Increasing warm-season evaporation rates across European lakes under climate change

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Increasing warm-season evaporation rates across European lakes under climate change. / La Fuente, Sofia; Jennings, Eleanor; Lenters, John D. et al.
Yn: Climatic Change, Cyfrol 177, Rhif 12, 28.11.2024.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

HarvardHarvard

La Fuente, S, Jennings, E, Lenters, JD, Verburg, P, Kirillin, G, Shatwell, T, Couture, R-M, Côté, M, Vinnå, CLR & Woolway, RI 2024, 'Increasing warm-season evaporation rates across European lakes under climate change', Climatic Change, cyfrol. 177, rhif 12. https://doi.org/10.1007/s10584-024-03830-2

APA

La Fuente, S., Jennings, E., Lenters, J. D., Verburg, P., Kirillin, G., Shatwell, T., Couture, R.-M., Côté, M., Vinnå, C. L. R., & Woolway, R. I. (2024). Increasing warm-season evaporation rates across European lakes under climate change. Climatic Change, 177(12). Cyhoeddiad ar-lein ymlaen llaw. https://doi.org/10.1007/s10584-024-03830-2

CBE

La Fuente S, Jennings E, Lenters JD, Verburg P, Kirillin G, Shatwell T, Couture R-M, Côté M, Vinnå CLR, Woolway RI. 2024. Increasing warm-season evaporation rates across European lakes under climate change. Climatic Change. 177(12). https://doi.org/10.1007/s10584-024-03830-2

MLA

VancouverVancouver

La Fuente S, Jennings E, Lenters JD, Verburg P, Kirillin G, Shatwell T et al. Increasing warm-season evaporation rates across European lakes under climate change. Climatic Change. 2024 Tach 28;177(12). Epub 2024 Tach 28. doi: 10.1007/s10584-024-03830-2

Author

La Fuente, Sofia ; Jennings, Eleanor ; Lenters, John D. et al. / Increasing warm-season evaporation rates across European lakes under climate change. Yn: Climatic Change. 2024 ; Cyfrol 177, Rhif 12.

RIS

TY - JOUR

T1 - Increasing warm-season evaporation rates across European lakes under climate change

AU - La Fuente, Sofia

AU - Jennings, Eleanor

AU - Lenters, John D.

AU - Verburg, Piet

AU - Kirillin, Georgiy

AU - Shatwell, Tom

AU - Couture, Raoul-Marie

AU - Côté, Marianne

AU - Vinnå, C. Love Råman

AU - Woolway, R. Iestyn

PY - 2024/11/28

Y1 - 2024/11/28

N2 - Lakes represent a vital source of freshwater, accounting for 87% of the Earth’s accessible surface freshwater resources and providing a range of ecosystem services, including water for human consumption. As climate change continues to unfold, understanding the potential evaporative water losses from lakes becomes crucial for effective water management strategies. Here we investigate the impacts of climate change on the evaporation rates of 23 European lakes and reservoirs of varying size during the warm season (July–September). To assess the evaporation trends, we employ a 12-member ensemble of model projections, utilizing three one-dimensional process-based lake models. These lake models were driven by bias-corrected climate simulations from four General Circulation Models (GCMs), considering both a historical (1970–2005) and future (2006–2099) period. Our findings reveal a consistent projection of increased warm-season evaporation across all lakes this century, though the magnitude varies depending on specific factors. By the end of this century (2070–2099), we estimate a 21%, 30% and 42% average increase in evaporation rates in the studied European lakes under RCP (Representative Concentration Pathway) 2.6, 6.0 and 8.5, respectively. Moreover, future projections of the relationship between precipitation (P) and evaporation (E) in the studied lakes, suggest that P-E will decrease this century, likely leading to a deficit in the availability of surface water. The projected increases in evaporation rates underscore the significance of adapting strategic management approaches for European lakes to cope with the far-reaching consequences of climate change.

AB - Lakes represent a vital source of freshwater, accounting for 87% of the Earth’s accessible surface freshwater resources and providing a range of ecosystem services, including water for human consumption. As climate change continues to unfold, understanding the potential evaporative water losses from lakes becomes crucial for effective water management strategies. Here we investigate the impacts of climate change on the evaporation rates of 23 European lakes and reservoirs of varying size during the warm season (July–September). To assess the evaporation trends, we employ a 12-member ensemble of model projections, utilizing three one-dimensional process-based lake models. These lake models were driven by bias-corrected climate simulations from four General Circulation Models (GCMs), considering both a historical (1970–2005) and future (2006–2099) period. Our findings reveal a consistent projection of increased warm-season evaporation across all lakes this century, though the magnitude varies depending on specific factors. By the end of this century (2070–2099), we estimate a 21%, 30% and 42% average increase in evaporation rates in the studied European lakes under RCP (Representative Concentration Pathway) 2.6, 6.0 and 8.5, respectively. Moreover, future projections of the relationship between precipitation (P) and evaporation (E) in the studied lakes, suggest that P-E will decrease this century, likely leading to a deficit in the availability of surface water. The projected increases in evaporation rates underscore the significance of adapting strategic management approaches for European lakes to cope with the far-reaching consequences of climate change.

U2 - 10.1007/s10584-024-03830-2

DO - 10.1007/s10584-024-03830-2

M3 - Article

VL - 177

JO - Climatic Change

JF - Climatic Change

SN - 1573-1480

IS - 12

ER -