Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon

ABSTRACT: In this study, the correlation between the frequency of summer tropical cyclones (TC) affecting areas around Korea over the last 37 years and the western North Pacific monsoon index (WNPMI) was analyzed. A clear positive correlation existed between the two variables, and this high positive...

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Main Authors: Jae-Won Choi, Seung-Wook Lee, Jeoung-Yun Kim
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2015-05-01
Series:Tropical Cyclone Research and Review
Online Access:http://www.sciencedirect.com/science/article/pii/S2225603218301267
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spelling doaj-b8d58d3744a14192a2773adb8dece1d22021-04-02T11:26:13ZengKeAi Communications Co., Ltd.Tropical Cyclone Research and Review2225-60322015-05-01424963Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific MonsoonJae-Won Choi0Seung-Wook Lee1Jeoung-Yun Kim2Corresponding author address: Jae-Won Choi, Research Planning and Management Division / National Institute of Meteorological Sciences, 1622-1, Hannam-ri, Nawon-eup, Seogwipo-si, Jeju, 699-942, Korea.; National Institute of Meteorological Sciences, Jeju, KoreaNational Institute of Meteorological Sciences, Jeju, KoreaNational Institute of Meteorological Sciences, Jeju, KoreaABSTRACT: In this study, the correlation between the frequency of summer tropical cyclones (TC) affecting areas around Korea over the last 37 years and the western North Pacific monsoon index (WNPMI) was analyzed. A clear positive correlation existed between the two variables, and this high positive correlation remained unchanged even when excluding El Niño-Southern Oscillation (ENSO) years. To investigate the causes of the positive correlation between these two variables, ENSO years were excluded, after which the 8 years with the highest WNPMI (strong WNPM phase) and the 8 years with the lowest WNPMI (weak WNPM phase) were selected, and the average difference between the two phases was analyzed.In the strong WNPM phase, TCs usually occurred in the eastern waters of the tropical and subtropical western North Pacific, and tended to pass the East China Sea on their way north toward Korea and Japan. In the weak WNPM phase, TCs usually occurred in the western waters of the tropical and subtropical western North Pacific, and tended to pass the South China Sea on their way west toward the southeastern Chinese coast and the Indochina peninsula. Therefore, TC intensity was higher in the strong WNPM phase, during which TCs are able to gain sufficient energy from the sea while moving a long distance to areas nearby Korea. TCs also tended to occur more often in the strong WNPM phase.In the difference between the two phases regarding 850 hPa and 500 hPa streamline, anomalous cyclones were reinforced in the tropical and subtropical western North Pacific, while anomalous anticyclones were reinforced in mid-latitude East Asian areas. Due to these two anomalous pressure systems, anomalous southeasterlies developed in areas near Korea, with these anomalous southeasterlies playing the role of anomalous steering flows making the TCs head toward areas near Korea. Also, due to the anomalous cyclones developed in the tropical and subtropical western North Pacific, more TCs could occur in the strong WNPM phase. Keywords: tropical cyclone, western North Pacific monsoon, El Niño-Southern Oscillation, Koreahttp://www.sciencedirect.com/science/article/pii/S2225603218301267
collection DOAJ
language English
format Article
sources DOAJ
author Jae-Won Choi
Seung-Wook Lee
Jeoung-Yun Kim
spellingShingle Jae-Won Choi
Seung-Wook Lee
Jeoung-Yun Kim
Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon
Tropical Cyclone Research and Review
author_facet Jae-Won Choi
Seung-Wook Lee
Jeoung-Yun Kim
author_sort Jae-Won Choi
title Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon
title_short Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon
title_full Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon
title_fullStr Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon
title_full_unstemmed Interannual Anomaly in Tropical Cyclone Frequency Around Korea by Western North Pacific Monsoon
title_sort interannual anomaly in tropical cyclone frequency around korea by western north pacific monsoon
publisher KeAi Communications Co., Ltd.
series Tropical Cyclone Research and Review
issn 2225-6032
publishDate 2015-05-01
description ABSTRACT: In this study, the correlation between the frequency of summer tropical cyclones (TC) affecting areas around Korea over the last 37 years and the western North Pacific monsoon index (WNPMI) was analyzed. A clear positive correlation existed between the two variables, and this high positive correlation remained unchanged even when excluding El Niño-Southern Oscillation (ENSO) years. To investigate the causes of the positive correlation between these two variables, ENSO years were excluded, after which the 8 years with the highest WNPMI (strong WNPM phase) and the 8 years with the lowest WNPMI (weak WNPM phase) were selected, and the average difference between the two phases was analyzed.In the strong WNPM phase, TCs usually occurred in the eastern waters of the tropical and subtropical western North Pacific, and tended to pass the East China Sea on their way north toward Korea and Japan. In the weak WNPM phase, TCs usually occurred in the western waters of the tropical and subtropical western North Pacific, and tended to pass the South China Sea on their way west toward the southeastern Chinese coast and the Indochina peninsula. Therefore, TC intensity was higher in the strong WNPM phase, during which TCs are able to gain sufficient energy from the sea while moving a long distance to areas nearby Korea. TCs also tended to occur more often in the strong WNPM phase.In the difference between the two phases regarding 850 hPa and 500 hPa streamline, anomalous cyclones were reinforced in the tropical and subtropical western North Pacific, while anomalous anticyclones were reinforced in mid-latitude East Asian areas. Due to these two anomalous pressure systems, anomalous southeasterlies developed in areas near Korea, with these anomalous southeasterlies playing the role of anomalous steering flows making the TCs head toward areas near Korea. Also, due to the anomalous cyclones developed in the tropical and subtropical western North Pacific, more TCs could occur in the strong WNPM phase. Keywords: tropical cyclone, western North Pacific monsoon, El Niño-Southern Oscillation, Korea
url http://www.sciencedirect.com/science/article/pii/S2225603218301267
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