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On the Remote Impacts of Mid-Holocene Saharan Vegetation on South American Hydroclimate: A Modeling IntercomparisonProxy reconstructions from the mid-Holocene (MH: 6,000 years ago) indicate an intensification of the West African Monsoon and a weakening of the South American Monsoon, primarily resulting from orbitally-driven insolation changes. However, model studies that account for MH orbital configurations and greenhouse gas concentrations can only partially reproduce these changes. Most model studies do not account for the remarkable vegetation changes that occurred during the MH, in particular over the Sahara, precluding realistic simulations of the period. Here, we study precipitation changes over northern Africa and South America using four fully coupled global climate models by accounting for the Saharan greening. Incorporating the Green Sahara amplifies orbitally-driven changes over both regions, and leads to an improvement in proxy-model agreement. Our work highlights the local and remote impacts of vegetation and the importance of considering vegetation changes in the Sahara when studying and modeling global climate.
Document ID
20230011770
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
S Tiwari ORCID
(University of Quebec at Montreal Montreal, Quebec, Canada)
R D Ramos ORCID
(Nanyang Technological University Singapore, Singapore)
F S R Pausata ORCID
(University of Quebec at Montreal Montreal, Quebec, Canada)
A N LeGrande ORCID
(Goddard Institute for Space Studies New York, New York, United States)
M L Griffiths ORCID
(William Paterson University Wayne, New Jersey, United States)
H Beltrami ORCID
(St. Francis Xavier University Antigonish, Nova Scotia, Canada)
I Wainer ORCID
(Universidade de São Paulo São Paulo, Brazil)
A de Vernal ORCID
(University of Quebec at Montreal Montreal, Quebec, Canada)
D T Litchmore
(Columbia University New York, New York, United States)
D Chandan ORCID
(University of Toronto Toronto, Ontario, Canada)
W R Peltier ORCID
(University of Toronto Toronto, Ontario, Canada)
C R Tabor ORCID
(University of Connecticut Storrs, Connecticut, United States)
Date Acquired
August 8, 2023
Publication Date
June 27, 2023
Publication Information
Publication: Geophysical Research Letters
Publisher: Wiley Open Access/American Geophysical Union
Volume: 50
Issue: 12
Issue Publication Date: June 28, 2023
ISSN: 0094-8276
e-ISSN: 1944-8007
Subject Category
Meteorology and Climatology
Funding Number(s)
WBS: 509496.02.08.04.24
CONTRACT_GRANT: 80NSSC20M0282
CONTRACT_GRANT: RGPIN-2018-04,981
CONTRACT_GRANT: 2020-NC-268559
CONTRACT_GRANT: CRC 230687
CONTRACT_GRANT: NSERC DG 140576948
CONTRACT_GRANT: 2202999
CONTRACT_GRANT: 1805544
CONTRACT_GRANT: CNPq 300970/2018-8
CONTRACT_GRANT: FAPESP 2019/08,247-1
OTHER: 1804747
OTHER: 1852977
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
Keywords
Paleoclimate modeling
mid-Holocene
green Sahara
land surface feedbacks
northern Africa
South America
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