Deeper waters are changing less consistently than surface waters in a global analysis of 102 lakes

Rubén Sommaruga, Craig E. Williamson, Gesa A. Weyhenmeyer, Evelyn E. Gaiser, Dag O. Hessen, John M. Mélack, Peter R. Leavitt, Eugene A. Silow, Rita Adrian, Wendel Keller, Dietmar Straile, Benjamin M. Kraemer, David P. Hamilton, Scott N. Higgins, Wim Thiery, Stephen C. Maberly, Rachel M. Pilla, Orlane Anneville, William Colom, Shawn P. Devlin, Martin T. Dokulil, K. David Hambright, Lesley B. Knoll, Fabio Lepori, Martin Luger, Dörthe C. Müller‐Navarra, Donald C. Pierson, David C. Richardson, Michela Rogora, James A. Rusak, Steven Sadro, Nico Salmaso, Martin Schmid, Maxim Timofeyev, Piet Verburg, Émilie Saulnier‐Talbot, Stephanie Melles, Karl E. Havens, Daniel E. Schindler, Sudeep Chandra, Egor Zadereev, Scott F. Girdner, Б. В. Адамович, Jasmine E. Saros, Pierre‐Denis Plisnier, Margaret Dix, Timo Huttula, Hannu Huuskonen, Peter D. F. Isles, Klaus Joehnk, Ian D. Jones, Johanna Korhonen, Helen V. Pislegina, Alon Rimmer, Svetlana V. Shimaraeva, Lewis Sitoki, Kristin E. Strock, Rolf D. Vinebrooke
2020-11-25

SCID:  54.1/zsq4st2a
Abstract Globally, lake surface water temperatures have warmed rapidly relative to air temperatures, but changes in deepwater temperatures and vertical thermal structure are still largely unknown. We have compiled the most comprehensive data set to date of long-term (1970–2009) summertime vertical temperature profiles in lakes across the world to examine trends and drivers of whole-lake vertical thermal structure. We found significant increases in surface water temperatures across lakes at an average rate of + 0.37 °C decade −1 , comparable to changes reported previously for other lakes, and similarly consistent trends of increasing water column stability (+ 0.08 kg m −3 decade −1 ). In contrast, however, deepwater temperature trends showed little change on average (+ 0.06 °C decade −1 ), but had high variability across lakes, with trends in individual lakes ranging from − 0.68 °C decade −1 to + 0.65 °C decade −1 . The variability in deepwater temperature trends was not explained by trends in either surface water temperatures or thermal stability within lakes, and only 8.4% was explained by lake thermal region or local lake characteristics in a random forest analysis. These findings suggest that external drivers beyond our tested lake characteristics are important in explaining long-term trends in thermal structure, such as local to regional climate patterns or additional external anthropogenic influences.
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2020-11-25
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Authors
Rubén Sommaruga
Craig E. Williamson
Gesa A. Weyhenmeyer
Evelyn E. Gaiser
Dag O. Hessen
John M. Mélack
Peter R. Leavitt
Eugene A. Silow
Rita Adrian
Wendel Keller
Dietmar Straile
Benjamin M. Kraemer
David P. Hamilton
Scott N. Higgins
Wim Thiery
Stephen C. Maberly
Rachel M. Pilla
Orlane Anneville
William Colom
Shawn P. Devlin
Martin T. Dokulil
K. David Hambright
Lesley B. Knoll
Fabio Lepori
Martin Luger
Dörthe C. Müller‐Navarra
Donald C. Pierson
David C. Richardson
Michela Rogora
James A. Rusak
Steven Sadro
Nico Salmaso
Martin Schmid
Maxim Timofeyev
Piet Verburg
Émilie Saulnier‐Talbot
Stephanie Melles
Karl E. Havens
Daniel E. Schindler
Sudeep Chandra
Egor Zadereev
Scott F. Girdner
Б. В. Адамович
Jasmine E. Saros
Pierre‐Denis Plisnier
Margaret Dix
Timo Huttula
Hannu Huuskonen
Peter D. F. Isles
Klaus Joehnk
Ian D. Jones
Johanna Korhonen
Helen V. Pislegina
Alon Rimmer
Svetlana V. Shimaraeva
Lewis Sitoki
Kristin E. Strock
Rolf D. Vinebrooke
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