High Mountain Asia hydropower systems threatened by climate-driven landscape instability

Detalles Bibliográficos
Autores principales: Li, D., Lu, X., Walling, D.E., Zhang, T., Steiner, J. F., Wasson, R. J., Harrison, S., Nepal, Santosh, Nie, Y., Immerzeel, W.W., Shugar, D. H., Koppes, M., Lane, S., Zeng, Z., Sun, X., Yegorov, A., Bolch, T.
Formato: Journal Article
Lenguaje:Inglés
Publicado: Springer 2022
Materias:
Acceso en línea:https://hdl.handle.net/10568/119984
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author Li, D.
Lu, X.
Walling, D.E.
Zhang, T.
Steiner, J. F.
Wasson, R. J.
Harrison, S.
Nepal, Santosh
Nie, Y.
Immerzeel, W.W.
Shugar, D. H.
Koppes, M.
Lane, S.
Zeng, Z.
Sun, X.
Yegorov, A.
Bolch, T.
author_browse Bolch, T.
Harrison, S.
Immerzeel, W.W.
Koppes, M.
Lane, S.
Li, D.
Lu, X.
Nepal, Santosh
Nie, Y.
Shugar, D. H.
Steiner, J. F.
Sun, X.
Walling, D.E.
Wasson, R. J.
Yegorov, A.
Zeng, Z.
Zhang, T.
author_facet Li, D.
Lu, X.
Walling, D.E.
Zhang, T.
Steiner, J. F.
Wasson, R. J.
Harrison, S.
Nepal, Santosh
Nie, Y.
Immerzeel, W.W.
Shugar, D. H.
Koppes, M.
Lane, S.
Zeng, Z.
Sun, X.
Yegorov, A.
Bolch, T.
author_sort Li, D.
collection Repository of Agricultural Research Outputs (CGSpace)
format Journal Article
id CGSpace119984
institution CGIAR Consortium
language Inglés
publishDate 2022
publishDateRange 2022
publishDateSort 2022
publisher Springer
publisherStr Springer
record_format dspace
spelling CGSpace1199842024-09-23T07:02:55Z High Mountain Asia hydropower systems threatened by climate-driven landscape instability Li, D. Lu, X. Walling, D.E. Zhang, T. Steiner, J. F. Wasson, R. J. Harrison, S. Nepal, Santosh Nie, Y. Immerzeel, W.W. Shugar, D. H. Koppes, M. Lane, S. Zeng, Z. Sun, X. Yegorov, A. Bolch, T. hydropower climate change mountains landscape glaciers snowmelt extreme weather events floods rain sediment load erosion resilience dams reservoirs lakes 2022-07 2022-06-30T15:47:10Z 2022-06-30T15:47:10Z Journal Article https://hdl.handle.net/10568/119984 en Limited Access Springer Li, D.; Lu, X.; Walling, D. E.; Zhang, T.; Steiner, J. F.; Wasson, R. J.; Harrison, S.; Nepal, Santosh; Nie, Y.; Immerzeel, W. W.; Shugar, D. H.; Koppes, M.; Lane, S.; Zeng, Z.; Sun, X.; Yegorov, A.; Bolch, T. 2022. High Mountain Asia hydropower systems threatened by climate-driven landscape instability. Nature Geoscience, 15(7):520-530. [doi: https://doi.org/10.1038/s41561-022-00953-y]
spellingShingle hydropower
climate change
mountains
landscape
glaciers
snowmelt
extreme weather events
floods
rain
sediment load
erosion
resilience
dams
reservoirs
lakes
Li, D.
Lu, X.
Walling, D.E.
Zhang, T.
Steiner, J. F.
Wasson, R. J.
Harrison, S.
Nepal, Santosh
Nie, Y.
Immerzeel, W.W.
Shugar, D. H.
Koppes, M.
Lane, S.
Zeng, Z.
Sun, X.
Yegorov, A.
Bolch, T.
High Mountain Asia hydropower systems threatened by climate-driven landscape instability
title High Mountain Asia hydropower systems threatened by climate-driven landscape instability
title_full High Mountain Asia hydropower systems threatened by climate-driven landscape instability
title_fullStr High Mountain Asia hydropower systems threatened by climate-driven landscape instability
title_full_unstemmed High Mountain Asia hydropower systems threatened by climate-driven landscape instability
title_short High Mountain Asia hydropower systems threatened by climate-driven landscape instability
title_sort high mountain asia hydropower systems threatened by climate driven landscape instability
topic hydropower
climate change
mountains
landscape
glaciers
snowmelt
extreme weather events
floods
rain
sediment load
erosion
resilience
dams
reservoirs
lakes
url https://hdl.handle.net/10568/119984
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