Simulation of temperature extremes over West Africa with MPAS

  • A large ensemble of 51 simulations with the Model for Prediction Across Scales (MPAS) has been applied to assess its ability to reproduce extreme temperatures and heat waves in the area of West Africa. With its global approach the model avoids transition errors influencing the performance of limited area climate models. The MPAS simulations were driven with sea surface temperature (SST) and sea ice extent as the only boundary condition. The results reveal moderate cold biases in the range from −0.6° to −0.9°C for the daily mean temperature and −1.2° to −2.0°C for the area mean of the daily maximum temperature. The bias in the number of tropical nights ranges from +3 to −10 days. An underestimation by up to 50% is also present regarding the number of summer days. The heat wave duration index is underestimated regionally by 10%–60%. MPAS simulations are generally closer to the reanalysis results than they are to the observational reference. The results from long term runs and from shortA large ensemble of 51 simulations with the Model for Prediction Across Scales (MPAS) has been applied to assess its ability to reproduce extreme temperatures and heat waves in the area of West Africa. With its global approach the model avoids transition errors influencing the performance of limited area climate models. The MPAS simulations were driven with sea surface temperature (SST) and sea ice extent as the only boundary condition. The results reveal moderate cold biases in the range from −0.6° to −0.9°C for the daily mean temperature and −1.2° to −2.0°C for the area mean of the daily maximum temperature. The bias in the number of tropical nights ranges from +3 to −10 days. An underestimation by up to 50% is also present regarding the number of summer days. The heat wave duration index is underestimated regionally by 10%–60%. MPAS simulations are generally closer to the reanalysis results than they are to the observational reference. The results from long term runs and from short term runs with selected SST years are similar. Shortcomings in the reproduction of the temperature and precipitation indices found in the present investigation indicate that the global MPAS approach does provide a fidelity similar to that of the regional climate models.show moreshow less

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Metadaten
Author:Laouali Ibrahim Tanimoune, Gerhard Smiatek, Harald KunstmannORCiDGND, Babatunde J. Abiodun
URN:urn:nbn:de:bvb:384-opus4-1102404
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/110240
ISSN:2169-897XOPAC
ISSN:2169-8996OPAC
Parent Title (English):Journal of Geophysical Research: Atmospheres
Publisher:American Geophysical Union (AGU)
Type:Article
Language:English
Date of first Publication:2023/12/07
Publishing Institution:Universität Augsburg
Release Date:2023/12/18
Tag:Space and Planetary Science; Earth and Planetary Sciences (miscellaneous); Atmospheric Science; Geophysics
Volume:128
Issue:23
First Page:e2023JD039055
DOI:https://doi.org/10.1029/2023jd039055
Institutes:Fakultät für Angewandte Informatik
Fakultät für Angewandte Informatik / Institut für Geographie
Fakultät für Angewandte Informatik / Institut für Geographie / Lehrstuhl für Regionales Klima und Hydrologie
Dewey Decimal Classification:9 Geschichte und Geografie / 91 Geografie, Reisen / 910 Geografie, Reisen
Licence (German):CC-BY 4.0: Creative Commons: Namensnennung (mit Print on Demand)