Uncertainty in aerosol–cloud radiative forcing is driven by clean conditions
<p>Atmospheric aerosols and their impact on cloud properties remain the largest uncertainty in the human forcing of the climate system. By increasing the concentration of cloud droplets (N<sub>d</sub>), aerosols reduce droplet size and increase the reflectivity of clouds (a negativ...
Autori principali: | Gryspeerdt, E, Povey, AC, Grainger, RG |
---|---|
Natura: | Journal article |
Lingua: | English |
Pubblicazione: |
European Geosciences Union
2023
|
Documenti analoghi
Documenti analoghi
-
Uncertainty in aerosol–cloud radiative forcing is driven by clean conditions
di: E. Gryspeerdt, et al.
Pubblicazione: (2023-04-01) -
Separating radiative forcing by aerosol–cloud interactions and rapid cloud adjustments in the ECHAM–HAMMOZ aerosol–climate model using the method of partial radiative perturbations
di: J. Mülmenstädt, et al.
Pubblicazione: (2019-12-01) -
Uncertainty-bounded estimates of ash cloud properties using the ORAC algorithm: application to the 2019 Raikoke eruption
di: Prata, AT, et al.
Pubblicazione: (2022) -
Unveiling aerosol–cloud interactions – Part 1: Cloud contamination in satellite products enhances the aerosol indirect forcing estimate
di: Christensen, M, et al.
Pubblicazione: (2017) -
Aerosol-cloud-precipitation interactions
di: Gryspeerdt, E
Pubblicazione: (2013)