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  Continental-scale temperature variability in PMIP3 simulations and PAGES 2k regional temperature reconstructions over the past millennium

Bothe, O., Evans, M., Donado, L., Bustamante, E., Gergis, J., Gonzalez-Rouco, J., et al. (2015). Continental-scale temperature variability in PMIP3 simulations and PAGES 2k regional temperature reconstructions over the past millennium. Climate of the Past, 11, 1673-1699. doi:10.5194/cp-11-1673-2015.

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Bothe, Oliver1, Author           
Evans, M., Author
Donado, L.F., Author
Bustamante, E.G., Author
Gergis, J., Author
Gonzalez-Rouco, J.F., Author
Goosse, H., Author
Hegerl, G., Author
Hind, A., Author
Jungclaus, Johann H.2, Author                 
Kaufman, D., Author
Lehner, F., Author
McKay, N., Author
Moberg, A., Author
Raible, C.C., Author
Schurer, A., Author
Shi, F., Author
Smerdon, J.E., Author
Von Gunten, L., Author
Wagner, S., Author
Warren, E., AuthorWidmann, M., AuthorYiou, P., AuthorZorita, E., Author more..
Affiliations:
1Max Planck Fellows, MPI for Meteorology, Max Planck Society, ou_913548              
2Director’s Research Group OES, The Ocean in the Earth System, MPI for Meteorology, Max Planck Society, ou_913553              

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 Abstract: Estimated external radiative forcings, model results, and proxy-based climate reconstructions have been used over the past several decades to improve our understanding of the mechanisms underlying observed climate variability and change over the past millennium. Here, the recent set of temperature reconstructions at the continental-scale generated by the PAGES 2k project and a collection of state-of-the-art model simulations driven by realistic external forcings are jointly analysed. The first aim is to estimate the consistency between model results and reconstructions for each continental-scale region over the time and frequency domains. Secondly, the links between regions are investigated to determine whether reconstructed global-scale covariability patterns are similar to those identified in model simulations. The third aim is to assess the role of external forcings in the observed temperature variations. From a large set of analyses, we conclude that models are in relatively good agreement with temperature reconstructions for Northern Hemisphere regions, particularly in the Arctic. This is likely due to the relatively large amplitude of the externally forced response across northern and high-latitude regions, which results in a clearly detectable signature in both reconstructions and simulations. Conversely, models disagree strongly with the reconstructions in the Southern Hemisphere. Furthermore, the simulations are more regionally coherent than the reconstructions, perhaps due to an underestimation of the magnitude of internal variability in models or to an overestimation of the response to the external forcing in the Southern Hemisphere. Part of the disagreement might also reflect large uncertainties in the reconstructions, specifically in some Southern Hemisphere regions, which are based on fewer palaeoclimate records than in the Northern Hemisphere. © Author(s) 2015.

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Language(s): eng - English
 Dates: 2015-122015-12
 Publication Status: Issued
 Pages: -
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 Rev. Type: Peer
 Identifiers: DOI: 10.5194/cp-11-1673-2015
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Title: Climate of the Past
Source Genre: Journal
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Pages: - Volume / Issue: 11 Sequence Number: - Start / End Page: 1673 - 1699 Identifier: ISSN: 1814-9324