首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >The influence of nearshore sand bank dynamics on shoreline evolution in a macrotidal coastal environment, Calais, northern France
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The influence of nearshore sand bank dynamics on shoreline evolution in a macrotidal coastal environment, Calais, northern France

机译:法国北部加来大潮沿海环境中近岸砂岸动力学对海岸线演变的影响

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Analyses of shoreline and bathymetry change near Calais, northern coast of France, showed that shoreline evolution during the 20th century was strongly related with shoreface and nearshore bathymetry variations. Coastal erosion generally corresponds to areas of nearshore seabed lowering while shoreline progradation is essentially associated with areas of seafloor aggradation, notably east of Calais where an extensive sand flat experienced seaward shoreline displacement up to more than 300m between 1949 and 2000. Mapping of bathymetry changes since 1911 revealed that significant variation in nearshore morphology was caused by the onshore and alongshore migration of a prominent tidal sand bank that eventually welded to the shore. Comparison of bathymetry data showed that the volume of the bank increased by about 10×10~7m~3 during the 20th century, indicating that the bank was acting as a sediment sink for some of the sand transiting alongshore in the coastal zone. Several lines of evidence show that the bank also represented a major sediment source for the prograding tidal flat, supplying significant amounts of sand to the accreting upper beach. Simulation of wave propagation using the SWAN wave model (Booij et al., 1999) suggests that the onshore movement of the sand bank resulted in a decrease of wave energy in the nearshore zone, leading to more dissipative conditions. Such conditions would have increased nearshore sediment supply, favoring aeolian dune development on the upper beach and shoreline progradation. Our results suggest that the onshore migration of nearshore sand banks may represent one of the most important, and possibly the primary mechanism responsible for supplying marine sand to beaches and coastal dunes in this macrotidal coastal environment.
机译:对法国北部海岸加来附近海岸线和水深变化的分析表明,20世纪海岸线的演变与岸面和近岸水深变化密切相关。海岸侵蚀通常对应于近海海床下降的区域,而海岸线的侵蚀基本上与海底的侵蚀有关,特别是在加来以东,在1949年至2000年之间,宽阔的砂滩经历了海岸线向海的位移,最大位移超过300m。 1911年揭示,近岸形态的显着变化是由一个显着的潮汐沙岸在岸上和沿岸的迁移所致,该岸最终被焊接到岸上。测深数据的比较表明,在20世纪,堤岸的体积增加了约10×10〜7m〜3,表明该堤岸是沿海地区沿岸穿越的一些沙子的沉淀池。几条证据表明,该堤岸也是滩涂升级的主要沉积物来源,为逐渐增加的上滩提供了大量的沙子。使用SWAN波浪模型(Booij等,1999)对波浪传播进行模拟表明,砂岸的沿岸运动导致近岸带的波浪能量减少,从而导致更多的耗散条件。这样的条件将增加近岸沉积物的供应,有利于上部海滩和海岸线向风沙丘的发展。我们的结果表明,在这种大潮沿海环境中,近岸砂岸的陆上迁移可能是最重要的机制之一,并且可能是向海滩和沿海沙丘供应海沙的主要机制。

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