A new method for continuous observation of aerosol–cloud interactions with ground-based remote sensing instruments is presented. The main goal of this method is to enable the monitoring of the change of the cloud droplet size due to the change in the aerosol concentration. We use high-resolution measurements from a lidar, a radar and a radiometer, which allow us to collect and compare data continuously. This method is based on a standardised data format from Cloudnet and can be implemented at any observatory where the Cloudnet data set is available. Two example case studies were chosen from the Atmospheric Radiation Measurement (ARM) Program deployment on Graciosa Island, Azores, Portugal, in 2009 to present the method. We use the cloud dro...
Aerosol–cloud interactions are considered a key uncertainty in our understanding of climate change (...
In order to monitor the first indirect aerosol effect new algorithms have been implemented to retrie...
The interaction relationship between cloud and aerosol is studied via their optical depth and cloud ...
A method for continuous observation of aerosol–cloud interactions with ground-based remote sensing i...
This thesis presents a new method for the continuous observation of aerosol-cloud interactions with ...
The representation of aerosol-cloud interaction (ACI) processes in climate models, although long stu...
A method is presented to obtain droplet concentration for water clouds from ground-based remote sens...
The first release of the Aerosol-Cloud Interactions Monitoring Software. Aerosol - Cloud Interactio...
Aerosols can indirectly influence climate either by cloud albedo or lifetime effect. In order to hav...
The possible interaction and modification of cloud properties due to aerosols is one of the most poo...
Cloud-aerosol interaction is a key issue in the climate system, affecting the water cycle, the weath...
The environment in which clouds develop is cru-cial for the cloud microphysics and therefore the clo...
.Aerosol-cloud interactions are considered a key uncertainty in our understanding of climate change ...
Aerosol–cloud interactions are considered a key uncertainty in our understanding of climate change (...
Combination of microwave radiometer (MWR) and mutlifilter rotating shadowband radiometer (MFRSR) mea...
Aerosol–cloud interactions are considered a key uncertainty in our understanding of climate change (...
In order to monitor the first indirect aerosol effect new algorithms have been implemented to retrie...
The interaction relationship between cloud and aerosol is studied via their optical depth and cloud ...
A method for continuous observation of aerosol–cloud interactions with ground-based remote sensing i...
This thesis presents a new method for the continuous observation of aerosol-cloud interactions with ...
The representation of aerosol-cloud interaction (ACI) processes in climate models, although long stu...
A method is presented to obtain droplet concentration for water clouds from ground-based remote sens...
The first release of the Aerosol-Cloud Interactions Monitoring Software. Aerosol - Cloud Interactio...
Aerosols can indirectly influence climate either by cloud albedo or lifetime effect. In order to hav...
The possible interaction and modification of cloud properties due to aerosols is one of the most poo...
Cloud-aerosol interaction is a key issue in the climate system, affecting the water cycle, the weath...
The environment in which clouds develop is cru-cial for the cloud microphysics and therefore the clo...
.Aerosol-cloud interactions are considered a key uncertainty in our understanding of climate change ...
Aerosol–cloud interactions are considered a key uncertainty in our understanding of climate change (...
Combination of microwave radiometer (MWR) and mutlifilter rotating shadowband radiometer (MFRSR) mea...
Aerosol–cloud interactions are considered a key uncertainty in our understanding of climate change (...
In order to monitor the first indirect aerosol effect new algorithms have been implemented to retrie...
The interaction relationship between cloud and aerosol is studied via their optical depth and cloud ...