The DeepMIP contribution to PMIP4: methodologies for selection, compilation and analysis of latest Paleocene and early Eocene climate proxy data, incorporating version 0.1 of the DeepMIP database.

Hollis, Christopher, Dunkley Jones, Tom, Anagnostou, Eleni , Bijl, Peter, Cramwinckel, Margot, Cui, Ying, Dickens, Gerald, Edgar, Kirsty, Eley, Yvette, Evans, David, Foster, Gavin, Joost, Frieling, Inglis, Gordon, Kozdon, Reinhard, Lauretano, Vittoria, Lear, Caroline, Littler, Kate, Meckler, Nele, David, B, Naafs, A, Pälike, Heiko, Pancost, Richard, Pearson, Paul, Royer, Dana, Salzmann, Ulrich, Schubert, Brian, Seebeck, Hannu, Sluijs, Appy, Speijer, Robert, Stassen, Peter and Tierney, Jessica (2019) The DeepMIP contribution to PMIP4: methodologies for selection, compilation and analysis of latest Paleocene and early Eocene climate proxy data, incorporating version 0.1 of the DeepMIP database. Open Access Geoscientific Model Development, 12 (7). pp. 3149-3206. DOI 10.5194/gmd-12-3149-2019.

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Abstract

The early Eocene (56 to 48 million years ago) is inferred to have been the most recent time that Earth's atmospheric CO2 concentrations exceeded 1000 ppm. Global mean temperatures were also substantially warmer than present day. As such, study of early Eocene climate provides insight into how a super-warm Earth system behaves and offers an opportunity to 10 evaluate climate models under conditions of high greenhouse gas forcing. The Deep Time Model Intercomparison Project (DeepMIP) is a systematic model-model and model-data intercomparison of three early Paleogene time slices: latest Paleocene, Paleocene-Eocene thermal maximum and early Eocene climatic optimum. A previous article outlined the model experimental design for climate model simulations. In this article, we outline the methodologies to be used for the compilation and analysis of climate proxy data, primarily proxies for temperature and CO2. This paper establishes the protocols for a concerted and 15 coordinated effort to compile the climate proxy records across a wide geographic range. The resulting climate "atlas" will be used to constrain and evaluate climate models for the three selected time intervals, and provide insights into the mechanisms that control these warm climate states. We provide version 0.1 of this database, in anticipation that this will be expanded in subsequent publications.

Document Type: Article
Keywords: DeepMIP, PMIP4, Paleocene, Eocene, proxy data, database
Research affiliation: MARUM
OceanRep > GEOMAR > FB1 Ocean Circulation and Climate Dynamics > FB1-P-OZ Paleo-Oceanography
NIOZ
NOC
Refereed: Yes
Open Access Journal?: Yes
Publisher: Copernicus Publications (EGU)
Projects: DeepMIP
Date Deposited: 01 Feb 2019 10:06
Last Modified: 31 Jan 2022 09:18
URI: https://oceanrep.geomar.de/id/eprint/45467

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