Climatology and Teleconnections of Mesoscale Convective Systems in an Andean Basin in Southern Ecuador: The Case of the Paute Basin

Author:

Campozano Lenin123ORCID,Trachte Katja4,Célleri Rolando12,Samaniego Esteban12,Bendix Joerg4,Albuja Cristóbal12ORCID,Mejia John F.5

Affiliation:

1. Departamento de Recursos Hídricos y Ciencias Ambientales, Universidad de Cuenca, Cuenca, Ecuador

2. Facultad de Ingeniería, Universidad de Cuenca, Cuenca, Ecuador

3. Depto. de Ingeniería Civil y Ambiental, Escuela Politecnica Nacional, Quito, Ecuador

4. Laboratory for Climatology and Remote Sensing (LCRS), Faculty of Geography, Philipps-University Marburg, Deutschhausstraße 10, 35032 Marburg, Germany

5. Department of Atmospheric Sciences, Desert Research Institute, Reno, NV, USA

Abstract

Mesoscale convective systems (MCSs) climatology, the thermodynamic and dynamical variables, and teleconnections influencing MCSs development are assessed for the Paute basin (PB) in the Ecuadorian Andes from 2000 to 2009. The seasonality of MCSs occurrence shows a bimodal pattern, with higher occurrence during March-April (MA) and October-November (ON), analogous to the regional rainfall seasonality. The diurnal cycle of MCSs shows a clear nocturnal occurrence, especially during the MA and ON periods. Interestingly, despite the higher occurrence of MCSs during the rainy seasons, the monthly size relative frequency remains fairly constant throughout the year. On the east of the PB, the persistent high convective available potential and low convective inhibition values from midday to nighttime are likely related to the nocturnal development of the MCSs. A significant positive correlation between the MCSs occurrence to the west of the PB and the Trans-Niño index was found, suggesting that ENSO is an important source of interannual variability of MCSs frequency with increasing development of MCSs during warm ENSO phases. On the east of the PB, the variability of MCSs is positively correlated to the tropical Atlantic sea surface temperature anomalies south of the equator, due to the variability of the Atlantic subtropical anticyclone, showing main departures from this relation when anomalous conditions occur in the tropical Pacific due to ENSO.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Hindawi Limited

Subject

Atmospheric Science,Pollution,Geophysics

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