Identifying climate model structural inconsistencies allows for tight constraint of aerosol radiative forcing
Aerosol radiative forcing uncertainty affects estimates of climate sensitivity and limits model skill in terms of making climate projections. Efforts to improve the representations of physical processes in climate models, including extensive comparisons with observations, have not significantly cons...
Hoofdauteurs: | Regayre, LA, Deaconu, L, Grosvenor, DP, Sexton, DMH, Symonds, C, Langton, T, Watson-Paris, D, Mulcahy, JP, Pringle, KJ, Richardson, M, Johnson, JS, Rostron, JW, Gordon, H, Lister, G, Stier, P, Carslaw, KS |
---|---|
Formaat: | Journal article |
Taal: | English |
Gepubliceerd in: |
Copernicus Publications
2023
|
Gelijkaardige items
-
Identifying climate model structural inconsistencies allows for tight constraint of aerosol radiative forcing
door: L. A. Regayre, et al.
Gepubliceerd in: (2023-08-01) -
Constraining uncertainty in aerosol direct forcing
door: Watson-Parris, DTS, et al.
Gepubliceerd in: (2020) -
Statistical constraints on climate model parameters using a scalable cloud-based inference framework
door: Carzon, J, et al.
Gepubliceerd in: (2023) -
Statistical constraints on climate model parameters using a scalable cloud-based inference framework – CORRIGENDUM
door: James Carzon, et al.
Gepubliceerd in: (2025-01-01) -
Statistical constraints on climate model parameters using a scalable cloud-based inference framework
door: James Carzon, et al.
Gepubliceerd in: (2023-01-01)