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首页> 外文期刊>Marine & freshwater research >Can storms and shore armouring exert additive effectson sandy-beach habitats and biota?
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Can storms and shore armouring exert additive effectson sandy-beach habitats and biota?

机译:风暴和海岸装甲能否对沙滩栖息地和生物区系产生附加影响?

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Increased storminess is a likely consequence of global climate change; its effects may be most dramatic on coasts dominated by sandy beaches. This scenario demands that the impacts of storms and the role of armouring structures, constructed as storm defences, are better understood. Here, we assess how a relatively small storm affected beach morphology and macrobenthos, and whether a seawall can modulate such impacts. The study system was a small (<1.5km long) beach, bisected into parts with and without a seawall. The beach became narrower and steeper during the storm, when 26% of the subaerial sediment prism eroded from the armoured section; sand losses on the unarmoured part were one-fifth of those on the armoured part. Densities of ghost crabs (Ocypode) dropped significantly (36%) and were to some extent modulated by shore armouring; losses were high (62%) just seawards of the seawall where post-storm densities remained consistently lower. There was no ecological recovery in the short term, with most (83%) post-storm density values of crabs being lower, and crab counts in front of the seawall being depressed up to 3 months after the storm. Seawalls can change the resilience of beaches to storms, which may result in stronger ecological effects on armoured coasts.
机译:暴风雨加剧是全球气候变化的可能结果;在以沙滩为主的海岸上,其影响可能最为显着。这种情况要求更好地了解风暴的影响以及作为风暴防御构造的装甲结构的作用。在这里,我们评估了相对较小的风暴如何影响海滩形态和大型底栖动物,以及海堤是否可以调节此类影响。研究系统是一个小的(<1.5公里长)的海滩,分为有和没有海堤的两部分。在暴风雨期间,当26%的空中沉积物棱柱从装甲段侵蚀时,海滩变得越来越狭窄和陡峭;未装甲部分的沙子损失是装甲部分的沙子损失的五分之一。幽灵蟹(Ocypode)的密度显着下降(36%),并在一定程度上受到岸甲的调节。风暴后密度一直保持较低的海堤沿海,损失很高(62%)。短期内没有生态恢复,大多数(83%)暴风雨后螃蟹的密度值较低,并且在暴风后3个月内海堤前的螃蟹数量被抑制。防波堤可将海滩的韧性改变为风暴,这可能会对装甲海岸产生更强的生态影响。

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