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Articles Volume 13, issue 3. Article Assets Peer review Metrics Related articles. This work is distributed under the Creative Commons Attribution 4. Model description paper.
Model description paper 20 Mar Sabine Banzhaf. Cornelia Burmeister. Thomas Esch. Antti Hellsten. Finnish Meteorological Institute, Helsinki, Finland. Atsushi Inagaki. Eckhard Kadasch. Deutscher Wetterdienst, Offenbach, Germany.
Klaus Ketelsen. Software Consultant, Berlin, Germany. Christoph Knigge. Halim Maamari. Ingenieurgesellschaft Prof. Sieker mbH, Hoppegarten, Germany. Matthias Pallasch. Dirk Pavlik. Jens Pfafferott. Hochschule Offenburg, Offenburg, Germany. Sascha Rissmann. Michael Schrempf. Robert von Tils. Lukas Vollmer. Simon Ward. Hauke Wurps.
Siegfried Raasch. Show only first author papers Show all papers. Gina C. Jozef, Robert Klingel, John J. Earth Syst. Short summary. Observations from the MOSAiC expedition relating to lower-atmospheric temperature, wind, stability, moisture, and surface radiation budget from radiosondes, a meteorological tower, radiation station, and ceilometer were compiled to create a dataset which describes the thermodynamic and kinematic state of the central Arctic lower atmosphere between October and September This paper describes the methods used to develop this lower-atmospheric properties dataset.
Mohamed H. Model Dev. Radiative transfer processes are the main energy transport mechanism in urban areas which influence the surface energy budget and drive local convection. We show here the importance of each process to help modellers decide on how much detail they should include in their models to parameterize radiative transfer in urban areas.