Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM

Six recurrent thermal regimes are identified over continental North America from June to September through a k-means clustering applied to daily maximum temperature simulated by ECHAM5 forced by his- torical SSTs for 1930–2013 and validated using NCEP–DOE AMIP-II reanalysis over the 1980–2009 period...

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Main Authors: Vigaud, Nicolas, Ting, Mingfang, Lee, Dong Eun, Barnston, Anthony G., Kushnir, Yochanan
Format: Article in Journal/Newspaper
Language:English
Published: 2018
Subjects:
Online Access:https://doi.org/10.7916/D8JH53MC
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spelling ftcolumbiauniv:oai:academiccommons.columbia.edu:10.7916/D8JH53MC 2023-05-15T17:28:25+02:00 Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM Vigaud, Nicolas Ting, Mingfang Lee, Dong Eun Barnston, Anthony G. Kushnir, Yochanan 2018 https://doi.org/10.7916/D8JH53MC English eng https://doi.org/10.7916/D8JH53MC Climatic changes Climatic changes--Models Numerical analysis Articles 2018 ftcolumbiauniv https://doi.org/10.7916/D8JH53MC 2019-04-04T08:17:24Z Six recurrent thermal regimes are identified over continental North America from June to September through a k-means clustering applied to daily maximum temperature simulated by ECHAM5 forced by his- torical SSTs for 1930–2013 and validated using NCEP–DOE AMIP-II reanalysis over the 1980–2009 period. Four regimes are related to a synoptic wave pattern propagating eastward in the midlatitudes with embedded ridging anomalies that translate into maximum warming transiting along. Two other regimes, associated with broad continental warming and above average temperatures in the northeastern United States, respectively, are characterized by ridging anomalies over North America, Europe, and Asia that suggest correlated heat wave occurrences in these regions. Their frequencies are mainly related to both La Niña and warm conditions in the North Atlantic. Removing all variability beyond the seasonal cycle in the North Atlantic in ECHAM5 leads to a significant drop in the occurrences of the regime associated with warming in the northeastern United States. Superimposing positive (negative) anomalies mimicking the Atlantic multidecadal variability (AMV) in the North Atlantic translates into more (less) warming over the United States across all regimes, and does alter regime frequencies but less significantly. Regime frequency changes are thus primarily controlled by Atlantic SST variability on all time scales beyond the seasonal cycle, rather than mean SST changes, whereas the in- tensity of temperature anomalies is impacted by AMV SST forcing, because of upper-tropospheric warming and enhanced stability suppressing rising motion during the positive phase of the AMV. Article in Journal/Newspaper North Atlantic Columbia University: Academic Commons
institution Open Polar
collection Columbia University: Academic Commons
op_collection_id ftcolumbiauniv
language English
topic Climatic changes
Climatic changes--Models
Numerical analysis
spellingShingle Climatic changes
Climatic changes--Models
Numerical analysis
Vigaud, Nicolas
Ting, Mingfang
Lee, Dong Eun
Barnston, Anthony G.
Kushnir, Yochanan
Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM
topic_facet Climatic changes
Climatic changes--Models
Numerical analysis
description Six recurrent thermal regimes are identified over continental North America from June to September through a k-means clustering applied to daily maximum temperature simulated by ECHAM5 forced by his- torical SSTs for 1930–2013 and validated using NCEP–DOE AMIP-II reanalysis over the 1980–2009 period. Four regimes are related to a synoptic wave pattern propagating eastward in the midlatitudes with embedded ridging anomalies that translate into maximum warming transiting along. Two other regimes, associated with broad continental warming and above average temperatures in the northeastern United States, respectively, are characterized by ridging anomalies over North America, Europe, and Asia that suggest correlated heat wave occurrences in these regions. Their frequencies are mainly related to both La Niña and warm conditions in the North Atlantic. Removing all variability beyond the seasonal cycle in the North Atlantic in ECHAM5 leads to a significant drop in the occurrences of the regime associated with warming in the northeastern United States. Superimposing positive (negative) anomalies mimicking the Atlantic multidecadal variability (AMV) in the North Atlantic translates into more (less) warming over the United States across all regimes, and does alter regime frequencies but less significantly. Regime frequency changes are thus primarily controlled by Atlantic SST variability on all time scales beyond the seasonal cycle, rather than mean SST changes, whereas the in- tensity of temperature anomalies is impacted by AMV SST forcing, because of upper-tropospheric warming and enhanced stability suppressing rising motion during the positive phase of the AMV.
format Article in Journal/Newspaper
author Vigaud, Nicolas
Ting, Mingfang
Lee, Dong Eun
Barnston, Anthony G.
Kushnir, Yochanan
author_facet Vigaud, Nicolas
Ting, Mingfang
Lee, Dong Eun
Barnston, Anthony G.
Kushnir, Yochanan
author_sort Vigaud, Nicolas
title Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM
title_short Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM
title_full Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM
title_fullStr Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM
title_full_unstemmed Multiscale Variability in North American Summer Maximum Temperatures and Modulations from the North Atlantic Simulated by an AGCM
title_sort multiscale variability in north american summer maximum temperatures and modulations from the north atlantic simulated by an agcm
publishDate 2018
url https://doi.org/10.7916/D8JH53MC
genre North Atlantic
genre_facet North Atlantic
op_relation https://doi.org/10.7916/D8JH53MC
op_doi https://doi.org/10.7916/D8JH53MC
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