Understanding multidecadal climate changes

The 2012 National Taiwan University International Science Conference on Climate Change focused on two of the most difficult challenges in the study of climate change. The 23 invited reviews at the conference were presented in hour-long segments, each beginning with a lecture and followed by discussi...

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Main Authors: Chang, CP, Ghil, M, Kuo, HC, Latif, M, Sui, CH, Wallace, JM
Format: Article in Journal/Newspaper
Language:unknown
Published: eScholarship, University of California 2014
Subjects:
Online Access:https://escholarship.org/uc/item/69c684rd
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spelling ftcdlib:oai:escholarship.org/ark:/13030/qt69c684rd 2023-05-15T17:32:20+02:00 Understanding multidecadal climate changes Chang, CP Ghil, M Kuo, HC Latif, M Sui, CH Wallace, JM 293 - 296 2014-01-01 application/pdf https://escholarship.org/uc/item/69c684rd unknown eScholarship, University of California qt69c684rd https://escholarship.org/uc/item/69c684rd public Bulletin of the American Meteorological Society, vol 95, iss 2 Meteorology & Atmospheric Sciences Astronomical and Space Sciences Atmospheric Sciences Physical Geography and Environmental Geoscience article 2014 ftcdlib 2020-03-20T23:55:48Z The 2012 National Taiwan University International Science Conference on Climate Change focused on two of the most difficult challenges in the study of climate change. The 23 invited reviews at the conference were presented in hour-long segments, each beginning with a lecture and followed by discussion. These reviews were augmented by 20 contributed oral and poster papers. The AMOC fingerprints described at the meeting may be used for reconstructing AMOC variations in the past and monitoring AMOC variations in the future. Modeling studies indicate that the AMOC weakens most at northern high latitudes in response to increasing greenhouse gas concentrations. The number, intensity, tracks, and landfall locations of WNP TCs also exhibit strong decadal or multidecadal variations. When adjusted for likely missed TCs, the observational record does not show evidence of a significant secular trend in North Atlantic hurricane activity. Article in Journal/Newspaper North Atlantic University of California: eScholarship
institution Open Polar
collection University of California: eScholarship
op_collection_id ftcdlib
language unknown
topic Meteorology & Atmospheric Sciences
Astronomical and Space Sciences
Atmospheric Sciences
Physical Geography and Environmental Geoscience
spellingShingle Meteorology & Atmospheric Sciences
Astronomical and Space Sciences
Atmospheric Sciences
Physical Geography and Environmental Geoscience
Chang, CP
Ghil, M
Kuo, HC
Latif, M
Sui, CH
Wallace, JM
Understanding multidecadal climate changes
topic_facet Meteorology & Atmospheric Sciences
Astronomical and Space Sciences
Atmospheric Sciences
Physical Geography and Environmental Geoscience
description The 2012 National Taiwan University International Science Conference on Climate Change focused on two of the most difficult challenges in the study of climate change. The 23 invited reviews at the conference were presented in hour-long segments, each beginning with a lecture and followed by discussion. These reviews were augmented by 20 contributed oral and poster papers. The AMOC fingerprints described at the meeting may be used for reconstructing AMOC variations in the past and monitoring AMOC variations in the future. Modeling studies indicate that the AMOC weakens most at northern high latitudes in response to increasing greenhouse gas concentrations. The number, intensity, tracks, and landfall locations of WNP TCs also exhibit strong decadal or multidecadal variations. When adjusted for likely missed TCs, the observational record does not show evidence of a significant secular trend in North Atlantic hurricane activity.
format Article in Journal/Newspaper
author Chang, CP
Ghil, M
Kuo, HC
Latif, M
Sui, CH
Wallace, JM
author_facet Chang, CP
Ghil, M
Kuo, HC
Latif, M
Sui, CH
Wallace, JM
author_sort Chang, CP
title Understanding multidecadal climate changes
title_short Understanding multidecadal climate changes
title_full Understanding multidecadal climate changes
title_fullStr Understanding multidecadal climate changes
title_full_unstemmed Understanding multidecadal climate changes
title_sort understanding multidecadal climate changes
publisher eScholarship, University of California
publishDate 2014
url https://escholarship.org/uc/item/69c684rd
op_coverage 293 - 296
genre North Atlantic
genre_facet North Atlantic
op_source Bulletin of the American Meteorological Society, vol 95, iss 2
op_relation qt69c684rd
https://escholarship.org/uc/item/69c684rd
op_rights public
_version_ 1766130387485982720