• 제목/요약/키워드: pathway of typhoons

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태풍 내습 시 남한의 극한강수현상의 시.공간적 패턴 (Spatio-Temporal Patterns of Extreme Precipitation Events by Typhoons Across the Republic of Korea)

  • 이승욱;최광용
    • 한국지역지리학회지
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    • 제19권3호
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    • pp.384-400
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    • 2013
  • 이 연구에서는 기상청 종관기상관측망 및 자동기상관측망의 약 340여개의 일별 강수 관측자료를 바탕으로 최근 10년간(2002~2011년) 평균 우리나라 태풍 내습 시 극한강수현상 발생의 시 공간적 패턴을 분석하였다. 일반적으로 태풍에 의한 일 강수량 80mm 이상 극한강수현상 발생빈도는 태풍의 길목에 해당하는 제주도 이외에도 경상남도 지역과 영동 해안지역에 높게 나타난다. 그러나 수백 km 이상 반경을 지닌 반시계 방향의 수증기 이류가 나타날 때 태풍 내습 경로 및 접근 거리별로 우리나라 주요 산맥에 의해 수증기 이류정도가 변하여 극한강수현상 발생빈도, 강도 및 그 범위가 달라진다. 7월에 발생빈도가 높은 황해 북상형 태풍 내습 시에는 남해안지역과 영동해안지역 이외에도 경기도 북부지역에 극한강수현상의 발생빈도가 높게 나타남을 알 수 있다. 8월~9월 초로 갈수록 발생확률이 높아지는 한반도 남부지역 상륙형 및 동해 북상형 태풍 내습 시에는 남해안 및 영동해안지역뿐만 아니라 경상남도 내륙지역에서도 극한강수현상 발생빈도가 높게 나타난다. 특히, 해발고도가 높은 한라산, 지리산 지역에서는 태풍 내습 시 많은 강수량을 초래하는 극한강수현상이 자주 발생함을 알 수 있다. 이러한 연구 결과들은 태풍 이동경로 및 접근거리에 따라 지역별로 차별화된 태풍 피해 저감대책을 마련할 필요성을 제시하고 있다.

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The Recent Increase in the Heavy Rainfall Events in August over the Korean Peninsula

  • Cha, Eun-Jeong;Kimoto, Masahide;Lee, Eun-Jeong;Jhun, Jong-Ghap
    • 한국지구과학회지
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    • 제28권5호
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    • pp.585-597
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    • 2007
  • The characteristics of the rainfall events on the Korean peninsula have been investigated by means of regional and global observational data collected from 1954 to 2004 with an emphasis on extreme cases $80\;mm\;day^{-1}$. According to our analysis, long-term annual rainfall anomalies show an increasing trend. This trend is pronounced in the month of August, when both the amount of monthly rainfall and the frequency of extreme events increase significantly. Composite maps on August during the 8 wet years reveal warm SST anomalies over the eastern Philippine Sea which are associated with enhanced convection and vertical motion and intensified positive SLP over central Eurasia during August. The rainfall pattern suggests that the most significant increase in moisture supply over the southern parts of China and Korea in August is associated with positive SLP changes over Eurasia and negative SLP changes over the subtropical western Pacific off the east coast of south China. The frequent generation of typhoons over the warm eastern Philippine Sea and their tracks appear to influence the extreme rainfall events in Korea during the month of August. The typhoons in August mainly passed the western coast of Korea, resulting in the frequent occurrence of extreme rainfall events in this region. Furthermore, anomalous cyclonic circulations over the eastern Philippine Sea also promoted the generation of tropical cyclones. The position of pressure systems - positive SLP over Eurasia and negative SLP over the subtropical Pacific - in turn provided a pathway for typhoons. The moisture is then effectively transported further north toward Korea and east toward the southern parts of China during the extreme rainfall period.

태풍 경로에 따른 제주 우도수로에서의 해류와 파랑 특성 변화 (Changes of Current and Wave Patterns Depending on Typhoon Pathways in a Shallow Channel between Jeju and Udo Island)

  • 홍지석;문재홍;윤석훈;윤우석
    • Ocean and Polar Research
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    • 제43권4호
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    • pp.205-217
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    • 2021
  • A shallow channel between Jeju and Udo Islands, which is located in the northeastern Jeju Island, is influenced by storm- or typhoon-induced currents and surface waves as well as strong tidal currents. This study examines the typhoon-induced current and wave patterns in the channel, using Acoustic Doppler Current Meter (ADCP) measurements and an ocean-wave coupled modeling experiment. Three typhoons were chosen - Chaba (2016), Soulik (2018), and Lingling (2019) - to investigate the responses of currents and waves in their pathways. During the pre-typhoon periods, dominant northward flow and wave propagation were observed in the channel due to the southeasterly winds before the three typhoons. After the passage of Chaba, which passed over the eastern side of Jeju Island, the northward flow and wave propagation were totally reversed to the opposite direction, which was attributed to the strong northerly winds on the left side of the typhoon. In contrast, in the cases of Soulik and Lingling, which passed over the western side of Jeju Island, strong southerly winds on the right side of the typhoons continuously intensified the northward current and wave propagation in the channel. The model-simulated current and wave fields reasonably coincided with observational data, showing southward/northward flow and wave propagation in response to the right/left side of the typhoon pathways. Typhoon-induced downwind flows, and surface waves could enhance up to 2m/s and 3m due to the strong winds that lasted for more than 12 hours. This suggests that the flow and wave patterns in the Udo channel are highly sensitive to the pathway of typhoons and accompanying winds; thus, this may be a crucial factor with regard to the movement of seabed sediments and subsequent coastal erosion.

청청/낙동 배가반수체 유전자 지도를 이용한 쌀의 출수기 관련 양적형질유전자좌(QTL) 분석 (QTL Analysis of Rice Heading-related Genes Using Cheongcheong/Nagdong Doubled Haploid Genetic Map)

  • 장윤희;박재령;김경민
    • 생명과학회지
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    • 제30권10호
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    • pp.844-850
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    • 2020
  • 본 연구는 지구온난화와 태풍에 의해 수확기의 손실을 막기 위해 벼의 출수기를 당기는 유전자를 찾는 것을 목표로 한다. 청청/낙동 배가반수체(CNDH)와 모본인 청청, 부본인 낙동을 재료로 사용하여 QTL을 이용해 출수기 관련 유전자의 위치를 조사하고 gene을 cloning하여 염기서열을 분석하였다. 분석결과 염색체 8번에 13개의 contig가 있었고 그 중 출수기와 관련된 1개의 ORF가 존재했다. 단백질 서열을 분석한 결과 벼의 Os08g0341700, 그리고 AtSFH13, AtSFH7 단백질과 유사한 것으로 보인다. 신호전달과 관계가 있는 Os08g0341700은 phosphatidylinositol transfer-like protein II와 유사하며 아직 완전한 information은 밝혀지지 않았다. 하지만 Sec14P와 연관이 있으며 세포 생장 등에 관여하는 phosphatidylinositol 특이적 신호전달 경로의 역할을 할 것으로 추정 중이다.

제주 우도 홍조단괴해빈의 태풍 시기 지형변화 (Topographic Variability during Typhoon Events in Udo Rhodoliths Beach, Jeju Island, South Korea)

  • 윤우석;윤석훈;문재홍;홍지석
    • Ocean and Polar Research
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    • 제43권4호
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    • pp.307-320
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    • 2021
  • Udo Rhodolith Beach is a small-scale, mixed sand-and-gravel beach embayed on the N-S trending rocky coast of Udo, Jeju Island, South Korea. This study analyzes the short-term topographic changes of the beach during the extreme storm conditions of four typhoons from 2016 to 2020: Chaba (2016), Soulik (2018), Lingling (2019), and Maysak (2020). The analysis uses the topographic data of terrestrial LiDAR scanning and drone photogrammetry, aided by weather and oceanographic datasets of wind, wave, current and tide. The analysis suggests two contrasting features of alongshore topographic change depending on the typhoon pathway, although the intensity and duration of the storm conditions differed in each case. During the Soulik and Lingling events, which moved northward following the western sea of the Jeju Island, the northern part of the beach accreted while the southern part eroded. In contrast, the Chaba and Maysak events passed over the eastern sea of Jeju Island. The central part of the beach was then significantly eroded while sediments accumulated mainly at the northern and southern ends of the beach. Based on the wave and current measurements in the nearshore zone and computer simulations of the wave field, it was inferred that the observed topographic change of the beach after the storm events is related to the directions of the wind-driven current and wave propagation in the nearshore zone. The dominant direction of water movement was southeastward and northeastward when the typhoon pathway lay to the east or west of Jeju Island, respectively. As these enhanced waves and currents approached obliquely to the N-S trending coastline, the beach sediments were reworked and transported southward or northward mainly by longshore currents, which likely acts as a major control mechanism regarding alongshore topographic change with respect to Udo Rhodolith Beach. In contrast to the topographic change, the subaerial volume of the beach overall increased after all storms except for Maysak. The volume increase was attributed to the enhanced transport of onshore sediment under the combined effect of storm-induced long periodic waves and a strong residual component of the near-bottom current. In the Maysak event, the raised sea level during the spring tide probably enhanced the backshore erosion by storm waves, eventually causing sediment loss to the inland area.