Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf

Based on a novel approach, present-day and future spectral wind-wave conditions in a high-emission scenario from a seven-member wave climate projection ensemble are compared. The spectral analysis at the selected locations aids in understanding the propagation of swell projected changes from the gen...

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Bibliographic Details
Main Authors: Hector Lobeto (10828653), Melisa Menendez (10828656), Iñigo J. Losada (6740783)
Format: Dataset
Language:unknown
Published: 2021
Subjects:
Online Access:https://doi.org/10.3389/fmars.2021.655490.s001
id ftsmithonian:oai:figshare.com:article/14623749
record_format openpolar
spelling ftsmithonian:oai:figshare.com:article/14623749 2023-05-15T18:25:31+02:00 Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf Hector Lobeto (10828653) Melisa Menendez (10828656) Iñigo J. Losada (6740783) 2021-05-20T04:16:09Z https://doi.org/10.3389/fmars.2021.655490.s001 unknown https://figshare.com/articles/dataset/Data_Sheet_1_Projections_of_Directional_Spectra_Help_to_Unravel_the_Future_Behavior_of_Wind_Waves_pdf/14623749 doi:10.3389/fmars.2021.655490.s001 CC BY 4.0 CC-BY Oceanography Marine Biology Marine Geoscience Biological Oceanography Chemical Oceanography Physical Oceanography Marine Engineering ocean waves wave climate projections wave energy swell wind-wave spectrum Dataset 2021 ftsmithonian https://doi.org/10.3389/fmars.2021.655490.s001 2021-05-21T14:25:57Z Based on a novel approach, present-day and future spectral wind-wave conditions in a high-emission scenario from a seven-member wave climate projection ensemble are compared. The spectral analysis at the selected locations aids in understanding the propagation of swell projected changes from the generation areas across the ocean basins. For example, a projected increase in the energy from Southern Ocean swells can be observed in all ocean basins and both hemispheres, which is especially relevant in the west coast of North America due to the penetration of these swells beyond 30°N. Similarly, a consistent decrease in the energy of large northern Atlantic swells is noted close to the equator. This work provides evidence that assessments based on only integrated wave parameters (e.g., significant wave height and mean wave period) can mask information about the sign, magnitude, and robustness of the actual wave climate changes due to the offset of positive and negative variations within the spectrum, leading to a significant underestimation of the change associated with certain wave systems. Dataset Southern Ocean Unknown Southern Ocean
institution Open Polar
collection Unknown
op_collection_id ftsmithonian
language unknown
topic Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
ocean waves
wave climate projections
wave energy
swell
wind-wave spectrum
spellingShingle Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
ocean waves
wave climate projections
wave energy
swell
wind-wave spectrum
Hector Lobeto (10828653)
Melisa Menendez (10828656)
Iñigo J. Losada (6740783)
Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf
topic_facet Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
ocean waves
wave climate projections
wave energy
swell
wind-wave spectrum
description Based on a novel approach, present-day and future spectral wind-wave conditions in a high-emission scenario from a seven-member wave climate projection ensemble are compared. The spectral analysis at the selected locations aids in understanding the propagation of swell projected changes from the generation areas across the ocean basins. For example, a projected increase in the energy from Southern Ocean swells can be observed in all ocean basins and both hemispheres, which is especially relevant in the west coast of North America due to the penetration of these swells beyond 30°N. Similarly, a consistent decrease in the energy of large northern Atlantic swells is noted close to the equator. This work provides evidence that assessments based on only integrated wave parameters (e.g., significant wave height and mean wave period) can mask information about the sign, magnitude, and robustness of the actual wave climate changes due to the offset of positive and negative variations within the spectrum, leading to a significant underestimation of the change associated with certain wave systems.
format Dataset
author Hector Lobeto (10828653)
Melisa Menendez (10828656)
Iñigo J. Losada (6740783)
author_facet Hector Lobeto (10828653)
Melisa Menendez (10828656)
Iñigo J. Losada (6740783)
author_sort Hector Lobeto (10828653)
title Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf
title_short Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf
title_full Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf
title_fullStr Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf
title_full_unstemmed Data_Sheet_1_Projections of Directional Spectra Help to Unravel the Future Behavior of Wind Waves.pdf
title_sort data_sheet_1_projections of directional spectra help to unravel the future behavior of wind waves.pdf
publishDate 2021
url https://doi.org/10.3389/fmars.2021.655490.s001
geographic Southern Ocean
geographic_facet Southern Ocean
genre Southern Ocean
genre_facet Southern Ocean
op_relation https://figshare.com/articles/dataset/Data_Sheet_1_Projections_of_Directional_Spectra_Help_to_Unravel_the_Future_Behavior_of_Wind_Waves_pdf/14623749
doi:10.3389/fmars.2021.655490.s001
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.3389/fmars.2021.655490.s001
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