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Ecological consequences of sea level rise and flood protection strategies in shallow coastal systems: A quick-scan barcoding approach

机译:浅沿海系统海平面上升与防洪策略的生态后果:快速扫描条形码方法

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摘要

Shallow coastal ecosystems have high ecological value and contribute to flood protection. Their stability is, however, sensitive to the amount and rate of future sea level rise (SLR), their ability to trap sediment which allows them to grow with rising sea level, and human response to SLR. So far, studies have focused on assessing SLR impacts using resource-intensive tools. Here, we present an approach for a first-order assessment and easily accessible 'barcode' visualization to rapidly assess potential impacts of both SLR and adaptation strategies on coastal ecosystems in a spatially explicit way. Our approach relates habitat types (ecotopes) to water level, morphology and salinity, allowing users to determine shifts in spatial arrangements of ecological zones under different SLR rates and strategies. We illustrate this approach for a transect in the Dutch Wadden Sea. We find that beyond a critical rate of SLR, major changes in ecotope distribution are projected to occur as this part of the Wadden Sea starts to drown due to insufficient sediment import. Even larger impacts arise from adaptation strategies. Closing the barrier islands will turn the Wadden Sea into a freshwater lake-system with the absence of intertidal areas, infilling of channels and bank erosion. A strategy that allows for inland migration of the shoreline, results in a deep tidal basin with large subtidal habitats, and a shifted intertidal zone. Our case study shows that the barcoding approach provides a rapid, quantitative and spatially explicit overview of the potential implications for coastal ecosystems under different SLR scenarios, adaptation strategies and time horizons. This can then be used to screen adaptation strategies before going into a more comprehensive analysis. The barcode visualization allows for easy dissemination of potential ecological impacts to a broad community.
机译:浅沿海生态系统具有高生态价值,有助于防洪。然而,他们的稳定性是对未来海平面上升(SLR)的数量和速率敏感,它们陷入沉积物的能力,使他们能够随海平面上升和对SLR的人类反应而生长。到目前为止,研究专注于使用资源密集型工具评估SLR影响。在这里,我们提出了一种用于一阶评估的方法,易于访问的“条形码”可视化,以在空间明确的方式中快速评估SLR和适应策略对沿海生态系统的适应策略的潜在影响。我们的方法将栖息地类型(Ecotopes)与水位,形态和盐度相关,允许用户在不同的单反速率和策略下确定生态区域的空间安排的变化。我们说明了荷兰瓦登海横断面的这种方法。我们发现,超出了SLR的临界率,由于沉积物进口不足,因此,由于沉积物不足而淹没,因此将传统分布的重大变化进行预计。从适应策略产生的影响甚至更大的影响。关闭屏障群岛将使瓦登海变成淡水湖系统,缺乏透模地区,缺乏渠道和银行侵蚀。一种允许内陆海线迁移的策略,导致具有大的阴性栖息地的深潮气盆地和移位的潮间区。我们的案例研究表明,条形码方法提供了在不同单反情景下的沿海生态系统,适应策略和时间视野下对沿海生态系统的潜在影响的快速,定量和空间概述。然后,这可以用于在进入更全面的分析之前筛选适应策略。条形码可视化允许轻松地传播对广泛的社区的潜在生态影响。

著录项

  • 来源
    《Ocean & coastal management》 |2021年第9期|105674.1-105674.13|共13页
  • 作者单位

    Univ Utrecht Fac Geosci Dept Phys Geog POB 80-115 NL-3508 TC Utrecht Netherlands;

    Univ Utrecht Fac Geosci Dept Phys Geog POB 80-115 NL-3508 TC Utrecht Netherlands|Deltares POB 177 NL-2600 MH Delft Netherlands;

    Univ Utrecht Fac Geosci Dept Phys Geog POB 80-115 NL-3508 TC Utrecht Netherlands;

    Univ Utrecht Fac Geosci Dept Phys Geog POB 80-115 NL-3508 TC Utrecht Netherlands|NIOZ Yerseke POB 140 NL-4400 AC Yerseke Netherlands|HZ Univ Appl Sci Edisonweg 4 NL-4382 NW Vlissingen Netherlands;

    Deltares POB 177 NL-2600 MH Delft Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sea level rise; Coastal ecosystems; Adaptation; Ecology; Dutch wadden sea;

    机译:海平面上升;沿海生态系统;适应;生态;荷兰瓦登海;

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