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Data for 3D modelling of internal tide generation over isolated seamounts in a rotating ocean

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Recherche Data Gouv France2025-01-01 更新2026-04-09 收录
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https://entrepot.recherche.data.gouv.fr/citation?persistentId=doi:10.57745/VHJRUV
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This repository contains the data used in the paper: Le Dizes, C., Grisouard, N., Thual, O., & Mercier, M. (2025). Three-dimensional modelling of internal tide generation over isolated seamounts in a rotating ocean. Submitted to Journal of Fluid Mechanics where we study the generation of internal tide on isolated 3D Gaussian seamounts using a novel Boundary Element Method. We focus in particular on the influence of the topographic height and slope, as well as the influence of the Coriolis frequency on the energy flux amplitude and direction. The dataset is organized into folders corresponding to different values of β, the ratio of the Coriolis frequency f to the tidal frequency ω. Within each β folder, there are multiple subfolders representing simulations with varying dimensionless topographic height (δ) and slope (ε). Each subfolder contains a single simulation and includes: - an input JSON file specifying the simulation parameters, - a topography file (topography.npy), and two output files: - source_pmax***.npy, which contains the solution from the Boundary Element Method, - wavefield_pmax***_nmodes**.npy, which reconstructs the different components of the wavefield. Python codes to read the output files and plot the wavefield are given in the 'plots' folder.
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2025-01-01
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