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Evaluating the Large-Scale Hydrological Cycle Response within the Pliocene Model Intercomparison Project Phase 2 (PlioMIP2) EnsembleThe mid-Pliocene (∼3 Ma) is one of the most recent warm periods with high CO2 concentrations in the atmosphere and resulting high temperatures, and it is often cited as an analog for near-term future climate change. Here, we apply a moisture budget analysis to investigate the response of the large-scale hydrological cycle at low latitudes within a 13-model ensemble from the Pliocene Model Intercomparison Project Phase 2 (PlioMIP2). The results show that increased atmospheric moisture content within the mid-Pliocene ensemble (due to the thermodynamic effect) results in wetter conditions over the deep tropics, i.e., the Pacific intertropical convergence zone (ITCZ) and the Maritime Continent, and drier conditions over the subtropics. Note that the dynamic effect plays a more important role than the thermodynamic effect in regional precipitation minus evaporation (PmE) changes (i.e., northward ITCZ shift and wetter northern Indian Ocean). The thermodynamic effect is offset to some extent by a dynamic effect involving a northward shift of the Hadley circulation that dries the deep tropics and moistens the subtropics in the Northern Hemisphere (i.e., the subtropical Pacific). From the perspective of Earth's energy budget, the enhanced southward cross-equatorial atmospheric transport (0.22 PW), induced by the hemispheric asymmetries of the atmospheric energy, favors an approximately 1∘ northward shift of the ITCZ. The shift of the ITCZ reorganizes atmospheric circulation, favoring a northward shift of the Hadley circulation. In addition, the Walker circulation consistently shifts westward within PlioMIP2 models, leading to wetter conditions over the northern Indian Ocean. The PlioMIP2 ensemble highlights that an imbalance of interhemispheric atmospheric energy during the mid-Pliocene could have led to changes in the dynamic effect, offsetting the thermodynamic effect and, hence, altering mid-Pliocene hydroclimate.
Document ID
20210026026
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Zixuan Han
(Hohai University Nanjing, China)
Qiong Zhang ORCID
(Bolin Centre for Climate Research Stockholm, Sweden)
Qiang Li ORCID
(Stockholm University Stockholm, Sweden)
Ran Feng ORCID
(Storrs Library Longmeadow, Massachusetts, United States)
Alan M Haywood
(University of Leeds Leeds, United Kingdom)
Julia C Tindall
(University of Leeds Leeds, United Kingdom)
Stephen J Hunter ORCID
(University of Leeds Leeds, United Kingdom)
Bette L Otto-Bliesner ORCID
(National Center for Atmospheric Research Boulder, Colorado, United States)
Esther C Brady ORCID
(National Center for Atmospheric Research Boulder, Colorado, United States)
Nan Rosenbloom ORCID
(National Center for Atmospheric Research Boulder, Colorado, United States)
Zhongshi Zhang ORCID
(University of Bergen Bergen, Hordaland, Norway)
Xiangyu Li ORCID
(China University of Geosciences Wuhan, China)
Chuncheng Guo ORCID
(Norwegian Centre for Research Data Bergen, Norway)
Kerim H Nisancioglu ORCID
(University of Bergen Bergen, Hordaland, Norway)
Christian Stepanek ORCID
(Alfred Wegener Institute for Polar and Marine Research Bremerhaven, Germany)
Gerrit Lohmann ORCID
(Alfred Wegener Institute for Polar and Marine Research Bremerhaven, Germany)
Linda E Sohl
(Columbia University New York, New York, United States)
Mark A Chandler
(Columbia University New York, New York, United States)
Ning Tan
(Chinese Academy of Sciences Beijing, Beijing, China)
Gilles Ramstein
(University of Paris-Saclay Gif-sur-Yvette, France)
Michiel L J Baatsen ORCID
(Utrecht University Utrecht, Utrecht, Netherlands)
Anna S von der Heydt ORCID
(Utrecht University Utrecht, Utrecht, Netherlands)
Deepak Chandan ORCID
(University of Toronto Toronto, Ontario, Canada)
W Richard Peltier ORCID
(University of Toronto Toronto, Ontario, Canada)
Charles J R Williams ORCID
(University of Bristol Bristol, United Kingdom)
Daniel J Lunt ORCID
(University of Bristol Bristol, United Kingdom)
Jianbo Cheng
(Yancheng Institute of Technology Yancheng, China)
Qin Wen
(Nanjing Normal University Nanjing, China)
Natalie J Burls ORCID
(George Mason University Fairfax, Virginia, United States)
Date Acquired
December 18, 2021
Publication Date
December 8, 2021
Publication Information
Publication: Climate of the Past
Publisher: European Geosciences Union
Volume: 17
Issue: 6
Issue Publication Date: November 1, 2021
ISSN: 1814-9324
e-ISSN: 1814-9332
Subject Category
Meteorology And Climatology
Funding Number(s)
CONTRACT_GRANT: 80NSSC20M0282
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
Keywords
mid-Pliocene
large-scale hydrological cycle
Pliocene Model Intercomparison Project Phase 2 (PlioMIP2)
atmospheric moisture content
interhemispheric atmospheric energy
interhemispheric atmospheric energy
mid-Pliocene hydroclimate cycling
Pacific Walker circulation
northern Indian Ocean
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