Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System
Prediction of spatial and temporal variability of air temperature in areas with complex topography is still a challenge for numerical weather prediction models. Simulation of atmosphere over complex terrain requires dense and accurate horizontal and vertical grids. In this study, verification result...
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doaj-45a4ab95ce044e80b62fff4bdc017bb22020-11-24T21:21:15ZengMDPI AGAtmosphere2073-44332019-04-0110418610.3390/atmos10040186atmos10040186Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction SystemPiotr Sekula0Anita Bokwa1Bogdan Bochenek2Miroslaw Zimnoch3Faculty of Physics and Applied Computer Science, AGH-University of Science and Technology, 30-059 Krakow, PolandInstitute of Geography and Spatial Management, Jagiellonian University, 30-387 Krakow, PolandInstitute of Meteorology and Water Management, National Research Institute, IMGW-PIB Branch of Krakow, 30-215 Krakow, PolandFaculty of Physics and Applied Computer Science, AGH-University of Science and Technology, 30-059 Krakow, PolandPrediction of spatial and temporal variability of air temperature in areas with complex topography is still a challenge for numerical weather prediction models. Simulation of atmosphere over complex terrain requires dense and accurate horizontal and vertical grids. In this study, verification results of three configurations of the Aire Limitée Adaptation Dynamique Développement International High-Resolution Limited Area Model (ALADIN-HIRLAM) numerical weather prediction (NWP) system, using two different horizontal and vertical resolutions and applied to the Polish Western Carpathian Mountains, are presented. One model of the ALADIN-HIRLAM NWP system is tested in two horizontal and vertical resolutions. Predicted air temperatures are compared with observations from stations located in different orographies. A comparison of model results with observations was conducted for three cold season intervals in 2017 and 2018. Statistical validation of model output demonstrates better model representativeness for stations located on hill and mountain tops compared to locations in valley bottoms. A comparison of results for two topography representations (2 × 2 km and 1 × 1 km) showed no statistically significant differences of root mean square error (RMSE) and bias between model results and observations.https://www.mdpi.com/2073-4433/10/4/186ALADIN-HIRLAM numerical weather prediction systemvariability of air temperaturePolish Western Carpathian Mountains |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Piotr Sekula Anita Bokwa Bogdan Bochenek Miroslaw Zimnoch |
spellingShingle |
Piotr Sekula Anita Bokwa Bogdan Bochenek Miroslaw Zimnoch Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System Atmosphere ALADIN-HIRLAM numerical weather prediction system variability of air temperature Polish Western Carpathian Mountains |
author_facet |
Piotr Sekula Anita Bokwa Bogdan Bochenek Miroslaw Zimnoch |
author_sort |
Piotr Sekula |
title |
Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System |
title_short |
Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System |
title_full |
Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System |
title_fullStr |
Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System |
title_full_unstemmed |
Prediction of Air Temperature in the Polish Western Carpathian Mountains with the ALADIN-HIRLAM Numerical Weather Prediction System |
title_sort |
prediction of air temperature in the polish western carpathian mountains with the aladin-hirlam numerical weather prediction system |
publisher |
MDPI AG |
series |
Atmosphere |
issn |
2073-4433 |
publishDate |
2019-04-01 |
description |
Prediction of spatial and temporal variability of air temperature in areas with complex topography is still a challenge for numerical weather prediction models. Simulation of atmosphere over complex terrain requires dense and accurate horizontal and vertical grids. In this study, verification results of three configurations of the Aire Limitée Adaptation Dynamique Développement International High-Resolution Limited Area Model (ALADIN-HIRLAM) numerical weather prediction (NWP) system, using two different horizontal and vertical resolutions and applied to the Polish Western Carpathian Mountains, are presented. One model of the ALADIN-HIRLAM NWP system is tested in two horizontal and vertical resolutions. Predicted air temperatures are compared with observations from stations located in different orographies. A comparison of model results with observations was conducted for three cold season intervals in 2017 and 2018. Statistical validation of model output demonstrates better model representativeness for stations located on hill and mountain tops compared to locations in valley bottoms. A comparison of results for two topography representations (2 × 2 km and 1 × 1 km) showed no statistically significant differences of root mean square error (RMSE) and bias between model results and observations. |
topic |
ALADIN-HIRLAM numerical weather prediction system variability of air temperature Polish Western Carpathian Mountains |
url |
https://www.mdpi.com/2073-4433/10/4/186 |
work_keys_str_mv |
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