Understanding the distribution of aerosol layers is important for determining long-range transport and aerosol radiative forcing. In this study we combine airborne in situ measurements of aerosol with data obtained by a ground-based high spectral resolution lidar (HSRL) and radiosonde profiles to investigate the temporal and vertical variability of aerosol properties in the lower troposphere. The HSRL was deployed in Hyytiala, southern Finland, from January to September 2014 as a part of the U.S. DOE ARM (Atmospheric Radiation Measurement) mobile facility during the BAECC (Biogenic Aerosols - Effects on Cloud and Climate) Campaign. Two flight campaigns took place in April and August 2014 with instruments measuring the aerosol size distribut...
The objective of this project was to provide vertically and horizontally resolved data on aerosol op...
The aerosol vertical profiles (20-1000 m) obtained in the atmospheric boundary layer, on four nights...
International audienceA new objective method for the determination of the atmospheric boundary layer...
Understanding the distribution of aerosol layers is important for determining long-range transport a...
Understanding the distribution of aerosol layers is important for determining long-range transport ...
Understanding the distribution of aerosol layers is important for determining long-range transport a...
The Institute of Atmospheric Physics of DLR has participated in recent years in several field experi...
International audienceAerosols influence the Earth radiative budget through scattering and absorptio...
International audienceAerosols influence the Earth radiative budget through scattering and absorptio...
International audienceAerosols influence the Earth radiative budget through scattering and absorptio...
As part of the Southeast United States based Studies of Emissions & Atmospheric Composition, Clouds ...
Aerosol vertical distributions impact both the direct and indirect radiative effects of aerosols. Hi...
This paper examines the representativeness of ground-based in situ measurements for the planetary bo...
This paper examines the representativeness of ground-based in situ measurements for the planetary bo...
The inversion on top of the atmospheric boundary layer is a strong barrier for the transport of heat...
The objective of this project was to provide vertically and horizontally resolved data on aerosol op...
The aerosol vertical profiles (20-1000 m) obtained in the atmospheric boundary layer, on four nights...
International audienceA new objective method for the determination of the atmospheric boundary layer...
Understanding the distribution of aerosol layers is important for determining long-range transport a...
Understanding the distribution of aerosol layers is important for determining long-range transport ...
Understanding the distribution of aerosol layers is important for determining long-range transport a...
The Institute of Atmospheric Physics of DLR has participated in recent years in several field experi...
International audienceAerosols influence the Earth radiative budget through scattering and absorptio...
International audienceAerosols influence the Earth radiative budget through scattering and absorptio...
International audienceAerosols influence the Earth radiative budget through scattering and absorptio...
As part of the Southeast United States based Studies of Emissions & Atmospheric Composition, Clouds ...
Aerosol vertical distributions impact both the direct and indirect radiative effects of aerosols. Hi...
This paper examines the representativeness of ground-based in situ measurements for the planetary bo...
This paper examines the representativeness of ground-based in situ measurements for the planetary bo...
The inversion on top of the atmospheric boundary layer is a strong barrier for the transport of heat...
The objective of this project was to provide vertically and horizontally resolved data on aerosol op...
The aerosol vertical profiles (20-1000 m) obtained in the atmospheric boundary layer, on four nights...
International audienceA new objective method for the determination of the atmospheric boundary layer...