Performance of Regional Climate Model Precipitation Simulations Over the Terrain‐Complex Andes‐Amazon Transition Region

Author:

Gutierrez Ricardo A.12ORCID,Junquas Clémentine34ORCID,Armijos Elisa12ORCID,Sörensson Anna A.567ORCID,Espinoza Jhan‐Carlo38ORCID

Affiliation:

1. Escuela de Posgrado Universidad Nacional Agraria La Molina Lima Perú

2. Subdirección de Ciencias de la Atmósfera e Hidrósfera Instituto Geofísico del Perú Lima Perú

3. Univ. Grenoble Alpes IRD, CNRS, INRAE, Grenoble INP, IGE Grenoble France

4. Servicio Nacional de Meteorología e Hidrología (SENAMHI) Lima Peru

5. Facultad de Ciencias Exactas y Naturales Universidad de Buenos Aires Buenos Aires Argentina

6. Centro de Investigaciones del Mar y la Atmósfera (CIMA) CONICET ‒ Universidad de Buenos Aires Buenos Aires Argentina

7. Instituto Franco‑Argentino de Estudios sobre el Clima y sus Impactos (IFAECI ‑ IRL 3351), CNRS‐CONICET‐IRDUBA Buenos Aires Argentina

8. Departamento de Ciencias, Sección Matemáticas Pontificia Universidad Católica del Perú Lima Perú

Abstract

AbstractRegional climate models (RCMs) are widely used to assess future impacts associated with climate change at regional and local scales. RCMs must represent relevant climate variables in the present‐day climate to be considered fit‐for‐purpose for impact assessment. This condition is particularly difficult to meet over complex regions such as the Andes‐Amazon transition region, where the Andean topography and abundance of tropical rainfall regimes remain a challenge for numerical climate models. In this study, we evaluate the ability of 30 regional climate simulations (6 RCMs driven by 10 global climate models) to reproduce historical (1981–2005) rainfall climatology and temporal variability over the Andes‐Amazon transition region. We assess spatio‐temporal features such as spatial distribution of rainfall, focusing on the orographic effects over the Andes‐Amazon “rainfall hotspots” region, and seasonal and interannual precipitation variability. The Eta RCM exhibits the highest spatial correlation (up to 0.6) and accurately reproduces mean annual precipitation and orographic precipitation patterns across the region, while some other RCMs have good performances at specific locations. Most RCMs simulate a wet bias over the highlands, particularly at the eastern Andean summits, as evidenced by the 100%–2,500% overestimations of precipitation in these regions. Annual cycles are well represented by most RCMs, but peak seasons are exaggerated, especially at equatorial locations. No RCM is particularly skillful in reproducing the interannual variability patterns. Results highlight skills and weaknesses of the different regional climate simulations, and can assist in the selection of regional climate simulations for impact studies in the Andes‐Amazon transition zone.

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geophysics

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