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Ronny Engelmann

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4 records found

Journal article (2018) - Dimitra Mamali, Eleni Marinou, Holger Baars, Albert Ansmann, Vassilis Amiridis, Herman Russchenberg, George Biskos, Jean Sciare, Michael Pikridas, Panagiotis Kokkalis, Michael Kottas, Ioannis Binietoglou, Alexandra Tsekeri, Christos Keleshis, Ronny Engelmann
In situ measurements using unmanned aerial vehicles (UAVs) and remote sensing observations can independently provide dense vertically resolved measurements of atmospheric aerosols, information which is strongly required in climate models. In both cases, inverting the recorded signals to useful information requires assumptions and constraints, and this can make the comparison of the results difficult. Here we compare, for the first time, vertical profiles of the aerosol mass concentration derived from light detection and ranging (lidar) observations and in situ measurements using an optical particle counter on board a UAV during moderate and weak Saharan dust episodes. Agreement between the two measurement methods was within experimental uncertainty for the coarse mode (i.e. particles having radii > 0.5ĝ€μm), where the properties of dust particles can be assumed with good accuracy. This result proves that the two techniques can be used interchangeably for determining the vertical profiles of aerosol concentrations, bringing them a step closer towards their systematic exploitation in climate models. ...
Conference paper (2018) - Eleni Marinou, Vassilis Amiridis, Holger Baars, Michael Kottas, Alexandra Tsekeri, Emmanouil Proestakis, Panagiotis Kokkalis, Philippe Goloub, Bojan Cvetkovic, Slobodan Nichovic, Rodanthi Mamouri, Michael Pikridas, Albert Ansmann, Iasonas Stavroulas, Christos Keleshis, Jean Sciare, Athanasios Nenes, Dimitris Balis, Jann Schrod, Ioannis Binietoglou, Stavros Solomos, Dimitra Mamali, Ronny Engelmann
By means of available ice nucleating particle (INP) parameterization schemes we compute profiles of dust INP number concentration utilizing Polly-XT and CALIPSO lidar observations during the INUIT-BACCHUS-ACTRIS 2016 campaign. The polarization-lidar photometer networking (POLIPHON) method is used to separate dust and non-dust aerosol backscatter, extinction, mass concentration, particle number concentration (for particles with radius > 250 nm) and surface area concentration. The INP final products are compared with aerosol samples collected from unmanned aircraft systems (UAS) and analyzed using the ice nucleus counter FRIDGE. ...

The ACTRIS-2 campaigns in Germany, Greece and Cyprus

Conference paper (2018) - Alexandra Tsekeri, Vassilis Amiridis, Joel C. Corbin, Martin Gysel, Nicolas Bukowiecki, Holger Baars, Ronny Engelmann, Birgit Wehner, Michael Kottas, Dimitra Mamali, Panagiotis Kokkalis, Panagiotis I. Raptis, Anton Lopatin, Iasonas Stavroulas, Christos Keleshis, Detlef Müller, Stavros Solomos, Ioannis Binietoglou, Nikolaos Mihalopoulos, Alexandros Papayannis, Iwona S. Stachlewska, Julia Igloffstein, Ulla Wandinger, Eleni Marinou, Albert Ansmann, Oleg Dubovik, Philippe Goloub, Eleni Giannakaki, Michael Pikridas, Jean Sciare, Eleni Liakakou, Evangelos Gerasopoulos, Sebastian Duesing
Aerosol absorption profiling is crucial for radiative transfer calculations and climate modelling. Here, we utilize the synergy of lidar with sun-photometer measurements to derive the absorption coefficient and single scattering albedo profiles during the ACTRIS-2 campaigns held in Germany, Greece and Cyprus. The remote sensing techniques are compared with in situ measurements in order to harmonize and validate the different methodologies and reduce the absorption profiling uncertainties. ...
Conference paper (2018) - Emmanouil Proestakis, Vassilis Amiridis, Alexandros Papayannis, Aleksander Pietruczuk, Anna Gialitaki, Arnoud Apituley, Constantino Muñoz-Porcar, Daniele Bortoli, Davide Dionisi, Dietrich Althausen, Dimitra Mamali, Dimitris Balis, Michael Kottas, Doina Nicolae, Eleni Tetoni, Gian Luigi Liberti, Holger Baars, Iwona S. Stachlewska, Kalliopi Artemis Voudouri, Lucia Mona, Maria Mylonaki, Maria Rita Perrone, Maria João Costa, Eleni Marinou, Michael Sicard, Nikolaos Papagiannopoulos, Nikolaos Siomos, Pasquale Burlizzi, Ronny Engelmann, Sabur F. Abdullaev, Julian Hofer, Gelsomina Pappalardo, Ioannis Binietoglou, Albert Ansmann, Ulla Wandinger, John Yorks, Edward Nowottnick, Abduvosit Makhmudov
The Cloud-Aerosol Transport System (CATS) onboard the International Space Station (ISS), is a lidar system providing vertically resolved aerosol and cloud profiles since February 2015. In this study, the CATS aerosol product is validated against the aerosol profiles provided by the European Aerosol Research Lidar Network (EARLINET). This validation activity is based on collocated CATS-EARLINET measurements and the comparison of the particle backscatter coefficient at 1064nm. ...