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Implementation of a Semi-Lagrangian Fully Implicit Time Integration of the Unified Soundproof System of Equations for Numerical Weather Prediction

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Type de ressource
Article de revue
Auteurs/contributeurs
  • Qaddouri, Abdessamad (Auteur)
  • Girard, Claude (Auteur)
  • Husain, Syed Zahid (Auteur)
  • Aider, Rabah (Auteur)
Titre
Implementation of a Semi-Lagrangian Fully Implicit Time Integration of the Unified Soundproof System of Equations for Numerical Weather Prediction
Résumé
Abstract An alternate dynamical core that employs the unified equations of A. Arakawa and C.S. Konor (2009) has been developed within Environment and Climate change Canada’s GEM (Global Environmental Multiscale) atmospheric model. As in the operational GEM dynamical core, the novel core utilizes the same fully-implicit two-time-level semi-Lagrangian scheme for time discretization while the log-pressure-based terrain-following vertical coordinate has been slightly adapted. Overall, the new dynamical core implementation required only minor changes to the existing informatics code of the GEM model and from a computational performance perspective, the new core does not incur any significant additional cost. A broad range of tests – that include both two-dimensional idealized theoretical cases and three-dimensional deterministic forecasts covering both hydrostatic and non-hydrostatic scales–have been carried out to evaluate the performance of the new dynamical core. For all the tested cases, when compared to the operational GEM model, the new dynamical core based on the unified equations has been found to produce statistically equivalent results. These results imply that the unified equations can be adopted for operational numerical weather prediction that would employ a single soundproof system of equations to produce reliable forecasts for all meteorological scales of interest with negligible changes for the computational overhead.
Publication
Monthly Weather Review
Volume
149
Numéro
6
Date
2021-04-13
DOI
10.1175/mwr-d-20-0291.1
Extra
DOI: 10.1175/mwr-d-20-0291.1 MAG ID: 3156151496
Référence
Qaddouri, A., Girard, C., Husain, S. Z., & Aider, R. (2021). Implementation of a Semi-Lagrangian Fully Implicit Time Integration of the Unified Soundproof System of Equations for Numerical Weather Prediction. Monthly Weather Review, 149(6). https://doi.org/10.1175/mwr-d-20-0291.1
Lien vers cette notice
https://bibliographies.uqam.ca/riisq/bibliographie/F2VKAVUD
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