EARLINET, the European Aerosol Research Lidar NETwork, established in 2000, is the first coordinated lidar network for tropospheric aerosol study on the continental scale. The network activity is based on scheduled measurements, a rigorous quality assurance program addressing both instruments and evaluation algorithms, and a standardised data exchange format. At present, the network includes 27 lidar stations distributed over Europe. EARLINET performed almost continuous measurements since 15 April 2010 in order to follow the evolution of the volcanic plume generated from the eruption of the Eyjafjallajökull volcano, providing the 4-dimensional distribution of the volcanic ash plume over Europe. During the 15-30 April period, volca...
International audienceDuring the Eyjafjallajökull eruption (14 April to 24 May 2010), the volcanic a...
The European Aerosol Research Lidar Network, EARLINET, was founded in 2000 as a research project for...
More than 130 observation days of the horizontal and vertical extent of Saharan dust intrusions over...
The eruption of the Icelandic volcano Eyjafjallajökull in April–May 2010 represents a "natural exper...
The eruption of the Icelandic volcano Eyjafjallajokull in April-May 2010 represents a "natural exper...
Lidar and sun-photometer measurements were performed intensively over the Iberian Peninsula (IP) dur...
The passage of a volcanic plume produced by the eruption of Eyjafjallajökull volcano in April 2010 ...
A European Aerosol Research Lidar Network to Establish an Aerosol ClimatologyAerosols affect life on...
The passage of a volcanic plume produced by the eruption of Eyjafjallajökull volcano in April 2010 w...
Lidar and sun-photometer measurements were performed intensively over the Iberian Peninsula (IP) du...
The optically thickest volcanic ash plume ever measured over Germany was monitored with multiwavelen...
The European Aerosol Research Lidar Network (EARLINET) has been established in 2000 to derive a comp...
In spring 2010 the Icelandic volcano Eyjafjallajokull erupted high loads of pyroclastic material int...
Lidar measurements were performed in the framework of the EARLINET and SPALINET networks during the ...
International audienceDuring the Eyjafjallajökull eruption (14 April to 24 May 2010), the volcanic a...
The European Aerosol Research Lidar Network, EARLINET, was founded in 2000 as a research project for...
More than 130 observation days of the horizontal and vertical extent of Saharan dust intrusions over...
The eruption of the Icelandic volcano Eyjafjallajökull in April–May 2010 represents a "natural exper...
The eruption of the Icelandic volcano Eyjafjallajokull in April-May 2010 represents a "natural exper...
Lidar and sun-photometer measurements were performed intensively over the Iberian Peninsula (IP) dur...
The passage of a volcanic plume produced by the eruption of Eyjafjallajökull volcano in April 2010 ...
A European Aerosol Research Lidar Network to Establish an Aerosol ClimatologyAerosols affect life on...
The passage of a volcanic plume produced by the eruption of Eyjafjallajökull volcano in April 2010 w...
Lidar and sun-photometer measurements were performed intensively over the Iberian Peninsula (IP) du...
The optically thickest volcanic ash plume ever measured over Germany was monitored with multiwavelen...
The European Aerosol Research Lidar Network (EARLINET) has been established in 2000 to derive a comp...
In spring 2010 the Icelandic volcano Eyjafjallajokull erupted high loads of pyroclastic material int...
Lidar measurements were performed in the framework of the EARLINET and SPALINET networks during the ...
International audienceDuring the Eyjafjallajökull eruption (14 April to 24 May 2010), the volcanic a...
The European Aerosol Research Lidar Network, EARLINET, was founded in 2000 as a research project for...
More than 130 observation days of the horizontal and vertical extent of Saharan dust intrusions over...