Volume 38, Issue 2
Short Communication

Contrasting patterns of the extreme drought episodes of 2005, 2010 and 2015 in the Amazon Basin

Jéssica S. Panisset

Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Brazil

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Renata Libonati

Corresponding Author

E-mail address: renata.libonati@igeo.ufrj.br

Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Brazil

Correspondence to: R. Libonati, Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Av. Athos da Silveira Ramos, 274, Bl. G, Cidade Universitária, 21941‐916, Rio de Janeiro, RJ, Brazil. E‐mail: renata.libonati@igeo.ufrj.brSearch for more papers by this author
Célia Marina P. Gouveia

Instituto Dom Luiz, Faculdade de Ciências da Universidade de Lisboa, Portugal

Instituto Português do Mar e da Atmosfera, Lisbon, Portugal

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Fausto Machado‐Silva

Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Brazil

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Daniela A. França

Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Brazil

Centro de Previsão de Tempo e Estudos Climáticos, Instituto Nacional de Pesquisas Espaciais, São José dos Campos, Brazil

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José Ricardo A. França

Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Brazil

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Leonardo F. Peres

Departamento de Meteorologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Brazil

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First published: 08 August 2017
Citations: 26

Abstract

Future climate scenarios point to an increase in the frequency of extreme droughts events, even in humid biomes. Throughout the 21st century, large areas of the Amazon basin experienced the most severe droughts ever recorded with special emphasis on the 2005 and 2010 events due to their severity and extent. Currently, there is an increased demand to understand the geographic extent and seasonal variability of climate variables during drought events, especially with respect to the social and environmental impacts. In this study, we aim to compare the observed climate conditions during the drought episodes of 2005, 2010 and 2015. We perform a detailed assessment of the measured precipitation, land‐surface temperature (LST) and solar radiation anomalies. We provide evidence that the anomalous precipitation deficit during 2015 exceeded the amplitude and spatial extent of the previous events, affecting more than 80% of Amazon basin, particularly the eastern portion. The pronounced lack of rainfall availability during late spring and early summer, coincident with radiation and temperature surpluses during these years are significant and notable. Changed meteorological spatial patterns were observed, with precipitation and radiation being the most prominent parameters in 2005, whereas precipitation and LST were most relevant in 2010. Understanding the behaviour and interactions of pertinent meteorological variables, as well as identifying similar or divergent patterns over the region during distinct extreme events, is essential for the improvement of our knowledge of Amazon forest vulnerability to climate fluctuation changes.

Number of times cited according to CrossRef: 26

  • Drought and fires influence the respiratory diseases hospitalizations in the Amazon, Ecological Indicators, 10.1016/j.ecolind.2019.105817, 109, (105817), (2020).
  • Anthropogenic and climatic influences in the swamp environment of the Pandeiros River basin, Minas Gerais-Brazil, Environmental Monitoring and Assessment, 10.1007/s10661-020-8192-7, 192, 4, (2020).
  • Spatially explicit modeling of land use and land cover in the State of Rio de Janeiro-Brazil, Remote Sensing Applications: Society and Environment, 10.1016/j.rsase.2020.100303, (100303), (2020).
  • The roles of NDVI and Land Surface Temperature when using the Vegetation Health Index over dry regions, Global and Planetary Change, 10.1016/j.gloplacha.2020.103198, (103198), (2020).
  • Assessment of ECMWF SEAS5 Seasonal Forecast Performance over South America, Weather and Forecasting, 10.1175/WAF-D-19-0106.1, 35, 2, (561-584), (2020).
  • Drought resistance increases from the individual to the ecosystem level in highly diverse Neotropical rainforest: a meta-analysis of leaf, tree and ecosystem responses to drought, Biogeosciences, 10.5194/bg-17-2621-2020, 17, 9, (2621-2645), (2020).
  • Terrestrial water storage and Pacific SST affect the monthly water balance of Itacaiúnas River Basin (Eastern Amazonia), International Journal of Climatology, 10.1002/joc.6380, 40, 6, (3021-3035), (2019).
  • Impacts of the 1.5 °C global warming target on future burned area in the Brazilian Cerrado, Forest Ecology and Management, 10.1016/j.foreco.2019.05.047, 446, (193-203), (2019).
  • Characterizing the atmospheric conditions during the 2010 heatwave in Rio de Janeiro marked by excessive mortality rates, Science of The Total Environment, 10.1016/j.scitotenv.2018.09.060, 650, (796-808), (2019).
  • Effects of Light Component and Water Stress on Photosynthesis of Amazon Rainforests During the 2015/2016 El Niño Drought, Journal of Geophysical Research: Biogeosciences, 10.1029/2018JG004988, 124, 6, (1574-1590), (2019).
  • Spatiotemporal Variations of Riverine Discharge Within the Amazon Basin During the Late Holocene Coincide With Extratropical Temperature Anomalies, Geophysical Research Letters, 10.1029/2019GL082936, 46, 15, (9013-9022), (2019).
  • Rainfall variability in the Brazilian northeast biomes and their interactions with meteorological systems and ENSO via CHELSA product, Big Earth Data, 10.1080/20964471.2019.1692298, 3, 4, (315-337), (2019).
  • Past and future assessment of vegetation activity for the state of Amazonas-Brazil, Remote Sensing Applications: Society and Environment, 10.1016/j.rsase.2019.100278, (100278), (2019).
  • Fire dynamics in extreme climatic events in western amazon, Environmental Development, 10.1016/j.envdev.2019.06.005, (2019).
  • Spatial and Temporal Variations in Aboveground Woody Carbon Storage for Cerrado Forests and Woodlands of Mato Grosso, Brazil, Journal of Geophysical Research: Biogeosciences, 10.1029/2019JG005201, 124, 11, (3252-3268), (2019).
  • Fire Responses to the 2010 and 2015/2016 Amazonian Droughts, Frontiers in Earth Science, 10.3389/feart.2019.00097, 7, (2019).
  • Improving the LPJmL4-SPITFIRE vegetation–fire model for South America using satellite data, Geoscientific Model Development, 10.5194/gmd-12-5029-2019, 12, 12, (5029-5054), (2019).
  • Biomass burning and carbon monoxide patterns in Brazil during the extreme drought years of 2005, 2010, and 2015, Environmental Pollution, 10.1016/j.envpol.2018.09.022, 243, (1008-1014), (2018).
  • The impact of the 2015/2016 El Niño on global photosynthesis using satellite remote sensing, Philosophical Transactions of the Royal Society B: Biological Sciences, 10.1098/rstb.2017.0409, 373, 1760, (20170409), (2018).
  • Vulnerability of Amazonian forests to repeated droughts, Philosophical Transactions of the Royal Society B: Biological Sciences, 10.1098/rstb.2017.0411, 373, 1760, (20170411), (2018).
  • Spatio-temporal patterns of thermal anomalies and drought over tropical forests driven by recent extreme climatic anomalies, Philosophical Transactions of the Royal Society B: Biological Sciences, 10.1098/rstb.2017.0300, 373, 1760, (20170300), (2018).
  • ENSO effects on the transpiration of eastern Amazon trees, Philosophical Transactions of the Royal Society B: Biological Sciences, 10.1098/rstb.2018.0085, 373, 1760, (20180085), (2018).
  • Extreme Drought Events over the Amazon Basin: The Perspective from the Reconstruction of South American Hydroclimate, Water, 10.3390/w10111594, 10, 11, (1594), (2018).
  • Droughts Over Amazonia in 2005, 2010, and 2015: A Cloud Cover Perspective, Frontiers in Earth Science, 10.3389/feart.2018.00227, 6, (2018).
  • Contrasting North–South changes in Amazon wet-day and dry-day frequency and related atmospheric features (1981–2017), Climate Dynamics, 10.1007/s00382-018-4462-2, (2018).
  • Changes in Climate and Land Use Over the Amazon Region: Current and Future Variability and Trends, Frontiers in Earth Science, 10.3389/feart.2018.00228, 6, (2018).