Modeling lakes and reservoirs in the climate system

Моделирование озёр и водохранилищ в климатической системе
Murray Mackay, Patrick J. Neale, C. D. Arp, Lisette N. de Senerpont Domis, Xing Fang, Gideon Gal, Klaus Jöhnk, Georgiy Kirillin, John D. Lenters, Elena Litchman, Sally MacIntyre, Philip Marsh, John M. Mélack, Wolf M. Mooij, Frank Peeters, Antonio Quesada, S. Geoffrey Schladow, Martin Schmid, Christopher Spence, S. L. Stokesr
2009-11-01

atmosphere–land surface–lake interactionsfreshwater biogeochemical processesfully coupled climate modelslake–climate modelingsubgrid-scale lakes
Modeling studies examining the effect of lakes on regional and global climate, as well as studies on the influence of climate variability and change on aquatic ecosystems, are surveyed. Fully coupled atmosphere‐land surface‐lake climate models that could be used for both of these types of study simultaneously do not presently exist, though there are many applications that would benefit from such models. It is argued here that current understanding of physical and biogeochemical processes in freshwater systems is sufficient to begin to construct such models, and a path forward is proposed. The largest impediment to fully representing lakes in the climate system lies in the handling of lakes that are too small to be explicitly resolved by the climate model, and that make up the majority of the lake‐covered area at the resolutions currently used by global and regional climate models. Ongoing development within the hydrological sciences community and continual improvements in model resolution should help ameliorate this issue.
1
Advances in hydrological modeling and increasing climate-model resolution are expected to reduce the subgrid-scale lake representation problem.
2
Existing knowledge of freshwater physical and biogeochemical processes is considered sufficient to begin constructing fully coupled lake–climate models.
3
Fully coupled atmosphere–land surface–lake climate models integrating both directions of interaction do not currently exist, despite broad potential applications.
4
Lake effects on regional and global climate, and climate impacts on aquatic ecosystems, have been investigated largely in separate modeling studies.
5
The primary modeling challenge is representing subgrid-scale lakes, which constitute most lake-covered area at current global and regional climate-model resolutions.

lakes and reservoirs in the climate system

their effects on regional and global climate and the influence of climate variability and change on aquatic ecosystems, including the representation of physical and biogeochemical processes in coupled climate models

Publication Details
Publication Date
2009-11-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Murray Mackay
Patrick J. Neale
C. D. Arp
Lisette N. de Senerpont Domis
Xing Fang
Gideon Gal
Klaus Jöhnk
Georgiy Kirillin
John D. Lenters
Elena Litchman
Sally MacIntyre
Philip Marsh
John M. Mélack
Wolf M. Mooij
Frank Peeters
Antonio Quesada
S. Geoffrey Schladow
Martin Schmid
Christopher Spence
S. L. Stokesr
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%