4.6 Article

Multi-model climate projections of the main cyclogenesis hot-spots and associated winds over the eastern coast of South America

Journal

CLIMATE DYNAMICS
Volume 56, Issue 1-2, Pages 537-557

Publisher

SPRINGER
DOI: 10.1007/s00382-020-05490-1

Keywords

Gcms; RegCM4; South America; Southwestern south Atlantic; Cyclones; Winds; Climate projections

Funding

  1. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior (CAPES)
  2. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq)
  3. PETROBRAS

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In this study, multi-model ensembles are used to understand regional features of future climate trends of cyclones and associated winds in eastern South America. The results show that in the future climate, low-level winds of cyclones will intensify along the coastal areas, while there is a clear downward trend in the number of cyclone genesis.
In this study, multi-model ensembles are used to understand regional features of future climate trends of cyclones and associated winds in eastern South America. For this, we consider three cyclogenetic hot-spot regions located in south-southeastern Brazil, extreme southern Brazil-Uruguay, and southern Argentina, named, respectively, RG1, RG2 and RG3. The multi-model ensembles consist of four RegCM4 downscalings (RegCM4s) nested in three different global circulation models (GCMs) from CMIP5 under RCP8.5 for the period 1979-2100. ERA-Interim, and CFSR provide the reanalyses ensemble. For the present climate (1979-2005), RegCM4s and GCMs simulate the main characteristics of the cyclone's genesis and propagation. There is greater agreement between RegCM4s and reanalyses regarding the magnitude and location of stronger winds associated with intense cyclones starting in RG1 and RG2. An important added value is the greater ability of RegCM4s to capture the observed features (phase and amplitude of the annual cycle, intensity, and near surface winds) of cyclogenesis starting in regions away from the boundary domain, such as in RG1 and RG2. In these regions, RegCM4s present smaller (higher) error (correlation) for the frequency of cyclones than GCMs, which improves the representation of cyclones for the whole southwestern South Atlantic domain. RegCM4s are able to simulate in greater agreement with reanalysis than GCMs, the initially stronger cyclones and associated low level winds. For these intense cyclones in the future climate, an intensification of low-level winds off the coast (south-southeast Brazil and south Argentina) and a shift to the south of the upper-level polar jet are projected. Furthermore, there is a clear trend towards decrease in the number of cyclogeneses in each hot-spot region, indicating that each intense cyclone will be associated with stronger low level winds near the eastern South America coast at the end of the twenty-first century.

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