Comparison of Regional Climate Model Performances for Different Types of Heat Waves over South Korea
Cited 3 time in
Cited 3 time in
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Title
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Comparison of Regional Climate Model Performances for Different Types of Heat Waves over South Korea
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Other Titles
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지역 기후 모델의 한반도 폭염 종류에 따른 모의 특성 비교
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Authors
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Yoon, Donghyuck
Cha, Dong-Hyun
Lee, Myong-In
Min, Ki-Hong
Jun, Sang-Yoon
Choi, Yonghan
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Subject
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Meteorology & Atmospheric Sciences
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Keywords
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Asia; Extreme events; Numerical analysis; modeling; Regional models; Blocking
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Issue Date
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2021-03
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Citation
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Yoon, Donghyuck, et al. 2021. "Comparison of Regional Climate Model Performances for Different Types of Heat Waves over South Korea". JOURNAL OF CLIMATE, 34(6): 2157-2174.
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Abstract
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South Korea’s heat wave events over 39 years (1980-2018) were defined by spatiotemporal criteria, and their quantitative characteristics were analyzed. The duration and intensity of these events ranked highest in 2016 and 2018. An examination of synoptic conditions of heat wave events in 2016 and 2018 based on a reanalysis dataset revealed a positive anomaly of 500-hPa geopotential height, which could have induced warm conditions over the Korean Peninsula in both years. However, a difference prevailed in that there was a blocking high over the Kamchatka Peninsula and a continental thermal high over northern China in 2016, while the expansion of the western North Pacific subtropical high was mainly associated with 2018 heat wave events. Numerical experiments using the Weather Research and Forecasting (WRF) Model were conducted to 1) evaluate how distinct meteorological characteristics of heat wave events in 2016 and 2018 were reproduced by the model, and 2) investigate how they affect extreme temperature events. Typical synoptic features of the 2016 heat wave events (i.e., Kamchatka blocking and continental thermal high) were not captured well by the WRF Model, while those of 2018 were reasonably reproduced. On the contrary, the heat wave event during late August 2016 related to the Kamchatka blocking high was realistically simulated when the blocking was artificially sustained by applying spectral nudging. In conclusion, the existence of a blocking high over the Kamchatka region (i.e., northern Pacific region) is an important feature to accurately predict long-lasting heat waves in East Asia.
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URI
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https://repository.kopri.re.kr/handle/201206/13611
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DOI
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http://dx.doi.org/10.1175/JCLI-D-20-0422.1
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Type
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Article
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Station
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해당사항없음
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Indexed
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SCIE
- Appears in Collections
- 2021-2021, Investigation and prediction system development of marine heatwave around the Korean Peninsula originated from the subarctic and western Pacific (21-21) / Jun, Sang-Yoon (PM21090)
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