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The State of the World’s Beaches

Scientific Reports · 2018 · Vol. 8(1) · pp. 6641–6641
Arjen LuijendijkGerben HagenaarsRoshanka RanasingheFedor Baart‪Gennadii DonchytsStefan Aarninkhof

Abstract

Coastal zones constitute one of the most heavily populated and developed land zones in the world. Despite the utility and economic benefits that coasts provide, there is no reliable global-scale assessment of historical shoreline change trends. Here, via the use of freely available optical satellite images captured since 1984, in conjunction with sophisticated image interrogation and analysis methods, we present a global-scale assessment of the occurrence of sandy beaches and rates of shoreline change therein. Applying pixel-based supervised classification, we found that 31% of the world's ice-free shoreline are sandy. The application of an automated shoreline detection method to the sandy shorelines thus identified resulted in a global dataset of shoreline change rates for the 33 year period 1984-2016. Analysis of the satellite derived shoreline data indicates that 24% of the world's sandy beaches are eroding at rates exceeding 0.5 m/yr, while 28% are accreting and 48% are stable. The majority of the sandy shorelines in marine protected areas are eroding, raising cause for serious concern.

Coastal and Marine DynamicsAeolian processes and effectsCoastal and Marine ManagementShoreScale (ratio)Physical geographySatellite imagerySatelliteGeographyOceanographyEnvironmental resource managementRemote sensingEnvironmental science

Funding

  • Oregon State University
  • University of New South Wales
  • AXA Research Fund
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Deltares
  • U.S. Geological Survey
  • Stichting voor de Technische Wetenschappen
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1,063
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References
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Nature Climate Change · 2013 · 2,455 citations
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Remote Sensing of Environment · 2017 · 13,362 citations
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