, Xénia Philippenko, Arjen Luijendijk, Floris Calkoen, Robert J. Nicholls
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引用次数: 0

摘要

由于海平面上升(SLR),预计 21 世纪海岸侵蚀和洪水将加剧。为了防止无管理的沿海开发造成不利影响,国家组织可以实施土地保护政策,包括获取沿海土地以避免进一步开发。然而,这些保留区域仍然暴露在因 SLR 而加剧的洪水和侵蚀中。在此,我们对法国海岸保护局(Cdl)的沿海土地遗产组合的暴露程度进行了量化。我们发现,Cdl 拥有(预计将拥有)的土地中有 30%(约 40%)位于当代最高潮位以下。根据温室气体高排放情景(SSP5-8.5)和中度情景(SSP2-4.5)的预测,到 2100 年,地表裸露面积将分别增加近 10%和 2150 年。法国西地中海沿岸的暴露量增幅最大。我们还发现,与 2-4 米范围内的可持续土地覆被相比,0-1 米范围内的可持续土地覆被增加得更快。关于侵蚀,我们发现,如果观察到的历史趋势持续下去,2100 年将有近 1% 的 Cdl 土地可能消失。如果再加上可持续土地退化的影响,土地损失将超过 3%。我们的研究证实了之前的发现,即 Cdl 需要在其土地征用战略中考虑 SLR 造成的土地损失,并开始征用离海岸较远的土地。
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Sea-level rise induced change in exposure of low-lying coastal land: implications for coastal conservation strategies

Coastal erosion and flooding are projected to increase during the 21st century due to sea-level rise (SLR). To prevent adverse impacts of unmanaged coastal development, national organizations can apply a land protection policy, which consists of acquiring coastal land to avoid further development. Yet, these reserved areas remain exposed to flooding and erosion enhanced by SLR. Here, we quantify the exposure of the coastal land heritage portfolio of the French Conservatoire du littoral (Cdl). We find that 30% (~40%) of the Cdl lands owned (projected to be owned) are located below the contemporary highest tide level. Nearly 10% additional surface exposure is projected by 2100 under the high greenhouse gas emissions scenario (SSP5-8.5) and 2150 for the moderate scenario (SSP2-4.5). The increase in exposure is largest along the West Mediterranean coast of France. We also find that Cdl land exposure increases more rapidly for SLR in the range of 0–1 m than for SLR in the range 2–4 m. Thus, near-future uncertainty on SLR has the largest impact on Cdl land exposure evolution and related land acquisition planning. Concerning erosion, we find that nearly 1% of Cdl land could be lost in 2100 if observed historical trends continue. Adding the SLR effect could lead to more than 3% land loss. Our study confirms previous findings that Cdl needs to consider land losses due to SLR in its land acquisition strategy and start acquiring land farther from the coast.

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