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Distinguishable tropospheric-stratospheric coupled dynamical processes for SSW

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Title
Distinguishable tropospheric-stratospheric coupled dynamical processes for SSW
Other Titles
성층권 돌연승온의 구별 가능한 대류권-성층권 결합 역학 과정
Authors
Choi, Hyesun
Kim, Baek-Min
Choi, Wookap
Keywords
polar vortexSSWNAOtropospheric-stratospheric process
Issue Date
2018
Citation
Choi, Hyesun, Kim, Baek-Min, Choi, Wookap. 2018. Distinguishable tropospheric-stratospheric coupled dynamical processes for SSW. 2018 Autumn Meeting of Korean Meteorological Society(KMS). international convention center jeju. 2018.10.29~2018.10.31.
Abstract
Among events characterized by single polar vortex moving to a low latitude region prior to sudden stratospheric warming (SSW), some are divided into two pieces of polar vortex while others retain one vortex after SSW. Based on the different vortex evolution patterns, we confirm that the significant difference in observed zonal wind over the high-latitude lower stratosphere is preceded. This can be attributed to the differences in the tropospheric geopotential height distribution in the North Atlantic region resulting in distinct tropospheric-stratospheric dynamical processes: In the growth stage of the former SSW event, the negative NAO phase is dominant and stronger westerly-wind deceleration is observed in the high-latitude lower stratosphere than the later SSW event. This is also confirmed in the model. It suggests that the teleconnection pattern in the North Atlantic region can be a possible precursor to distinguish SSW specific events.
URI
https://repository.kopri.re.kr/handle/201206/12371
Conference Name
2018 Autumn Meeting of Korean Meteorological Society(KMS)
Conference Place
international convention center jeju
Conference Date
2018.10.29~2018.10.31
Type
Poster
Indexed
포스터
Appears in Collections  
2018-2018, Development and Application of the Korea Polar Prediction System (KPOPS) for Climate Change and Disasterous Weather Events (18-18) / Kim, Joo-Hong (PE18130)
2017-2018, Development and Application of the Korea Polar Prediction System (KPOPS) for Climate Change and Disasterous Weather Events (17-18) / Kim, Baek-Min (PE17130; PE18130)
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