role of moisture transport for central american precipitation
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2017
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Abstract
A climatology of moisture sources linked with Central
American precipitation was computed based upon Lagrangian trajectories for
the analysis period 1980–2013. The response of the annual cycle of
precipitation in terms of moisture supply from the sources was analysed.
Regional precipitation patterns are mostly driven by moisture transport from
the Caribbean Sea (CS). Moisture supply from the eastern tropical Pacific (ETPac) and northern South America (NSA) exhibits a strong seasonal pattern but weaker compared to CS. The regional distribution of rainfall is largely influenced by a local signal associated with surface fluxes during the first part of the rainy season, whereas large-scale dynamics forces rainfall
during the second part of the rainy season. The Caribbean Low Level Jet (CLLJ)
and the Chocó Jet (CJ) are the main conveyors of regional
moisture, being key to define the seasonality of large-scale forced
rainfall. Therefore, interannual variability of rainfall is highly dependent
of the regional LLJs to the atmospheric variability modes. The El
Niño–Southern Oscillation (ENSO) was found to be the dominant mode
affecting moisture supply for Central American precipitation via the
modulation of regional phenomena. Evaporative sources show opposite anomaly
patterns during warm and cold ENSO phases, as a result of the strengthening
and weakening, respectively, of the CLLJ during the summer months. Trends in
both moisture supply and precipitation over the last three decades were
computed, results suggest that precipitation trends are not homogeneous for
Central America. Trends in moisture supply from the sources identified show
a marked north–south seesaw, with an increasing supply from the CS
Sea to northern Central America. Long-term trends in moisture supply are
larger for the transition months (March and October). This might have
important implications given that any changes in the conditions seen during
the transition to the rainy season may induce stronger precipitation trends.
| Reference Key |
durn-quesada2017earthrole
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|---|---|
| Authors | ;A. M. Durán-Quesada;L. Gimeno;J. Amador |
| Journal | itinéraires |
| Year | 2017 |
| DOI |
10.5194/esd-8-147-2017
|
| URL | |
| Keywords |
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