Summary of numerical model results investigating the influence of dune lee side shape on time-averaged velocities and turbulence

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Autori principali: Lefebvre, Alice, Cisneros, Julia
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2023
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author Lefebvre, Alice
Cisneros, Julia
author_facet Lefebvre, Alice
Cisneros, Julia
collection Datos científicos de ciencias marinas y ambientales
contents A total of 106 numerical simulations were done with Delft3D to investigate the influence of lee side shape on time-averaged flow properties and turbulence. This dataset presents a summary of the key parameters calculated from the numerical simulations: the bed smoothness, the mean lee side angle, the steep portion angle, the steep portion position, the dune length, the dune height, the steep portion height, the flow separation zone length, the maximum and mean Turbulent Kinetic Energy and the length of the wake.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_962491
institution PANGAEA
language en
publishDate 2023
publisher PANGAEA
record_format pangaea
spellingShingle Summary of numerical model results investigating the influence of dune lee side shape on time-averaged velocities and turbulence
Lefebvre, Alice
Cisneros, Julia
bedforms; Center for Marine Environmental Sciences; ClusterOceanFloor; Delft3D modeling system; Lee side angle, mean; Length flow separation zone; MARUM; numerical modeling; Simulation; Smoothness; Steep portion, height; Steep portion angle; Steep portion position; The Ocean Floor - Earth's Uncharted Interface; Turbulent kinetic energy; Underwater dune, height; Underwater dune, length; Wake length
A total of 106 numerical simulations were done with Delft3D to investigate the influence of lee side shape on time-averaged flow properties and turbulence. This dataset presents a summary of the key parameters calculated from the numerical simulations: the bed smoothness, the mean lee side angle, the steep portion angle, the steep portion position, the dune length, the dune height, the steep portion height, the flow separation zone length, the maximum and mean Turbulent Kinetic Energy and the length of the wake.
title Summary of numerical model results investigating the influence of dune lee side shape on time-averaged velocities and turbulence
topic bedforms; Center for Marine Environmental Sciences; ClusterOceanFloor; Delft3D modeling system; Lee side angle, mean; Length flow separation zone; MARUM; numerical modeling; Simulation; Smoothness; Steep portion, height; Steep portion angle; Steep portion position; The Ocean Floor - Earth's Uncharted Interface; Turbulent kinetic energy; Underwater dune, height; Underwater dune, length; Wake length
url https://doi.org/10.1594/PANGAEA.962491