Uncertainty from the choice of microphysics scheme in convection-permitting models significantly exceeds aerosol effects
This study investigates the hydrometeor development and response to cloud droplet number concentration (CDNC) perturbations in convection-permitting model configurations.We present results from a real-data simulation of deep convection in the Congo basin, an idealised supercell case, and a warm-rain...
Автори: | White, B, Gryspeerdt, E, Stier, P, Morrison, H, Thompson, G, Kipling, Z |
---|---|
Формат: | Journal article |
Опубліковано: |
Copernicus Publications
2017
|
Схожі ресурси
Схожі ресурси
-
Uncertainty from the choice of microphysics scheme in convection-permitting models significantly exceeds aerosol effects
за авторством: B. White, та інші
Опубліковано: (2017-10-01) -
Uncertainty from the choice of microphysics scheme in convection-permitting models significantly exceeds aerosol effects
за авторством: White, B, та інші
Опубліковано: (2017) -
The propagation of aerosol perturbations in convective cloud microphysics
за авторством: Heikenfeld, M, та інші
Опубліковано: (2018) -
Aerosol effects on deep convection: the propagation of aerosol perturbations through convective cloud microphysics
за авторством: Heikenfeld, M, та інші
Опубліковано: (2019) -
Aerosol effects on deep convection: the propagation of aerosol perturbations through convective cloud microphysics
за авторством: M. Heikenfeld, та інші
Опубліковано: (2019-02-01)