Comparison of the opposite behaviours of Korean heatwaves with extreme hot sea surface temperatures in August 2016 and 2022 SCIE SCOPUS

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Title
Comparison of the opposite behaviours of Korean heatwaves with extreme hot sea surface temperatures in August 2016 and 2022
Author(s)
Choi, Nakbin; Lee, Seon Ju
Alternative Author(s)
이선주
Publication Year
2023-09
Abstract
In South Korea, an unprecedented heatwave occurred in August 2016. That year, sea surface temperature (SST) in the Korean marginal seas (KMS) was remarkably higher than that in climatology, and upper-level anticyclonic circulations favoured this heatwave. More recently, similar conditions that can expect the frequent occurrence of heatwaves prevailed in August 2022. However, the opposite extreme phenomenon, heatwave days below climatology, occurred with the emergence of a stationary rainband in South Korea. This study aims to understand the two different behaviours of heatwaves in Korea under the same hot SST conditions in the KMS. The most pronounced difference between these two extreme cases is the existence of moisture flux related to the western North Pacific summer monsoon (WNPSM). Although the WNPSM is not generally highly correlated with temperature and precipitation in Korea, their relationship is particularly strong when hot SST conditions develop in the KMS. This SST condition, combined with the WNPSM, plays a role in determining this anomalous moisture flux in Korea. Enough tropical moisture flux occurred to build a stationary front with declining heatwave days during August 2022. In contrast, extremely dry and hot weather was more likely in 2016 due to inactive moisture fluxes from the western North Pacific.
ISSN
0899-8418
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/44566
DOI
10.1002/joc.8247
Bibliographic Citation
International Journal of Climatology, v.43, no.15, pp.6993 - 7002, 2023
Publisher
John Wiley & Sons Inc.
Keywords
extreme weather; heatwave; South Korea; summer climate
Type
Article
Language
English
Document Type
Article; Early Access
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