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The first multi-model ensemble of regional climate simulations at kilometer-scale resolution, part I: evaluation of precipitation
- Source :
- Ban, N.; Caillaud, C.; Coppola, E.; Pichelli, E.; Sobolowski, S.; Adinolfi, M.; Ahrens, B.; Alias, A.; Anders, I.; Bastin, S.; Belušić, D.; Berthou, S.; Brisson, E.; Cardoso, R.M.; Chan, S.C.; Christensen, O.B.; Fernández, J.; Fita, L.; Frisius, T.; Gašparac, G.; Giorgi, F.; Goergen, K.; Haugen, J.E.; Hodnebrog, Ø.; Kartsios, S.; Katragkou, E.; Kendon, E.J.; Keuler, K.; Lavin-Gullon, A.; Lenderink, G.; Leutwyler, D.; Lorenz, T.; Maraun, D.; Mercogliano, P.; Milovac, J.; Panitz, H.-J.; Raffa, M.; Remedio, A.R.; Schär, C.; Soares, P.M.M.; Srnec, L.; Steensen, B.M.; Stocchi, P.; Tölle, M.H.; Truhetz, H.; Vergara-Temprado, J.; de Vries, H.; Warrach-Sagi, K.; Wulfmeyer, V.; Zander, M.J.: The first multi-model ensemble of regional climate simulations at kilometer-scale resolution, part I: evaluation of precipitation. In: Climate Dynamics. Vol. 57 (2021) 1-2, 275-302. (DOI: /10.1007/s00382-021-05708-w), Climate Dynamics, Climate Dynamics, Springer Verlag, 2021, 57, pp.275-302. ⟨10.1007/s00382-021-05708-w⟩, Climate Dynamics 57 (2021) 1-2, Climate Dynamics (2021) 57:275-302, Climate Dynamics, 57(1-2), 275-302, Climate dynamics 57, 275–302 (2021). doi:10.1007/s00382-021-05708-w, Climate Dynamics, 2021, 57, pp.275-302. ⟨10.1007/s00382-021-05708-w⟩, Climate Dynamics, Springer Verlag, 2021, (in press). ⟨10.1007/s00382-021-05708-w⟩, Climate Dynamics, 57, 275–302, Climate Dynamics, 57 (1-2), Digital.CSIC. Repositorio Institucional del CSIC, instname, UCrea Repositorio Abierto de la Universidad de Cantabria, Universidad de Cantabria (UC)
- Publication Year :
- 2021
- Publisher :
- Springer, 2021.
-
Abstract
- N. Ban et al.<br />Here we present the first multi-model ensemble of regional climate simulations at kilometer-scale horizontal grid spacing over a decade long period. A total of 23 simulations run with a horizontal grid spacing of ∼3 km, driven by ERA-Interim reanalysis, and performed by 22 European research groups are analysed. Six different regional climate models (RCMs) are represented in the ensemble. The simulations are compared against available high-resolution precipitation observations and coarse resolution (∼ 12 km) RCMs with parameterized convection. The model simulations and observations are compared with respect to mean precipitation, precipitation intensity and frequency, and heavy precipitation on daily and hourly timescales in different seasons. The results show that kilometer-scale models produce a more realistic representation of precipitation than the coarse resolution RCMs. The most significant improvements are found for heavy precipitation and precipitation frequency on both daily and hourly time scales in the summer season. In general, kilometer-scale models tend to produce more intense precipitation and reduced wet-hour frequency compared to coarse resolution models. On average, the multi-model mean shows a reduction of bias from ∼ −40% at 12 km to ∼ −3% at 3 km for heavy hourly precipitation in summer. Furthermore, the uncertainty ranges i.e. the variability between the models for wet hour frequency is reduced by half with the use of kilometer-scale models. Although differences between the model simulations at the kilometer-scale and observations still exist, it is evident that these simulations are superior to the coarse-resolution RCM simulations in the representing precipitation in the present-day climate, and thus offer a promising way forward for investigations of climate and climate change at local to regional scales.<br />Open access funding provided by University of Innsbruck and Medical University of Innsbruck.<br />The ETH team, MZ, CNRM IPSL, ICTP, SMHI, Met-Office, DMI, CMCC, HZG, KNMI acknowledge funding from the HORIZON 2020 EUCP (European Climate Prediction System) project (https://www.eucp-project.eu, grant agreement No. 776613). AL-G acknowledges support by the Spanish government through grant BES-2016-078158 and MINECO/FEDER co-funded project MULTI-SDM (CGL2015-66583-R).
- Subjects :
- Convection
Kilometer-scale resolution
Atmospheric Science
Climate Research
Scale (ratio)
010504 meteorology & atmospheric sciences
0207 environmental engineering
Climate change
02 engineering and technology
Precipitation
Hydrology and Quantitative Water Management
01 natural sciences
Klimatforskning
Kilometer
ddc:550
020701 environmental engineering
health care economics and organizations
0105 earth and related environmental sciences
regional climate models
multi-model ensemble
high-resolution
precipitation
convection
WIMEK
Multi-model ensemble simulations
Resolution (electron density)
Regional climate models
Summer season
Earth sciences
13. Climate action
[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology
Climatology
Environmental science
Climate model
Scale (map)
Intensity (heat transfer)
Hydrologie en Kwantitatief Waterbeheer
Subjects
Details
- Language :
- English
- ISSN :
- 09307575 and 14320894
- Database :
- OpenAIRE
- Journal :
- Ban, N.; Caillaud, C.; Coppola, E.; Pichelli, E.; Sobolowski, S.; Adinolfi, M.; Ahrens, B.; Alias, A.; Anders, I.; Bastin, S.; Belušić, D.; Berthou, S.; Brisson, E.; Cardoso, R.M.; Chan, S.C.; Christensen, O.B.; Fernández, J.; Fita, L.; Frisius, T.; Gašparac, G.; Giorgi, F.; Goergen, K.; Haugen, J.E.; Hodnebrog, Ø.; Kartsios, S.; Katragkou, E.; Kendon, E.J.; Keuler, K.; Lavin-Gullon, A.; Lenderink, G.; Leutwyler, D.; Lorenz, T.; Maraun, D.; Mercogliano, P.; Milovac, J.; Panitz, H.-J.; Raffa, M.; Remedio, A.R.; Schär, C.; Soares, P.M.M.; Srnec, L.; Steensen, B.M.; Stocchi, P.; Tölle, M.H.; Truhetz, H.; Vergara-Temprado, J.; de Vries, H.; Warrach-Sagi, K.; Wulfmeyer, V.; Zander, M.J.: The first multi-model ensemble of regional climate simulations at kilometer-scale resolution, part I: evaluation of precipitation. In: Climate Dynamics. Vol. 57 (2021) 1-2, 275-302. (DOI: /10.1007/s00382-021-05708-w), Climate Dynamics, Climate Dynamics, Springer Verlag, 2021, 57, pp.275-302. ⟨10.1007/s00382-021-05708-w⟩, Climate Dynamics 57 (2021) 1-2, Climate Dynamics (2021) 57:275-302, Climate Dynamics, 57(1-2), 275-302, Climate dynamics 57, 275–302 (2021). doi:10.1007/s00382-021-05708-w, Climate Dynamics, 2021, 57, pp.275-302. ⟨10.1007/s00382-021-05708-w⟩, Climate Dynamics, Springer Verlag, 2021, (in press). ⟨10.1007/s00382-021-05708-w⟩, Climate Dynamics, 57, 275–302, Climate Dynamics, 57 (1-2), Digital.CSIC. Repositorio Institucional del CSIC, instname, UCrea Repositorio Abierto de la Universidad de Cantabria, Universidad de Cantabria (UC)
- Accession number :
- edsair.doi.dedup.....bfa5d3d3439c467389d70469761b8125