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|a Climate-change impact assessment for inlet-interrupted coastlines |h [electronic resource]. |
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|a [S.l.] : |b Macmillan Publishers Limited, |c 2012. |
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|a Nature Climate Change. |
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|a Please contact the owning institution for licensing and permissions. It is the user's responsibility to ensure use does not violate any third party rights. |
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|a Climate-change (CC)-driven sea-level rise (SLR) will result in coastline retreat due to landward movement of the coastal profile
(that is, the Bruun effect). Coastline change adjacent to commonly found tidal inlets will be influenced not only by the Bruun
effect, but also by SLR-driven basin infilling and CC-driven variations in rainfall/runoff. However, as a model that accounts
for all of the above-mentioned processes has been lacking so far, most coastal CC impact studies until now have considered
only the Bruun effect. Here, we present a scale-aggregated model capable of providing rapid assessments of coastline change
adjacent to small inlet-estuary/lagoon systems due to the combined effect of CC-driven SLR and variations in rainfall/runoff.
Model applications to four representative systems show that the Bruun effect represents only 25–50% of total potential
coastline change, and underline the significance of coastline change due to SLR-driven basin infilling and CC-driven variations
in rainfall/runoff. |
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|a Electronic reproduction. |c Florida International University, |d 2015. |f (dpSobek) |n Mode of access: World Wide Web. |n System requirements: Internet connectivity; Web browser software. |
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|t Climate-change impact assessment for inlet-interrupted coastlines |
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|a dpSobek |c Sea Level Rise |
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|u http://dpanther.fiu.edu/dpService/dpPurlService/purl/FI15061808/00001 |y Click here for full text |
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|3 Host material |u http://www.nature.com/nclimate/journal/v3/n1/full/nclimate1664.html |y Climate-change impact assessment for inlet-interrupted coastlines |
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|a http://dpanther.fiu.edu/sobek/content/FI/15/06/18/08/00001/FI15061808_thm.jpg |