The relationship between December haze pollution in the Sichuan Basin and preceding climate factors

Abstract Haze pollution (HP) is one of the most serious disasters in the Sichuan Basin (SCB), adversely affecting human health, transportation, tourism and agriculture. HP in December is severe and differs from the haze days in January and February in terms of their temporal variations. To improve t...

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Published in:International Journal of Climatology
Main Authors: Luo, Yu, Zhao, Pengguo, Xu, Luyang, Chen, Chao, Wang, Shunjiu, Liu, Jia
Other Authors: Natural Science Foundation of Sichuan Province
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2024
Subjects:
Online Access:http://dx.doi.org/10.1002/joc.8432
https://rmets.onlinelibrary.wiley.com/doi/pdf/10.1002/joc.8432
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spelling crwiley:10.1002/joc.8432 2024-09-15T17:59:40+00:00 The relationship between December haze pollution in the Sichuan Basin and preceding climate factors Luo, Yu Zhao, Pengguo Xu, Luyang Chen, Chao Wang, Shunjiu Liu, Jia Natural Science Foundation of Sichuan Province 2024 http://dx.doi.org/10.1002/joc.8432 https://rmets.onlinelibrary.wiley.com/doi/pdf/10.1002/joc.8432 en eng Wiley http://onlinelibrary.wiley.com/termsAndConditions#vor International Journal of Climatology volume 44, issue 6, page 1914-1931 ISSN 0899-8418 1097-0088 journal-article 2024 crwiley https://doi.org/10.1002/joc.8432 2024-06-25T04:15:29Z Abstract Haze pollution (HP) is one of the most serious disasters in the Sichuan Basin (SCB), adversely affecting human health, transportation, tourism and agriculture. HP in December is severe and differs from the haze days in January and February in terms of their temporal variations. To improve the understanding of December haze days in the SCB (DHD SCB ), this study not only shows the atmospheric circulations and local meteorological circumstances related with the haze variation, but also analyses its relationship with the prior atmospheric apparent heat source over the Tibetan Plateau (TP) and the sea surface temperature (SST). The key circulation system associated with the interannual variation of the DHD SCB is that the SCB is controlled by the positive geopotential height anomalies and anomalous anticyclonic circulations with weak southwestward water vapour transport. Moreover, unfavourable local meteorological circumstances limit the vertical (horizontal) dispersion of pollutants. In addition, the DHD SCB during 1981–2022 is also found to have significant relationships with two preceding climate factors, which are the atmospheric apparent heat source (Q1) over the western TP in preceding November and the SST difference between the western Maritime Continent and western Australia in preceding autumn. The enhancement of Q1 over the western TP in preceding November is closely related to the midlatitude North Atlantic–southern Mediterranean Middle East–Arabian Sea–TP and its downstream region teleconnection pattern. Consequently, the anticyclonic circulation prevails over the SCB, and SCB is with less precipitation and more haze days in December. The western Maritime Continent and western Australia SST pattern in preceding Autumn is correlated with the Bay of Bengal–eastern TP and its downstream–Japan–Bering Sea teleconnection pattern, providing unfavourable moisture condition for the precipitation over the SCB and leading to the onset, development and maintenance of static weather in December. Therefore, ... Article in Journal/Newspaper Bering Sea North Atlantic Wiley Online Library International Journal of Climatology
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description Abstract Haze pollution (HP) is one of the most serious disasters in the Sichuan Basin (SCB), adversely affecting human health, transportation, tourism and agriculture. HP in December is severe and differs from the haze days in January and February in terms of their temporal variations. To improve the understanding of December haze days in the SCB (DHD SCB ), this study not only shows the atmospheric circulations and local meteorological circumstances related with the haze variation, but also analyses its relationship with the prior atmospheric apparent heat source over the Tibetan Plateau (TP) and the sea surface temperature (SST). The key circulation system associated with the interannual variation of the DHD SCB is that the SCB is controlled by the positive geopotential height anomalies and anomalous anticyclonic circulations with weak southwestward water vapour transport. Moreover, unfavourable local meteorological circumstances limit the vertical (horizontal) dispersion of pollutants. In addition, the DHD SCB during 1981–2022 is also found to have significant relationships with two preceding climate factors, which are the atmospheric apparent heat source (Q1) over the western TP in preceding November and the SST difference between the western Maritime Continent and western Australia in preceding autumn. The enhancement of Q1 over the western TP in preceding November is closely related to the midlatitude North Atlantic–southern Mediterranean Middle East–Arabian Sea–TP and its downstream region teleconnection pattern. Consequently, the anticyclonic circulation prevails over the SCB, and SCB is with less precipitation and more haze days in December. The western Maritime Continent and western Australia SST pattern in preceding Autumn is correlated with the Bay of Bengal–eastern TP and its downstream–Japan–Bering Sea teleconnection pattern, providing unfavourable moisture condition for the precipitation over the SCB and leading to the onset, development and maintenance of static weather in December. Therefore, ...
author2 Natural Science Foundation of Sichuan Province
format Article in Journal/Newspaper
author Luo, Yu
Zhao, Pengguo
Xu, Luyang
Chen, Chao
Wang, Shunjiu
Liu, Jia
spellingShingle Luo, Yu
Zhao, Pengguo
Xu, Luyang
Chen, Chao
Wang, Shunjiu
Liu, Jia
The relationship between December haze pollution in the Sichuan Basin and preceding climate factors
author_facet Luo, Yu
Zhao, Pengguo
Xu, Luyang
Chen, Chao
Wang, Shunjiu
Liu, Jia
author_sort Luo, Yu
title The relationship between December haze pollution in the Sichuan Basin and preceding climate factors
title_short The relationship between December haze pollution in the Sichuan Basin and preceding climate factors
title_full The relationship between December haze pollution in the Sichuan Basin and preceding climate factors
title_fullStr The relationship between December haze pollution in the Sichuan Basin and preceding climate factors
title_full_unstemmed The relationship between December haze pollution in the Sichuan Basin and preceding climate factors
title_sort relationship between december haze pollution in the sichuan basin and preceding climate factors
publisher Wiley
publishDate 2024
url http://dx.doi.org/10.1002/joc.8432
https://rmets.onlinelibrary.wiley.com/doi/pdf/10.1002/joc.8432
genre Bering Sea
North Atlantic
genre_facet Bering Sea
North Atlantic
op_source International Journal of Climatology
volume 44, issue 6, page 1914-1931
ISSN 0899-8418 1097-0088
op_rights http://onlinelibrary.wiley.com/termsAndConditions#vor
op_doi https://doi.org/10.1002/joc.8432
container_title International Journal of Climatology
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