Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variability which is unrivaled by any other atmospheric species. Clouds are among the main modulators of radiation along its path through the Earth’s atmosphere. The cloud feedback is the largest source of uncertainty in current climate model predictions. Cloud observation from satellites, on a global scale, with appropriate temporal and spatial sampling is therefore one of the top aims of current Earth observation missions. In this chapter three-dimensional methods for radiative transfer in cloudy atmospheres are described, which allow to study cloud-radiation interaction at the level needed to better understand the fundamental details driving clima...
The 4DCLOUDS project was established to gain a more accurate understanding of the role clouds play i...
This project aimed to assess the degree to which estimates of three-dimensional cloud structure can ...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variabili...
Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variabili...
Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variabili...
Abstract. Radiative transfer in clouds is a challenging task, due to their high spa-tial and tempora...
The interplay of sunlight with clouds is a ubiquitous and often pleasant visual experience, but it c...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
Radiation is the ultimate source of energy that drives our weather and climate. It is also the funda...
New technologies permit going continuously down into the spatial scale when observing the Earth's at...
In this work, an analysis of radiation fields in cloudy atmospheres, as well as of cloud shape facto...
Atmospheric radiative transfer plays a central role in understanding global climate change and anthr...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
The 4DCLOUDS project was established to gain a more accurate understanding of the role clouds play i...
This project aimed to assess the degree to which estimates of three-dimensional cloud structure can ...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variabili...
Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variabili...
Radiative transfer in clouds is a challenging task, due to their high spatial and temporal variabili...
Abstract. Radiative transfer in clouds is a challenging task, due to their high spa-tial and tempora...
The interplay of sunlight with clouds is a ubiquitous and often pleasant visual experience, but it c...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
Radiation is the ultimate source of energy that drives our weather and climate. It is also the funda...
New technologies permit going continuously down into the spatial scale when observing the Earth's at...
In this work, an analysis of radiation fields in cloudy atmospheres, as well as of cloud shape facto...
Atmospheric radiative transfer plays a central role in understanding global climate change and anthr...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...
The 4DCLOUDS project was established to gain a more accurate understanding of the role clouds play i...
This project aimed to assess the degree to which estimates of three-dimensional cloud structure can ...
The Monte Carlo (MC) method is an effective approach to simulate the radiative transfer in an inhomo...