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Doubling of coastal flooding frequency within decades due to sea-level rise

Scientific Reports · 2017 · Vol. 7(1) · pp. 1399–1399
Sean VitousekPatrick L. BarnardCharles H. FletcherL. Neil FrazerLi EriksonCurt D. Storlazzi

Abstract

Global climate change drives sea-level rise, increasing the frequency of coastal flooding. In most coastal regions, the amount of sea-level rise occurring over years to decades is significantly smaller than normal ocean-level fluctuations caused by tides, waves, and storm surge. However, even gradual sea-level rise can rapidly increase the frequency and severity of coastal flooding. So far, global-scale estimates of increased coastal flooding due to sea-level rise have not considered elevated water levels due to waves, and thus underestimate the potential impact. Here we use extreme value theory to combine sea-level projections with wave, tide, and storm surge models to estimate increases in coastal flooding on a continuous global scale. We find that regions with limited water-level variability, i.e., short-tailed flood-level distributions, located mainly in the Tropics, will experience the largest increases in flooding frequency. The 10 to 20 cm of sea-level rise expected no later than 2050 will more than double the frequency of extreme water-level events in the Tropics, impairing the developing economies of equatorial coastal cities and the habitability of low-lying Pacific island nations.

Coastal and Marine DynamicsGeophysics and Gravity MeasurementsTropical and Extratropical Cyclones ResearchSea level riseFlooding (psychology)Coastal floodSea levelOceanographyGeographyClimate changeGeology

Funding

  • Centre National d’Etudes Spatiales
  • U.S. Geological Survey
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902
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References
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Environmental Research Letters · 2012 · 491 citations
Future flood losses in major coastal cities
Nature Climate Change · 2013 · 2,455 citations
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