Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.

%%% Author: Xavier Bertin (xbertin@univ-lr.fr) %%% %%% Date: 15/04/2020 %%% %%% Purpose: This repository provides the field observations and XBeach model input %%% %%% required to reproduce the results presented in paper referred below. %%% %%% Reference: Bertin, X., Martins, K., de Bakker, A., Guér...

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Main Author: Bertin, Xavier
Format: Dataset
Language:English
Published: Zenodo 2020
Subjects:
Online Access:https://dx.doi.org/10.5281/zenodo.3753017
https://zenodo.org/record/3753017
id ftdatacite:10.5281/zenodo.3753017
record_format openpolar
spelling ftdatacite:10.5281/zenodo.3753017 2023-05-15T17:37:12+02:00 Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves. Bertin, Xavier 2020 https://dx.doi.org/10.5281/zenodo.3753017 https://zenodo.org/record/3753017 en eng Zenodo https://dx.doi.org/10.5281/zenodo.3753018 Open Access Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 info:eu-repo/semantics/openAccess CC-BY Infragravity waves, dissipative beach, numerical modelling, energy transferts, XBeach dataset Dataset 2020 ftdatacite https://doi.org/10.5281/zenodo.3753017 https://doi.org/10.5281/zenodo.3753018 2021-11-05T12:55:41Z %%% Author: Xavier Bertin (xbertin@univ-lr.fr) %%% %%% Date: 15/04/2020 %%% %%% Purpose: This repository provides the field observations and XBeach model input %%% %%% required to reproduce the results presented in paper referred below. %%% %%% Reference: Bertin, X., Martins, K., de Bakker, A., Guérin, T., Chataigner, T., %%% %%% Coulombier, T. et de Viron, O., 2020. Energy transfers and reflexion of %%% %%% infragravity waves at a dissipative beach under storm waves. In press %%% %%% to Journal of Geophysical Research-Ocean. %%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% *The directory Obs includes: -The wave bulk parameters computed as explained in the paper for the 10 sensores used in this study: the offshore ADCP1, the intertidal PT1, PT2, ADCP2/PT3, PT4, PT5, ADV/PT6, PT7/Altus, PT8 and PT9. Each file has the same format and includes: the date (YYYY MM DD), the time (HH MM SS), the mean water depth, the spectral significant wave height Hm0, mean wave periods Tm01 and Tm02, the discrete and continuous peak periods, the energetic wave period Tm0,-2 and the spectral significant height of IG waves Hm0,IG. -The spectral significant height Hm0,IG+ and mean wave period Tm02,IG+ of incoming IG waves separated at the ADCP2 and ADV using the method of Guza et al. (1984). The two files have the same format and includes the date (YYYY MM DD), the time (HH MM SS), Hm0,IG+ and Tm02,IG+. -The position of each sensore measured with a geodetic GNSS and provided in the same datum as the bathymetry used in the model (Lambert93 and mean sea level). *The directory XBeach includes all the necessary files required to reproduce the simulations presented in this study -The bathymetry interpolated over a rectilinear grid, with X and Y given in Lambert93 coordinates (files X_L93.grd and Y_L93.grd) and Z referred with respect to mean sea level (Z_L93.grd). -The water level fluctuations measured at ADCP1 (WLevel_ADCP_201702.dat). -The XBeach input file (params.txt) and a file providing the list of directional wave spectra provided in the directory "Spectra_WWIII". These spectra were computed from a regional application of WaveWatchIII over the North Atlantic Ocean and forced with CFSR wind fields but they were converted in the format of SWAN, readable by XBeach. : {"references": ["Bertin, X., Martins, K., de Bakker, A., Gu\u00e9rin, T., Chataigner, T.,\u00a0Coulombier, T. et de Viron, O., 2020. Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves. In press\u00a0\u00a0to Journal of Geophysical Research-Ocean"]} Dataset North Atlantic DataCite Metadata Store (German National Library of Science and Technology) Bakker ENVELOPE(64.588,64.588,-70.326,-70.326)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic Infragravity waves, dissipative beach, numerical modelling, energy transferts, XBeach
spellingShingle Infragravity waves, dissipative beach, numerical modelling, energy transferts, XBeach
Bertin, Xavier
Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
topic_facet Infragravity waves, dissipative beach, numerical modelling, energy transferts, XBeach
description %%% Author: Xavier Bertin (xbertin@univ-lr.fr) %%% %%% Date: 15/04/2020 %%% %%% Purpose: This repository provides the field observations and XBeach model input %%% %%% required to reproduce the results presented in paper referred below. %%% %%% Reference: Bertin, X., Martins, K., de Bakker, A., Guérin, T., Chataigner, T., %%% %%% Coulombier, T. et de Viron, O., 2020. Energy transfers and reflexion of %%% %%% infragravity waves at a dissipative beach under storm waves. In press %%% %%% to Journal of Geophysical Research-Ocean. %%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% *The directory Obs includes: -The wave bulk parameters computed as explained in the paper for the 10 sensores used in this study: the offshore ADCP1, the intertidal PT1, PT2, ADCP2/PT3, PT4, PT5, ADV/PT6, PT7/Altus, PT8 and PT9. Each file has the same format and includes: the date (YYYY MM DD), the time (HH MM SS), the mean water depth, the spectral significant wave height Hm0, mean wave periods Tm01 and Tm02, the discrete and continuous peak periods, the energetic wave period Tm0,-2 and the spectral significant height of IG waves Hm0,IG. -The spectral significant height Hm0,IG+ and mean wave period Tm02,IG+ of incoming IG waves separated at the ADCP2 and ADV using the method of Guza et al. (1984). The two files have the same format and includes the date (YYYY MM DD), the time (HH MM SS), Hm0,IG+ and Tm02,IG+. -The position of each sensore measured with a geodetic GNSS and provided in the same datum as the bathymetry used in the model (Lambert93 and mean sea level). *The directory XBeach includes all the necessary files required to reproduce the simulations presented in this study -The bathymetry interpolated over a rectilinear grid, with X and Y given in Lambert93 coordinates (files X_L93.grd and Y_L93.grd) and Z referred with respect to mean sea level (Z_L93.grd). -The water level fluctuations measured at ADCP1 (WLevel_ADCP_201702.dat). -The XBeach input file (params.txt) and a file providing the list of directional wave spectra provided in the directory "Spectra_WWIII". These spectra were computed from a regional application of WaveWatchIII over the North Atlantic Ocean and forced with CFSR wind fields but they were converted in the format of SWAN, readable by XBeach. : {"references": ["Bertin, X., Martins, K., de Bakker, A., Gu\u00e9rin, T., Chataigner, T.,\u00a0Coulombier, T. et de Viron, O., 2020. Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves. In press\u00a0\u00a0to Journal of Geophysical Research-Ocean"]}
format Dataset
author Bertin, Xavier
author_facet Bertin, Xavier
author_sort Bertin, Xavier
title Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
title_short Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
title_full Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
title_fullStr Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
title_full_unstemmed Energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
title_sort energy transfers and reflexion of infragravity waves at a dissipative beach under storm waves.
publisher Zenodo
publishDate 2020
url https://dx.doi.org/10.5281/zenodo.3753017
https://zenodo.org/record/3753017
long_lat ENVELOPE(64.588,64.588,-70.326,-70.326)
geographic Bakker
geographic_facet Bakker
genre North Atlantic
genre_facet North Atlantic
op_relation https://dx.doi.org/10.5281/zenodo.3753018
op_rights Open Access
Creative Commons Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/legalcode
cc-by-4.0
info:eu-repo/semantics/openAccess
op_rightsnorm CC-BY
op_doi https://doi.org/10.5281/zenodo.3753017
https://doi.org/10.5281/zenodo.3753018
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