State-of-the-art global models underestimate impacts from climate extremes

Impact models projections are used in integrated assessments of climate change. Here the authors test systematically across many important systems, how well such impact models capture the impacts of extreme climate conditions.

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Autores principales: Jacob Schewe, Simon N. Gosling, Christopher Reyer, Fang Zhao, Philippe Ciais, Joshua Elliott, Louis Francois, Veronika Huber, Heike K. Lotze, Sonia I. Seneviratne, Michelle T. H. van Vliet, Robert Vautard, Yoshihide Wada, Lutz Breuer, Matthias Büchner, David A. Carozza, Jinfeng Chang, Marta Coll, Delphine Deryng, Allard de Wit, Tyler D. Eddy, Christian Folberth, Katja Frieler, Andrew D. Friend, Dieter Gerten, Lukas Gudmundsson, Naota Hanasaki, Akihiko Ito, Nikolay Khabarov, Hyungjun Kim, Peter Lawrence, Catherine Morfopoulos, Christoph Müller, Hannes Müller Schmied, René Orth, Sebastian Ostberg, Yadu Pokhrel, Thomas A. M. Pugh, Gen Sakurai, Yusuke Satoh, Erwin Schmid, Tobias Stacke, Jeroen Steenbeek, Jörg Steinkamp, Qiuhong Tang, Hanqin Tian, Derek P. Tittensor, Jan Volkholz, Xuhui Wang, Lila Warszawski
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/bdb660eae2bf431380e76d34df8b14d8
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spelling oai:doaj.org-article:bdb660eae2bf431380e76d34df8b14d82021-12-02T17:32:25ZState-of-the-art global models underestimate impacts from climate extremes10.1038/s41467-019-08745-62041-1723https://doaj.org/article/bdb660eae2bf431380e76d34df8b14d82019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08745-6https://doaj.org/toc/2041-1723Impact models projections are used in integrated assessments of climate change. Here the authors test systematically across many important systems, how well such impact models capture the impacts of extreme climate conditions.Jacob ScheweSimon N. GoslingChristopher ReyerFang ZhaoPhilippe CiaisJoshua ElliottLouis FrancoisVeronika HuberHeike K. LotzeSonia I. SeneviratneMichelle T. H. van VlietRobert VautardYoshihide WadaLutz BreuerMatthias BüchnerDavid A. CarozzaJinfeng ChangMarta CollDelphine DeryngAllard de WitTyler D. EddyChristian FolberthKatja FrielerAndrew D. FriendDieter GertenLukas GudmundssonNaota HanasakiAkihiko ItoNikolay KhabarovHyungjun KimPeter LawrenceCatherine MorfopoulosChristoph MüllerHannes Müller SchmiedRené OrthSebastian OstbergYadu PokhrelThomas A. M. PughGen SakuraiYusuke SatohErwin SchmidTobias StackeJeroen SteenbeekJörg SteinkampQiuhong TangHanqin TianDerek P. TittensorJan VolkholzXuhui WangLila WarszawskiNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jacob Schewe
Simon N. Gosling
Christopher Reyer
Fang Zhao
Philippe Ciais
Joshua Elliott
Louis Francois
Veronika Huber
Heike K. Lotze
Sonia I. Seneviratne
Michelle T. H. van Vliet
Robert Vautard
Yoshihide Wada
Lutz Breuer
Matthias Büchner
David A. Carozza
Jinfeng Chang
Marta Coll
Delphine Deryng
Allard de Wit
Tyler D. Eddy
Christian Folberth
Katja Frieler
Andrew D. Friend
Dieter Gerten
Lukas Gudmundsson
Naota Hanasaki
Akihiko Ito
Nikolay Khabarov
Hyungjun Kim
Peter Lawrence
Catherine Morfopoulos
Christoph Müller
Hannes Müller Schmied
René Orth
Sebastian Ostberg
Yadu Pokhrel
Thomas A. M. Pugh
Gen Sakurai
Yusuke Satoh
Erwin Schmid
Tobias Stacke
Jeroen Steenbeek
Jörg Steinkamp
Qiuhong Tang
Hanqin Tian
Derek P. Tittensor
Jan Volkholz
Xuhui Wang
Lila Warszawski
State-of-the-art global models underestimate impacts from climate extremes
description Impact models projections are used in integrated assessments of climate change. Here the authors test systematically across many important systems, how well such impact models capture the impacts of extreme climate conditions.
format article
author Jacob Schewe
Simon N. Gosling
Christopher Reyer
Fang Zhao
Philippe Ciais
Joshua Elliott
Louis Francois
Veronika Huber
Heike K. Lotze
Sonia I. Seneviratne
Michelle T. H. van Vliet
Robert Vautard
Yoshihide Wada
Lutz Breuer
Matthias Büchner
David A. Carozza
Jinfeng Chang
Marta Coll
Delphine Deryng
Allard de Wit
Tyler D. Eddy
Christian Folberth
Katja Frieler
Andrew D. Friend
Dieter Gerten
Lukas Gudmundsson
Naota Hanasaki
Akihiko Ito
Nikolay Khabarov
Hyungjun Kim
Peter Lawrence
Catherine Morfopoulos
Christoph Müller
Hannes Müller Schmied
René Orth
Sebastian Ostberg
Yadu Pokhrel
Thomas A. M. Pugh
Gen Sakurai
Yusuke Satoh
Erwin Schmid
Tobias Stacke
Jeroen Steenbeek
Jörg Steinkamp
Qiuhong Tang
Hanqin Tian
Derek P. Tittensor
Jan Volkholz
Xuhui Wang
Lila Warszawski
author_facet Jacob Schewe
Simon N. Gosling
Christopher Reyer
Fang Zhao
Philippe Ciais
Joshua Elliott
Louis Francois
Veronika Huber
Heike K. Lotze
Sonia I. Seneviratne
Michelle T. H. van Vliet
Robert Vautard
Yoshihide Wada
Lutz Breuer
Matthias Büchner
David A. Carozza
Jinfeng Chang
Marta Coll
Delphine Deryng
Allard de Wit
Tyler D. Eddy
Christian Folberth
Katja Frieler
Andrew D. Friend
Dieter Gerten
Lukas Gudmundsson
Naota Hanasaki
Akihiko Ito
Nikolay Khabarov
Hyungjun Kim
Peter Lawrence
Catherine Morfopoulos
Christoph Müller
Hannes Müller Schmied
René Orth
Sebastian Ostberg
Yadu Pokhrel
Thomas A. M. Pugh
Gen Sakurai
Yusuke Satoh
Erwin Schmid
Tobias Stacke
Jeroen Steenbeek
Jörg Steinkamp
Qiuhong Tang
Hanqin Tian
Derek P. Tittensor
Jan Volkholz
Xuhui Wang
Lila Warszawski
author_sort Jacob Schewe
title State-of-the-art global models underestimate impacts from climate extremes
title_short State-of-the-art global models underestimate impacts from climate extremes
title_full State-of-the-art global models underestimate impacts from climate extremes
title_fullStr State-of-the-art global models underestimate impacts from climate extremes
title_full_unstemmed State-of-the-art global models underestimate impacts from climate extremes
title_sort state-of-the-art global models underestimate impacts from climate extremes
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/bdb660eae2bf431380e76d34df8b14d8
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