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Streamflow response to increasing precipitation extremes altered by forest management

Formally Refereed
Authors: Charlene N. Kelly, Kevin J. McGuire, Chelcy Ford Miniat, James M. Vose
Year: 2016
Type: Scientific Journal
Station: Southern Research Station
DOI: https://doi.org/10.1002/2016GL068058
Source: Geophysical Research Letters

Abstract

Increases in extreme precipitation events of floods and droughts are expected to occur worldwide. The increase in extreme events will result in changes in streamflow that are expected to affect water availability for human consumption and aquatic ecosystem function. We present an analysis that may greatly improve current streamflow models by quantifying the impact of the interaction between forest management and precipitation. We use daily long-term data from paired watersheds that have undergone forest harvest or species conversion. We find that interactive effects of climate change, represented by changes in observed precipitation trends, and forest management regime, significantly alter expected streamflow most often during extreme events, ranging from a decrease of 59% to an increase of 40% in streamflow, depending upon management. Our results suggest that vegetation might be managed to compensate for hydrologic responses due to climate change to help mitigate effects of extreme changes in precipitation.

Citation

Kelly, Charlene N.; McGuire, Kevin J.; Miniat, Chelcy Ford; Vose, James M. 2016. Streamflow response to increasing precipitation extremes altered by forest management. Geophysical Research Letters, Vol. 43(8): 10 pages.: 3727-3736.
Citations
https://www.fs.usda.gov/research/treesearch/52749