Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum

Changes in tropical atmospheric heat and circulation patterns, as well as the effects of sea surface temperature (SST) of the western Pacific during the Last Glacial Maximum (LGM), have been investigated using a climate model and the LGM SST compiled by Wang [1999] . The annual mean LGM SST was 2°–4...

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Published in:Journal of Geophysical Research
Main Authors: Zhao, P., Zhou, X., Jian, Z., Sparrow, M., Han, Y.
Format: Article in Journal/Newspaper
Language:unknown
Published: 2004
Subjects:
Online Access:https://eprints.soton.ac.uk/11057/
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spelling ftsouthampton:oai:eprints.soton.ac.uk:11057 2023-07-30T04:01:37+02:00 Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum Zhao, P. Zhou, X. Jian, Z. Sparrow, M. Han, Y. 2004 https://eprints.soton.ac.uk/11057/ unknown Zhao, P., Zhou, X., Jian, Z., Sparrow, M. and Han, Y. (2004) Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum. Journal of Geophysical Research, 109 (D8). (doi:10.1029/2003JD004095 <http://dx.doi.org/10.1029/2003JD004095>). Article PeerReviewed 2004 ftsouthampton https://doi.org/10.1029/2003JD004095 2023-07-09T20:31:11Z Changes in tropical atmospheric heat and circulation patterns, as well as the effects of sea surface temperature (SST) of the western Pacific during the Last Glacial Maximum (LGM), have been investigated using a climate model and the LGM SST compiled by Wang [1999] . The annual mean LGM SST was 2°–4°C lower than the present day in the tropical western Pacific west of 140°E. Simulations show that the largest decrease of atmospheric heat occurs in the tropics in a region stretching from the Bay of Bengal to the central Pacific Ocean, while there are no significant changes in atmospheric heat at higher latitudes. This indicates that the atmospheric heat in the tropics shows a stronger response to boundary changes between the LGM and the present day than it does at higher latitudes, since the tropical convection amplifies the response of the atmosphere in the former case. Because of this tropical heat change, the Walker circulation, the transverse monsoon, and the east Asian summer monsoon at the LGM were weaker than they are at present. The model with the Wang [1999] LGM SST simulated large changes in atmospheric circulation in the tropics and high northern latitudes compared to the Climate, Long-Range Investigation, Mapping and Prediction (CLIMAP) [ CLIMAP Project Members, 1981 ] project's reconstruction. The Wang [1999] LGM SST was also associated with a lower surface air temperature (SAT) at high northern latitudes and the Arctic and with a cooler temperature of the coldest month in Europe. The annual mean SAT decreased by 2°C in the Arctic, and the winter mean SAT decreased by 4°C in Europe. Article in Journal/Newspaper Arctic University of Southampton: e-Prints Soton Arctic Pacific Journal of Geophysical Research 109 D8
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language unknown
description Changes in tropical atmospheric heat and circulation patterns, as well as the effects of sea surface temperature (SST) of the western Pacific during the Last Glacial Maximum (LGM), have been investigated using a climate model and the LGM SST compiled by Wang [1999] . The annual mean LGM SST was 2°–4°C lower than the present day in the tropical western Pacific west of 140°E. Simulations show that the largest decrease of atmospheric heat occurs in the tropics in a region stretching from the Bay of Bengal to the central Pacific Ocean, while there are no significant changes in atmospheric heat at higher latitudes. This indicates that the atmospheric heat in the tropics shows a stronger response to boundary changes between the LGM and the present day than it does at higher latitudes, since the tropical convection amplifies the response of the atmosphere in the former case. Because of this tropical heat change, the Walker circulation, the transverse monsoon, and the east Asian summer monsoon at the LGM were weaker than they are at present. The model with the Wang [1999] LGM SST simulated large changes in atmospheric circulation in the tropics and high northern latitudes compared to the Climate, Long-Range Investigation, Mapping and Prediction (CLIMAP) [ CLIMAP Project Members, 1981 ] project's reconstruction. The Wang [1999] LGM SST was also associated with a lower surface air temperature (SAT) at high northern latitudes and the Arctic and with a cooler temperature of the coldest month in Europe. The annual mean SAT decreased by 2°C in the Arctic, and the winter mean SAT decreased by 4°C in Europe.
format Article in Journal/Newspaper
author Zhao, P.
Zhou, X.
Jian, Z.
Sparrow, M.
Han, Y.
spellingShingle Zhao, P.
Zhou, X.
Jian, Z.
Sparrow, M.
Han, Y.
Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum
author_facet Zhao, P.
Zhou, X.
Jian, Z.
Sparrow, M.
Han, Y.
author_sort Zhao, P.
title Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum
title_short Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum
title_full Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum
title_fullStr Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum
title_full_unstemmed Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum
title_sort modelling the tropical climate and the impact of western pacific sea surface temperature during the last glacial maximum
publishDate 2004
url https://eprints.soton.ac.uk/11057/
geographic Arctic
Pacific
geographic_facet Arctic
Pacific
genre Arctic
genre_facet Arctic
op_relation Zhao, P., Zhou, X., Jian, Z., Sparrow, M. and Han, Y. (2004) Modelling the tropical climate and the impact of western Pacific sea surface temperature during the Last Glacial Maximum. Journal of Geophysical Research, 109 (D8). (doi:10.1029/2003JD004095 <http://dx.doi.org/10.1029/2003JD004095>).
op_doi https://doi.org/10.1029/2003JD004095
container_title Journal of Geophysical Research
container_volume 109
container_issue D8
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