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Constraining an eddy energy dissipation rate due to relative wind stress for use in energy budget-based eddy parameterisations

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https://zenodo.org/record/8017211
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Code and data to reproduce results in the EGU Ocean Science journal paper, entitled 'Constraining an eddy energy dissipation rate due to relative wind stress for use in energy budget-based eddy parameterisations'. The data and corresponding scripts in this repository are: MITgcm simulation data for an anticyclone and cyclone under absolute and relative wind stress. ACE_eta_{absolute or relative}_10km_A25_v2_ext.nc ACE_tau_{absolute or relative}_10km_A25_v2_ext.nc ACE_temp_{absolute or relative}_10km_A25_v2_ext.nc CE_eta_{absolute or relative}_10km_A25_v2.nc CE_tau_{absolute or relative}_10km_A25_v2.nc CE_temp_{absolute or relative}_10km_A25_v2.nc Mean energetics computed using eddy_energy_mean.m. User may need to comment out lines of code relating to wvel. This also requires geostrophic_uv.m, rho_ref.mat, and ocean_vertical_grid.nc. {ACE or CE}_energy_{absolute or relative}_total_10km_A25_mean.nc Predicted eddy energy computed using predict_*.m scripts. Time-series figures (3 and 5) produced using time_series_plots.m. Initial figures (1 and 2) produced using initial_plots.py. Relative vorticity in Fig. 4 computed and plotted using eddy_evolution_plot.py. Dissipation rates computed in calc_dissipation_rate.m. Requires dynmodes.m and GSW toolbox to run. Also needs data Chelton2011_Le.csv and Chelton2011_Rd.csv. diss_rate*.nc Dissipation rate and climatology figures (6, 7, 8, and 9) made in diss_rate_plot.py Information and data needed to run the MITgcm can be found here.
创建时间:
2023-09-13
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