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Pacific origin of the abrupt increase in Indian Ocean heat content during the warming hiatus. [and Supplementary Information]

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Author
Lee, Sang-Ki
Park, Wonsun
Baringer, Molly O.
Gordon, Arnold L.
Huber, Bruce
Liu, Yanyun
Date
2015

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Abstract
Global mean surface warming has stalled since the end of the twentieth century1,2, but the net radiation imbalance at the top of the atmosphere continues to suggest an increasingly warming planet. This apparent contradiction has been reconciled by an anomalous heat flux into the ocean3–8, induced by a shift towards a La Niña-like state with cold sea surface temperatures in the eastern tropical Pacific over the past decade or so. A significant portion of the heat missing fromthe atmosphere is therefore expected to be stored in the Pacific Ocean. However, in situ hydrographic records indicate that Pacific Ocean heat content has been decreasing9. Here, we analyse observations along with simulations from a global ocean–sea ice model to track the pathway of heat. We find that the enhanced heat uptake by the Pacific Ocean has been compensated by an increased heat transport from the Pacific Ocean to the Indian Ocean, carried by the Indonesian throughflow. As a result, Indian Ocean heat content has increased abruptly, which accounts for more than 70% of the global ocean heat gain in the upper 700m during the past decade. We conclude that the Indian Ocean has become increasingly important in modulating global climate variability.
Journal
Nature Geoscience
Volume
8
Page Range
pp.445-449
Series : Nr
IIOE2-DOC-AR_63; IIO2-DOC_AR_64 (Suppl Info)
DOI
10.1038/NGEO2438
Resource/Dataset Location
http://www.iioe-2.incois.gov.in/IIOE-2/Publications.jsp?mode_pub_id=AR
URI
http://hdl.handle.net/1834/9681
ae974a485f413a2113503eed53cd6c53
10.1038/NGEO2438
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Articles (in Journals, Reports etc) (IIOE-2)

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