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Beach-dune morphodynamics and marine macro-litter abundance: An integrated approach with Unmanned Aerial System

机译:海滩沙丘形态学和海洋宏观丰度:无人机系统的综合方法

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摘要

This work shows an integrated approach for coastal environmental monitoring, which aimed to understand the relation between beach-dune morphodynamics, marine litter abundance and environmental forcing. Three unmanned aerial system (UAS) flights were deployed on a beach-dune system at the Atlantic Portuguese coast to assess two main goals: (ⅰ) quantifying the morphological changes that occurred among flights, with focus on dune erosion, and (ⅱ) mapping the changes of marine macro-litter abundance on the shore. Two most vulnerable-to-erosion sectors of the beach were identified. In the northern sector, the groin affected the downdrift shoreline, with dune erosion of about 1 m. In the central part of the beach, the dunes recessed about 4 m during the winter, being more exposed to environmental forcing due to the absence of dune vegetation. Marine litter occupation area on the beach decreased from 25% to 20% over the winter, with octopus pots (13%) and fragments (69%) being the most abundant items on average. Litter distribution varied in relation to swash elevation, wind speed and direction. With low swash elevation, the wind played a predominant role in moving the stranded items northwards, whereas high swash elevation concentrated the items at the dune foot. This study emphasizes the potential of UAS in allowing an integrated approach for coastal erosion monitoring and marine litter mapping, and set the ground for marine litter dynamic modelling on the shore.
机译:这项工作显示了沿海环境监测的综合方法,旨在了解海滩 - 沙丘形态学,海洋垃圾丰富和环境迫使之间的关系。在大西洋葡萄牙海岸的海滩沙丘系统上部署了三个无人机航空系统(UAS)航班,以评估两个主要目标:(Ⅰ)量化飞行中发生的形态变化,重点是沙丘侵蚀,(Ⅱ)绘图海岸海洋宏凋落物丰富的变化。确定了两个最脆弱的海滩侵蚀部门。在北部部门,腹股沟影响了下降海岸线,沙丘侵蚀约为1米。在海滩的中央部分,沙丘在冬季休息了大约4米,由于没有沙丘植被,更为暴露于环境迫使。海滩上的海洋垃圾占用区在冬季从25%降至20%,章鱼盆(13%)和片段(69%)平均最丰富的物品。垃圾分布相对于旋转升高,风速和方向变化。随着摩擦升高的速度低,风在向北移动搁浅的物品时发挥了巨大的作用,而高斜幅高度集中在沙丘脚上的物品。本研究强调了UAS允许沿海侵蚀监测和海洋垃圾映射的综合方法,并将海洋垃圾动态建模的地面设置在岸上。

著录项

  • 来源
    《Science of the total environment》 |2020年第20期|141474.1-141474.9|共9页
  • 作者单位

    INESC-Coimbra Department of Electrical and Computer Engineering Coimbra Portugal;

    INESC-Coimbra Department of Electrical and Computer Engineering Coimbra Portugal University of Coimbra Department of Mathematics Coimbra Portugal;

    MARE - Marine and Environmental Sciences Centre Faculdade de Ciencias e Tecnologia Universidade NOVA de Lisboa Campus da Caparica 2829-516 Caparica Portugal;

    Centro de Investigacion Marina University of Vigo GEOMA Campus de Vigo As Lagoas Marcosende 36310 Vigo Spain Physics Department & Centre of Environmental and Marine Studies University of Aveiro Portugal;

    University of Coimbra MARE - Marine and Environmental Sciences Centre Department of Life Sciences 3000-456 Coimbra Portugal;

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

    Coastal erosion; Plastic; Environmental monitoring; Wave runup; Remote sensing;

    机译:沿海侵蚀;塑料;环境监测;波浪运行;遥感;

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