Evaluation of Vertical Profiles and Atmospheric Boundary Layer Structure Using the Regional Climate Model CCLM during MOSAiC

Author:

Heinemann Günther1ORCID,Schefczyk Lukas2ORCID,Zentek Rolf1ORCID,Brooks Ian M.3,Dahlke Sandro4ORCID,Walbröl Andreas5ORCID

Affiliation:

1. Environmental Meteorology, University of Trier, 54296 Trier, Germany

2. State Environment Agency Rhineland-Palatinate, 55116 Mainz, Germany

3. School of Earth and Environment, University of Leeds, Leeds LS2 9JT, UK

4. Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, 14473 Potsdam, Germany

5. Institute for Geophysics and Meteorology, University of Cologne, 50969 Cologne, Germany

Abstract

Regional climate models are a valuable tool for the study of the climate processes and climate change in polar regions, but the performance of the models has to be evaluated using experimental data. The regional climate model CCLM was used for simulations for the MOSAiC period with a horizontal resolution of 14 km (whole Arctic). CCLM was used in a forecast mode (nested in ERA5) and used a thermodynamic sea ice model. Sea ice concentration was taken from AMSR2 data (C15 run) and from a high-resolution data set (1 km) derived from MODIS data (C15MOD0 run). The model was evaluated using radiosonde data and data of different profiling systems with a focus on the winter period (November–April). The comparison with radiosonde data showed very good agreement for temperature, humidity, and wind. A cold bias was present in the ABL for November and December, which was smaller for the C15MOD0 run. In contrast, there was a warm bias for lower levels in March and April, which was smaller for the C15 run. The effects of different sea ice parameterizations were limited to heights below 300 m. High-resolution lidar and radar wind profiles as well as temperature and integrated water vapor (IWV) data from microwave radiometers were used for the comparison with CCLM for case studies, which included low-level jets. LIDAR wind profiles have many gaps, but represent a valuable data set for model evaluation. Comparisons with IWV and temperature data of microwave radiometers show very good agreement.

Funder

Federal Ministry of Education and Research

UK Natural Environment Research Council

Open Access Fund of the University of Trier

German Research Foundation

Publisher

MDPI AG

Subject

Industrial and Manufacturing Engineering,Environmental Engineering

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