Evaluation of present-climate precipitation in 25 km resolution regional climate model simulations over Northwest Africa
Raquel Romera, Enrique Sánchez, Marta Domínguez, MÁ Gaertner, Clemente Gallardo
Abstract
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Raquel Romera, Enrique Sánchez, Marta Domínguez, MÁ Gaertner, Clemente Gallardo
Abstract
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CR Climate Research Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsSpecials CR 66:125-139 (2015) - DOI: https://doi.org/10.3354/cr01330 Evaluation of present-climate precipitation in 25 km resolution regional climate model simulations over Northwest Africa Raquel Romera1,*, Enrique Sánchez2, Marta Domínguez3, Miguel Ángel Gaertner2, Clemente Gallardo2 1Environmental Sciences Institute, and 2Environmental Sciences Faculty, University of Castilla-La Mancha, 45071 Toledo, Spain 3Physics Sciences Faculty, University Complutense of Madrid, 28040 Madrid, Spain *Corresponding author: raquel.romera@uclm.es ABSTRACT: Risks related to characteristics of future precipitation change over northern Africa (decreasing mean precipitation, floods and droughts) have been highlighted by several authors, but the scarcity of studies in this area of Africa has been noted by IPCC. We analysed the northwestern African domain for present-day climate (1989 to 2008) precipitation features from a set of 5 high-resolution (25 km) regional climate models (RCMs) from the Spanish ESCENA project. The evaluation of present-climate RCMs simulations was done by comparing the results with 4 different observational databases. The analysis of the spatial distribution of mean precipitation and the annual cycle revealed a complex spatial distribution of rainfall depending on area; hence, a more specific analysis subdividing the domain into 8 subregions was conducted. The spatial and temporal heterogeneity of the precipitation pattern in the studied domain is exemplified by the extreme events (heavy precipitation days oscillated between 4 and 16 d yr-1 and consecutive dry days between 240 and 330 d) and annual anomalies analyses (values between -50% and +100%). The study reveals many robust precipitation features over the region, but also significant differences between the models, with a spread larger than 70% in some subregions, pointing to the need for a set of RCMs and the importance of high resolution in a very complex domain. As regional models are able to describe the basic precipitation features over the region, they can be used to assess the changes projected by climate change simulations. KEY WORDS: Northern Africa · Precipitation · Climate extremes · Regional climate models · Droughts · Heavy precipitation Full text in pdf format PreviousNextCite this article as: Romera R, Sánchez E, Domínguez M, Gaertner MÁ, Gallardo C (2015) Evaluation of present-climate precipitation in 25 km resolution regional climate model simulations over Northwest Africa. Clim Res 66:125-139. https://doi.org/10.3354/cr01330 Export citation RSS - Facebook - Tweet - linkedIn Cited by Published in CR Vol. 66, No. 2. Online publication date: October 20, 2015 Print ISSN: 0936-577X; Online ISSN: 1616-1572 Copyright © 2015 Inter-Research.
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CR Climate Research Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsSpecials CR 66:125-139 (2015) - DOI: https://doi.org/10.3354/cr01330 Evaluation of present-climate precipitation in 25 km resolution regional climate model simulations over Northwest Africa Raquel Romera1,*, Enrique Sánchez2, Marta Domínguez3, Miguel Ángel Gaertner2, Clemente Gallardo2 1Environmental Sciences Institute, and 2Environmental Sciences Faculty, University of Castilla-La Mancha, 45071 Toledo, Spain 3Physics Sciences Faculty, University Complutense of Madrid, 28040 Madrid, Spain *Corresponding author: raquel.romera@uclm.es ABSTRACT: Risks related to characteristics of future precipitation change over northern Africa (decreasing mean precipitation, floods and droughts) have been highlighted by several authors, but the scarcity of studies in this area of Africa has been noted by IPCC. We analysed the northwestern African domain for present-day climate (1989 to 2008) precipitation features from a set of 5 high-resolution (25 km) regional climate models (RCMs) from the Spanish ESCENA project. The evaluation of present-climate RCMs simulations was done by comparing the results with 4 different observational databases. The analysis of the spatial distribution of mean precipitation and the annual cycle revealed a complex spatial distribution of rainfall depending on area; hence, a more specific analysis subdividing the domain into 8 subregions was conducted. The spatial and temporal heterogeneity of the precipitation pattern in the studied domain is exemplified by the extreme events (heavy precipitation days oscillated between 4 and 16 d yr-1 and consecutive dry days between 240 and 330 d) and annual anomalies analyses (values between -50% and +100%). The study reveals many robust precipitation features over the region, but also significant differences between the models, with a spread larger than 70% in some subregions, pointing to the need for a set of RCMs and the importance of high resolution in a very complex domain. As regional models are able to describe the basic precipitation features over the region, they can be used to assess the changes projected by climate change simulations. KEY WORDS: Northern Africa · Precipitation · Climate extremes · Regional climate models · Droughts · Heavy precipitation Full text in pdf format PreviousNextCite this article as: Romera R, Sánchez E, Domínguez M, Gaertner MÁ, Gallardo C (2015) Evaluation of present-climate precipitation in 25 km resolution regional climate model simulations over Northwest Africa. Clim Res 66:125-139. https://doi.org/10.3354/cr01330 Export citation RSS - Facebook - Tweet - linkedIn Cited by Published in CR Vol. 66, No. 2. Online publication date: October 20, 2015 Print ISSN: 0936-577X; Online ISSN: 1616-1572 Copyright © 2015 Inter-Research.
Key concepts: Precipitation, Climate model, Climatology, Geography, Climate change, Spatial distribution, Environmental science, Physical geography