Mesoscale Gravity Wave Momentum Fluxes from Kilometer-Scale ECMWF Experimental Nature Run
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Aman Gupta | Stanford University
Aditi Sheshadri | Stanford University
Valentine G. Anantharaj | Oak Ridge National Laboratory
Description
This dataset consists of the ultra high-resolution (km-scale) global gravity wave momentum fluxes, computed from the ECMWF IFS Experimental Nature Run at 1-km (XNR1K) simulation data, using Helmholtz decomposition. The raw model output from the ECMWF XNR1K data is composed of simulations corresponding to Nov 2018 - Feb 2019.
Funding Information
DOE Contract Number
DE-AC0500OR22725Originating Research Organization
Stanford UniversityOther Contributing Organizations
Stanford University;Oak Ridge National LaboratorySponsoring Organization
Office of Science (SC);Schmidt Futures;National Science FoundationDetails
Release Date
June 25, 2024Subject
54 ENVIRONMENTAL SCIENCES, 97 MATHEMATICS AND COMPUTINGKeywords
atmospheric gravity waves, climate simulation, numerical weather prediction, earth system model, computational modelingDataset
Dataset Type
ND Numeric DataSoftware
The data files can be read and processed using the netCDF4 software library. For a list of many CF-compliant software, see https://cfconventions.org/software.htmlCite This Dataset:
Gupta, A., Sheshadri, A., Anantharaj, V. (2024). Mesoscale Gravity Wave Momentum Fluxes from Kilometer-Scale ECMWF Experimental Nature Run. Oak Ridge National Laboratory. https://doi.org/10.13139/OLCF/2308755.
Acknowledgements
This research used resources of the Oak Ridge Leadership Computing Facility at the Oak Ridge National Laboratory, which is supported by the Advanced Scientific Computing Research programs in the Office of Science of the U.S. Department of Energy under Contract No. DE-AC05-00OR22725.