Changes in rainfall seasonality in the tropics

Author:  ["Xue Feng","Amilcare Porporato","Ignacio Rodriguez-Iturbe"]

Publication:  Nature Climate Change

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Tags:     Climate environment

Abstract

Climate change is altering the seasonal distribution, interannual variability and overall magnitude of precipitation. A new global measure of precipitation seasonality is proposed, and application of this method to observations from the tropics shows that increases in variability were accompanied by shifts in seasonal magnitude, timing and duration. Climate change has altered not only the overall magnitude of rainfall but also its seasonal distribution and interannual variability worldwide1,2,3. Such changes in the rainfall regimes will be most keenly felt in arid and semiarid regions4, where water availability and timing are key factors controlling biogeochemical cycles5, primary productivity6,7, and the phenology of growth and reproduction8,9,10, while also regulating agricultural production11. Nevertheless, a comprehensive framework to understand the complex seasonal rainfall regimes across multiple timescales is still lacking. Here, we formulate a global measure of seasonality, which captures the effects of both magnitude and concentration of the rainy season, and use it to identify regions across the tropics with highly seasonal rainfall regimes. By further decomposing rainfall seasonality into its magnitude, timing and duration components, we find increases in the interannual variability of seasonality over many parts of the dry tropics, implying increasing uncertainty in the intensity, arrival and duration of seasonal rainfall over the past century. We show that such increases in rainfall variability were accompanied by shifts in its seasonal magnitude, timing and duration, thus underscoring the importance of analysing seasonal rainfall regimes in a context that is most relevant to local ecological and social processes.

Cite this article

Feng, X., Porporato, A. & Rodriguez-Iturbe, I. Changes in rainfall seasonality in the tropics. Nature Clim Change 3, 811–815 (2013). https://doi.org/10.1038/nclimate1907

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