Under-estimated wave contribution to coastal sea-level rise
Coastal communities are threatened by sea-level changes operating at various spatial scales; global to regional variations are associated with glacier and ice sheet loss and ocean thermal expansion, while smaller coastal-scale variations are also related to atmospheric surges, tides and waves. Here,...
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ftird:oai:ird.fr:fdi:010072436 2024-09-15T18:12:24+00:00 Under-estimated wave contribution to coastal sea-level rise Melet, A. Meyssignac, B. /Almar, Rafaël Le Cozannet, G. 2018 https://www.documentation.ird.fr/hor/fdi:010072436 EN eng https://www.documentation.ird.fr/hor/fdi:010072436 oai:ird.fr:fdi:010072436 Melet A., Meyssignac B., Almar Rafaël, Le Cozannet G. Under-estimated wave contribution to coastal sea-level rise. 2018, 8 (3), p. 234-239 + 2 text 2018 ftird 2024-08-15T05:57:41Z Coastal communities are threatened by sea-level changes operating at various spatial scales; global to regional variations are associated with glacier and ice sheet loss and ocean thermal expansion, while smaller coastal-scale variations are also related to atmospheric surges, tides and waves. Here, using 23 years (1993-2015) of global coastal sea-level observations, we examine the contribution of these latter processes to long-term sea-level rise, which, to date, have been relatively less explored. It is found that wave contributions can strongly dampen or enhance the effects of thermal expansion and land ice loss on coastal water-level changes at interannual-to-multidecadal timescales. Along the US West Coast, for example, negative wave-induced trends dominate, leading to negative net water-level trends. Accurate estimates of past, present and future coastal sea-level rise therefore need to consider low-frequency contributions of wave set-up and swash. Text Ice Sheet IRD (Institute de recherche pour le développement): Horizon |
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IRD (Institute de recherche pour le développement): Horizon |
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English |
description |
Coastal communities are threatened by sea-level changes operating at various spatial scales; global to regional variations are associated with glacier and ice sheet loss and ocean thermal expansion, while smaller coastal-scale variations are also related to atmospheric surges, tides and waves. Here, using 23 years (1993-2015) of global coastal sea-level observations, we examine the contribution of these latter processes to long-term sea-level rise, which, to date, have been relatively less explored. It is found that wave contributions can strongly dampen or enhance the effects of thermal expansion and land ice loss on coastal water-level changes at interannual-to-multidecadal timescales. Along the US West Coast, for example, negative wave-induced trends dominate, leading to negative net water-level trends. Accurate estimates of past, present and future coastal sea-level rise therefore need to consider low-frequency contributions of wave set-up and swash. |
format |
Text |
author |
Melet, A. Meyssignac, B. /Almar, Rafaël Le Cozannet, G. |
spellingShingle |
Melet, A. Meyssignac, B. /Almar, Rafaël Le Cozannet, G. Under-estimated wave contribution to coastal sea-level rise |
author_facet |
Melet, A. Meyssignac, B. /Almar, Rafaël Le Cozannet, G. |
author_sort |
Melet, A. |
title |
Under-estimated wave contribution to coastal sea-level rise |
title_short |
Under-estimated wave contribution to coastal sea-level rise |
title_full |
Under-estimated wave contribution to coastal sea-level rise |
title_fullStr |
Under-estimated wave contribution to coastal sea-level rise |
title_full_unstemmed |
Under-estimated wave contribution to coastal sea-level rise |
title_sort |
under-estimated wave contribution to coastal sea-level rise |
publishDate |
2018 |
url |
https://www.documentation.ird.fr/hor/fdi:010072436 |
genre |
Ice Sheet |
genre_facet |
Ice Sheet |
op_relation |
https://www.documentation.ird.fr/hor/fdi:010072436 oai:ird.fr:fdi:010072436 Melet A., Meyssignac B., Almar Rafaël, Le Cozannet G. Under-estimated wave contribution to coastal sea-level rise. 2018, 8 (3), p. 234-239 + 2 |
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1810449977681379328 |