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Rising sea levels and the increase of shoreline wave energy at American Samoa
by
Thompson, Philip R.
, O’Reilly, William C.
, Barnes, Austin T.
, Tagarino, Kelley A.
, Siegelman, Mika
, Merrifield, Mark A.
, Becker, Janet M.
in
704/106/694/2739
/ 704/106/829/2737
/ 704/829/2737
/ Bathymetry
/ Earthquakes
/ Humanities and Social Sciences
/ Land subsidence
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Sea level
/ Sea level rise
/ Seismic activity
/ Shorelines
/ Water levels
/ Wave energy
/ Wave height
/ Wave power
2024
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Rising sea levels and the increase of shoreline wave energy at American Samoa
by
Thompson, Philip R.
, O’Reilly, William C.
, Barnes, Austin T.
, Tagarino, Kelley A.
, Siegelman, Mika
, Merrifield, Mark A.
, Becker, Janet M.
in
704/106/694/2739
/ 704/106/829/2737
/ 704/829/2737
/ Bathymetry
/ Earthquakes
/ Humanities and Social Sciences
/ Land subsidence
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Sea level
/ Sea level rise
/ Seismic activity
/ Shorelines
/ Water levels
/ Wave energy
/ Wave height
/ Wave power
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Rising sea levels and the increase of shoreline wave energy at American Samoa
by
Thompson, Philip R.
, O’Reilly, William C.
, Barnes, Austin T.
, Tagarino, Kelley A.
, Siegelman, Mika
, Merrifield, Mark A.
, Becker, Janet M.
in
704/106/694/2739
/ 704/106/829/2737
/ 704/829/2737
/ Bathymetry
/ Earthquakes
/ Humanities and Social Sciences
/ Land subsidence
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Sea level
/ Sea level rise
/ Seismic activity
/ Shorelines
/ Water levels
/ Wave energy
/ Wave height
/ Wave power
2024
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Rising sea levels and the increase of shoreline wave energy at American Samoa
Journal Article
Rising sea levels and the increase of shoreline wave energy at American Samoa
2024
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Overview
American Samoa is experiencing rapid relative sea level rise due to increases in global sea level and significant post-2009 earthquake land subsidence, endangering homes and critical infrastructure. Wave and water-level observations collected over a fringing reef at Faga‘itua Bay, American Samoa, in 2017 reveal depth-limited shoreline sea-swell wave heights over the range of conditions sampled. Using field data to calibrate a one-dimensional, phase-resolving nonhydrostatic wave model (SWASH), we examine the influence of water level on wave heights over the reef for a range of current and future sea levels. Assuming a fixed reef bathymetry, model results predict rising sea levels will escalate nearshore extreme water levels that are dominated by an increase in nearshore sea-swell wave heights. Model results provide insight into how and at what reef depths rising sea levels reduce reef capacity to dissipate wave energy, compounding shoreline threats. This study aims to bring increased attention to the immediate threats to American Samoa’s way of life, and to demonstrate the utility of SWASH for extrapolating wave transformation to future sea level.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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