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Global Heat Uptake by Inland Waters

  • I. Vanderkelen
  • , N. P.M. van Lipzig
  • , D. M. Lawrence
  • , B. Droppers
  • , M. Golub
  • , S. N. Gosling
  • , A. B.G. Janssen
  • , R. Marcé
  • , H. Müller Schmied
  • , M. Perroud
  • , D. Pierson
  • , Y. Pokhrel
  • , Y. Satoh
  • , J. Schewe
  • , S. I. Seneviratne
  • , V. M. Stepanenko
  • , Z. Tan
  • , R. I. Woolway
  • , W. Thiery
  • Vrije Universiteit Brussel
  • KU Leuven
  • National Center for Atmospheric Research
  • Wageningen University & Research
  • Uppsala University
  • University of Nottingham
  • Catalan Institute for Water Research
  • University of Girona
  • Goethe University Frankfurt
  • Senckenberg Leibniz Biodiversity and Climate Research Centre (SBiK-F)
  • University of Geneva
  • Michigan State University
  • National Institute for Environmental Studies of Japan
  • Potsdam Institute for Climate Impact Research
  • Swiss Federal Institute of Technology Zurich
  • Lomonosov Moscow State University
  • Pacific Northwest National Laboratory
  • Dundalk Institute of Technology

Research output: Contribution to journalArticlepeer-review

51 Scopus citations

Abstract

Heat uptake is a key variable for understanding the Earth system response to greenhouse gas forcing. Despite the importance of this heat budget, heat uptake by inland waters has so far not been quantified. Here we use a unique combination of global-scale lake models, global hydrological models and Earth system models to quantify global heat uptake by natural lakes, reservoirs, and rivers. The total net heat uptake by inland waters amounts to 2.6 ± 3.2 ×1020 J over the period 1900–2020, corresponding to 3.6% of the energy stored on land. The overall uptake is dominated by natural lakes (111.7%), followed by reservoir warming (2.3%). Rivers contribute negatively (-14%) due to a decreasing water volume. The thermal energy of water stored in artificial reservoirs exceeds inland water heat uptake by a factor ∼10.4. This first quantification underlines that the heat uptake by inland waters is relatively small, but non-negligible.

Original languageEnglish
Article numbere2020GL087867
JournalGeophysical Research Letters
Volume47
Issue number12
DOIs
StatePublished - Jun 28 2020
Externally publishedYes

Keywords

  • heat uptake
  • inland waters
  • lakes
  • reservoirs
  • rivers

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