Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation

Many previous studies have documented the relationship between the North Pacific Oscillation (NPO) and the weather/climate of upstream and downstream regions. However, the stability of NPO precursor signals of East Asian summer precipitation, which is important for climate prediction, has received l...

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Published in:Earth's Future
Main Authors: Han, Tingting, He, Shengping, Zhou, Botao, Li, Shangfeng, Hao, Xin
Format: Article in Journal/Newspaper
Language:English
Published: AGU 2023
Subjects:
Online Access:https://hdl.handle.net/11250/3123123
https://doi.org/10.1029/2023EF003754
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author Han, Tingting
He, Shengping
Zhou, Botao
Li, Shangfeng
Hao, Xin
author_facet Han, Tingting
He, Shengping
Zhou, Botao
Li, Shangfeng
Hao, Xin
author_sort Han, Tingting
collection University of Bergen: Bergen Open Research Archive (BORA-UiB)
container_issue 11
container_title Earth's Future
container_volume 11
description Many previous studies have documented the relationship between the North Pacific Oscillation (NPO) and the weather/climate of upstream and downstream regions. However, the stability of NPO precursor signals of East Asian summer precipitation, which is important for climate prediction, has received little attention. This study identified temporal variations in the connection between the May NPO and subsequent midsummer precipitation over Northeast China (NEC) during 1961–2020. During 1986–2010, the correlation between the May NPO and midsummer precipitation over NEC was found significantly positive, whereas the relation was found statistically insignificant during 1961–1985/2011–2020. Further results indicated that the NPO stimulated a Rossby wave source over the North Pacific that was stronger during 1986–2010 than during 1961–1985/2011–2020. The Rossby wave source anomalies shifted to North America and to the North Atlantic during the subsequent June and midsummer, respectively. Consequently, a teleconnection wave train, which originated over the North Pacific, propagated eastward to North America, across the North Atlantic, and on to East Asia on the subseasonal time scale, influencing midsummer precipitation over NEC through modulation of the atmospheric circulation (e.g., horizontal wind, moisture transport, and vertical movement). Moreover, the intensified Rossby wave anomalies associated with the May NPO were attributed to the strengthened NPO, which could be related to the enhanced standard deviation of SLP over the North Pacific. Additionally, the strengthened out-of-phase relation between the NPO and the North Atlantic Oscillation, resulting from changes in the background circulation, partially contributed to intensification of the Rossby wave train. publishedVersion
format Article in Journal/Newspaper
genre North Atlantic
North Atlantic oscillation
genre_facet North Atlantic
North Atlantic oscillation
geographic Pacific
geographic_facet Pacific
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institution Open Polar
language English
op_collection_id ftunivbergen
op_doi https://doi.org/10.1029/2023EF003754
op_relation urn:issn:2328-4277
https://hdl.handle.net/11250/3123123
https://doi.org/10.1029/2023EF003754
cristin:2208910
Earth's Future. 2023, 11 (11), e2023EF003754.
op_rights Navngivelse-Ikkekommersiell 4.0 Internasjonal
http://creativecommons.org/licenses/by-nc/4.0/deed.no
Copyright 2023 The Author(s)
op_source e2023EF003754
Earth's Future
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publisher AGU
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spelling ftunivbergen:oai:bora.uib.no:11250/3123123 2025-01-16T23:33:18+00:00 Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation Han, Tingting He, Shengping Zhou, Botao Li, Shangfeng Hao, Xin 2023 application/pdf https://hdl.handle.net/11250/3123123 https://doi.org/10.1029/2023EF003754 eng eng AGU urn:issn:2328-4277 https://hdl.handle.net/11250/3123123 https://doi.org/10.1029/2023EF003754 cristin:2208910 Earth's Future. 2023, 11 (11), e2023EF003754. Navngivelse-Ikkekommersiell 4.0 Internasjonal http://creativecommons.org/licenses/by-nc/4.0/deed.no Copyright 2023 The Author(s) e2023EF003754 Earth's Future 11 Journal article Peer reviewed 2023 ftunivbergen https://doi.org/10.1029/2023EF003754 2024-03-27T15:07:15Z Many previous studies have documented the relationship between the North Pacific Oscillation (NPO) and the weather/climate of upstream and downstream regions. However, the stability of NPO precursor signals of East Asian summer precipitation, which is important for climate prediction, has received little attention. This study identified temporal variations in the connection between the May NPO and subsequent midsummer precipitation over Northeast China (NEC) during 1961–2020. During 1986–2010, the correlation between the May NPO and midsummer precipitation over NEC was found significantly positive, whereas the relation was found statistically insignificant during 1961–1985/2011–2020. Further results indicated that the NPO stimulated a Rossby wave source over the North Pacific that was stronger during 1986–2010 than during 1961–1985/2011–2020. The Rossby wave source anomalies shifted to North America and to the North Atlantic during the subsequent June and midsummer, respectively. Consequently, a teleconnection wave train, which originated over the North Pacific, propagated eastward to North America, across the North Atlantic, and on to East Asia on the subseasonal time scale, influencing midsummer precipitation over NEC through modulation of the atmospheric circulation (e.g., horizontal wind, moisture transport, and vertical movement). Moreover, the intensified Rossby wave anomalies associated with the May NPO were attributed to the strengthened NPO, which could be related to the enhanced standard deviation of SLP over the North Pacific. Additionally, the strengthened out-of-phase relation between the NPO and the North Atlantic Oscillation, resulting from changes in the background circulation, partially contributed to intensification of the Rossby wave train. publishedVersion Article in Journal/Newspaper North Atlantic North Atlantic oscillation University of Bergen: Bergen Open Research Archive (BORA-UiB) Pacific Earth's Future 11 11
spellingShingle Han, Tingting
He, Shengping
Zhou, Botao
Li, Shangfeng
Hao, Xin
Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation
title Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation
title_full Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation
title_fullStr Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation
title_full_unstemmed Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation
title_short Interdecadal Changes in the Linkage Between North Pacific Oscillation During May and Northeast China Precipitation During Mid-Summer: The Influence of North Atlantic Oscillation
title_sort interdecadal changes in the linkage between north pacific oscillation during may and northeast china precipitation during mid-summer: the influence of north atlantic oscillation
url https://hdl.handle.net/11250/3123123
https://doi.org/10.1029/2023EF003754