Accéder au contenu Accéder au menu principal Accéder à la recherche
Accéder au contenu Accéder au menu principal
UQAM logo
Page d'accueil de l'UQAM Étudier à l'UQAM Bottin du personnel Carte du campus Bibliothèques Pour nous joindre

Service des bibliothèques

Centre pour l’étude et la simulation du climat à l’échelle régionale (ESCER)
UQAM logo
Centre pour l’étude et la simulation du climat à l’échelle régionale (ESCER)
  • Bibliographie
  • Accueil
  1. Vitrine des bibliographies
  2. Centre pour l’étude et la simulation du climat à l’échelle régionale (ESCER)
  3. Perspectives for Very High-Resolution Climate Simulations with Nested Models: Illustration of Potential in Simulating St. Lawrence River Valley Channelling Winds with the Fifth-Generation Canadian Regional Climate Model
  • Accueil

Bibliographie complète

Retourner à la liste des résultats
  • 1
  • ...
  • 621
  • 622
  • 623
  • 624
  • 625
  • ...
  • 888
  • Page 623 de 888

Perspectives for Very High-Resolution Climate Simulations with Nested Models: Illustration of Potential in Simulating St. Lawrence River Valley Channelling Winds with the Fifth-Generation Canadian Regional Climate Model

Consulter le document
RIS

Format recommandé pour la plupart des logiciels de gestion de références bibliographiques

BibTeX

Format recommandé pour les logiciels spécialement conçus pour BibTeX

Type de ressource
Article de revue
Auteurs/contributeurs
  • Cholette, Mélissa (Auteur)
  • Laprise, René (Auteur)
  • Thériault, Julie (Auteur)
Titre
Perspectives for Very High-Resolution Climate Simulations with Nested Models: Illustration of Potential in Simulating St. Lawrence River Valley Channelling Winds with the Fifth-Generation Canadian Regional Climate Model
Résumé
With the refinement of grid meshes in regional climate models permitted by the increase in computing power, the grid telescoping or cascade method, already used in numerical weather prediction, can be applied to achieve very high-resolution climate simulations. The purpose of this study is two-fold: (1) to illustrate the perspectives offered by climate simulations on kilometer-scale grid meshes using the wind characteristics in the St. Lawrence River Valley (SLRV) as the test-bench; and (2) to establish some constraints to be satisfied for the physical realism and the computational affordability of these simulations. The cascade method is illustrated using a suite of five one-way nested, time-slice simulations carried out with the fifth-generation Canadian Regional Climate Model, with grid meshes varying from roughly 81 km, successively to 27, 9, 3 and finally 1 km, over domains centered on the SLRV. The results show the added value afforded by very high-resolution meshes for a realistic simulation of the SLRV winds. Kinetic energy spectra are used to document the spin-up time and the effective resolution of the simulations as a function of their grid meshes. A pragmatic consideration is developed arguing that kilometer-scale simulations could be achieved at a reasonable computational cost with time-slice simulations of high impact climate events. This study lends confidence to the idea that climate simulations and projections at kilometer-scale could soon become operationally feasible, thus offering interesting perspectives for resolving features that are currently out of reach with coarser-mesh models.
Publication
Climate
Volume
3
Numéro
2
Pages
283-307
Date
2015-04-01
Abrév. de revue
Climate
Langue
en
DOI
10.3390/cli3020283
ISSN
2225-1154
Titre abrégé
Perspectives for Very High-Resolution Climate Simulations with Nested Models
URL
https://www.mdpi.com/2225-1154/3/2/283
Consulté le
06/11/2024 16:04
Catalogue de bibl.
DOI.org (Crossref)
Autorisations
https://creativecommons.org/licenses/by/4.0/
Référence
Cholette, M., Laprise, R., & Thériault, J. (2015). Perspectives for Very High-Resolution Climate Simulations with Nested Models: Illustration of Potential in Simulating St. Lawrence River Valley Channelling Winds with the Fifth-Generation Canadian Regional Climate Model. Climate, 3(2), 283–307. https://doi.org/10.3390/cli3020283
Auteur·e·s
  • Thériault, Julie M.
Document
  • Cholette et al. - 2015 - Perspectives for Very High-Resolution Climate Simulations with Nested Models Illustration of Potent.pdf
Lien vers cette notice
https://bibliographies.uqam.ca/escer/bibliographie/RG7CYC8G
  • 1
  • ...
  • 621
  • 622
  • 623
  • 624
  • 625
  • ...
  • 888
  • Page 623 de 888

UQAM - Université du Québec à Montréal

  • Centre pour l’étude et la simulation du climat à l’échelle régionale (ESCER)
  • bibliotheques@uqam.ca

Accessibilité Web