The role of aerosols, clouds and their interactions with radiation remain among the largest unknowns in the climate system. Even though the processes involved are complex, aerosol–cloud interactions are often analyzed by means of bivariate relationships. In this study, 15 years (2001–2015) of monthly satellite-retrieved near-global aerosol products are combined with reanalysis data of various meteorological parameters to predict satellite-derived marine liquid-water cloud occurrence and properties by means of region-specific artificial neural networks. The statistical models used are shown to be capable of predicting clouds, especially in regions of high cloud variability. On this monthly scale, lower-tropospheric stability is shown to be t...
The largest uncertainty in quantifying global anthropogenic radiative forcing is linked to interacti...
Clouds can reflect, absorb and re-emit radiation, thereby inducing a cooling or warming effect on th...
The marine stratocumulus clouds are highly sensitive to aerosol perturbations. In this study, we hav...
The role of aerosols, clouds and their interactions with radiation remain among the largest unknowns...
Airborne aerosols are crucial atmospheric constituents that are involved in global climate change an...
Cloud drop number concentrations (Nd) over the western North Atlantic Ocean (WNAO) are generally hig...
Cloud microphysics in terms of their liquid/ice water content and particle size are the principal fa...
Cloud microphysics in terms of their liquid/ice water content and particle size are the principal fa...
Cloud microphysics in terms of their liquid/ice water content and particle size are the principal fa...
Aerosol–cloud interactions are the largest source of uncertainty in quantifying anthropogenic radiat...
Cloud drop number concentrations (Nd) over the western North Atlantic Ocean (WNAO) are generally hig...
Marine boundary layer (MBL) clouds are an important, though uncertain, part of Earth’s radiative bud...
Marine boundary layer (MBL) clouds are an important, though uncertain, part of Earth’s radiative bud...
Long-term satellite climate data records of aerosol and cloud along with meteorological reanalysis d...
In estimation of the aerosol indirect effect, cloud liquid water path is considered either constant ...
The largest uncertainty in quantifying global anthropogenic radiative forcing is linked to interacti...
Clouds can reflect, absorb and re-emit radiation, thereby inducing a cooling or warming effect on th...
The marine stratocumulus clouds are highly sensitive to aerosol perturbations. In this study, we hav...
The role of aerosols, clouds and their interactions with radiation remain among the largest unknowns...
Airborne aerosols are crucial atmospheric constituents that are involved in global climate change an...
Cloud drop number concentrations (Nd) over the western North Atlantic Ocean (WNAO) are generally hig...
Cloud microphysics in terms of their liquid/ice water content and particle size are the principal fa...
Cloud microphysics in terms of their liquid/ice water content and particle size are the principal fa...
Cloud microphysics in terms of their liquid/ice water content and particle size are the principal fa...
Aerosol–cloud interactions are the largest source of uncertainty in quantifying anthropogenic radiat...
Cloud drop number concentrations (Nd) over the western North Atlantic Ocean (WNAO) are generally hig...
Marine boundary layer (MBL) clouds are an important, though uncertain, part of Earth’s radiative bud...
Marine boundary layer (MBL) clouds are an important, though uncertain, part of Earth’s radiative bud...
Long-term satellite climate data records of aerosol and cloud along with meteorological reanalysis d...
In estimation of the aerosol indirect effect, cloud liquid water path is considered either constant ...
The largest uncertainty in quantifying global anthropogenic radiative forcing is linked to interacti...
Clouds can reflect, absorb and re-emit radiation, thereby inducing a cooling or warming effect on th...
The marine stratocumulus clouds are highly sensitive to aerosol perturbations. In this study, we hav...