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Impact of dynamical regionalization on precipitation biases and teleconnections over West Africa
- Source :
- E-Prints Complutense. Archivo Institucional de la UCM, instname, Digital.CSIC. Repositorio Institucional del CSIC, E-Prints Complutense: Archivo Institucional de la UCM, Universidad Complutense de Madrid
- Publication Year :
- 2018
- Publisher :
- Springer, 2018.
-
Abstract
- West African societies are highly dependent on the West African Monsoon (WAM). Thus, a correct representation of the WAM in climate models is of paramount importance. In this article, the ability of 8 CMIP5 historical General Circulation Models (GCMs) and 4 CORDEX-Africa Regional Climate Models (RCMs) to characterize the WAM dynamics and variability is assessed for the period July-August-September 1979–2004. Simulations are compared with observations. Uncertainties in RCM performance and lateral boundary conditions are assessed individually. Results show that both GCMs and RCMs have trouble to simulate the northward migration of the Intertropical Convergence Zone in boreal summer. The greatest bias improvements are obtained after regionalization of the most inaccurate GCM simulations. To assess WAM variability, a Maximum Covariance Analysis is performed between Sea Surface Temperature and precipitation anomalies in observations, GCM and RCM simulations. The assessed variability patterns are: El Niño-Southern Oscillation (ENSO); the eastern Mediterranean (MED); and the Atlantic Equatorial Mode (EM). Evidence is given that regionalization of the ENSO–WAM teleconnection does not provide any added value. Unlike GCMs, RCMs are unable to precisely represent the ENSO impact on air subsidence over West Africa. Contrastingly, the simulation of the MED–WAM teleconnection is improved after regionalization. Humidity advection and convergence over the Sahel area are better simulated by RCMs. Finally, no robust conclusions can be determined for the EM–WAM teleconnection, which cannot be isolated for the 1979–2004 period. The novel results in this article will help to select the most appropriate RCM simulations to study WAM teleconnections.<br />This study has been supported by the European Commission’s research project PREFACE (EU/FP7 2007–2013; ref. 603521). Iñigo Gómara is also supported by the Spanish Ministry of Economy and Competitiveness (“Juan de la Cierva-Formación” contract; FJCI-2015-23874).
- Subjects :
- Atmospheric Science
010504 meteorology & atmospheric sciences
0208 environmental biotechnology
02 engineering and technology
Precipitation
Monsoon
01 natural sciences
West African monsoon
Atlantic Equatorial mode
CMIP5
0105 earth and related environmental sciences
Intertropical Convergence Zone
Meteorología
Subsidence (atmosphere)
Tropical variability
Geofísica
020801 environmental engineering
Sea surface temperature
CORDEX
13. Climate action
Climatology
Teleconnections
Environmental science
Climate model
Teleconnection
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- E-Prints Complutense. Archivo Institucional de la UCM, instname, Digital.CSIC. Repositorio Institucional del CSIC, E-Prints Complutense: Archivo Institucional de la UCM, Universidad Complutense de Madrid
- Accession number :
- edsair.doi.dedup.....21c6ceadddd2dd1d06bbc27ac07a5bdf