• 제목/요약/키워드: typhoon 'Maemi'

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태풍의 특성변화에 따른 경남해역 해일양상 고찰 (Effects of Typhoon's Characteristics on the Storm Surge at Gyeongnam Coastal Zone)

  • 강주환;박선중;문승록;윤종태
    • 한국해안·해양공학회논문집
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    • 제21권1호
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    • pp.1-14
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    • 2009
  • 태풍의 주요 매개변수 변화에 따른 영향을 판단하는데 용이하도록 직선화된 가상태풍을 생성시켰다. 이러한 가상태풍 모의를 통해 경남해역을 대상으로 해일양상 변화를 고찰하였다. 이를 위해 태풍 MAEMI(0314)를 직선화한 가상태풍의 적절성을 검토한 후, 총 175개 CASE의 가상태풍모의를 수행하였다. 모의결과, 마산과 통영 해역은 지형적인 영향으로 다른 해역에 비해 상대적으로 높은 해일고가 발생되는 것으로 나타났다. 특히 마산해역의 경우 MAEMI와 동일한 강도의 태풍 내습시 경로에 따라 최대 2.50 m의 해일고가 발생 가능한 것으로 모의되었다. 마산 이외의 해역에서는 태풍 MAEMI의 해일고가 최대치에 근접하는 결과를 보여 MAEMI의 경로가 최악의 피해를 주는 경로였던 것으로 판단된다. 기압에 의한 수위 상승효과는 바람에 비해 상대적으로 크게 작용하며, 태풍의 중심에서 그 효과는 최대가 되는 것으로 나타났다.

2003년 태풍 매미로 인한 부산 연안지역의 재해특성 분석 (Disaster Characteristics Analysis at Busan Coastal Areas by Typhoon Maemi in 2003)

  • 서규우
    • 한국해양공학회지
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    • 제18권2호
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    • pp.25-32
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    • 2004
  • We surveyed the coastal structure damage created by typhoon ‘Maemi’, which heavily struck the Korean peninsula on September 12, 2003. The survey revealed that high tides and strong winds induced by the typhoon were the main causes of the coastal damage, especially in the Busan areas. Though some experimental real-time coastal monitoring stations captured the typhoon movements at the critical time, more systematic and complete system should be implemented to save human lives and property from huge typhoon disasters.

광양만에서의 2003년 태풍 “매미”에 의한 폭풍해일 (Storm Surge Caused by the Typhoon “Maemi” in Kwangyang Bay in 2003)

  • 김현성;이석우
    • 한국해양학회지:바다
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    • 제9권3호
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    • pp.119-129
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    • 2004
  • 2003년 9월 12일에 태풍 “매미”가 남해안으로 상륙하면서 발생한 광양만의 해일고를 산정한 결과, 고조위 편차는 93∼108 cm이고, 최대 조위편차는 176∼196 cm로 나타났다. 최대 조위편차를 요인별로 분석하면 기압강하에 의한 해면상승이 59 cm, 섬진강 홍수로 인한 수위 상승이 4∼5 cm, 그리고 외해로부터 해일파의 전파 및 강풍에 의한 해면상승이 l13∼132 cm이다. 이번에 광양항(PT3)에서의 실측 최고조위 460 cm는 광양제철소 부지 설계시에 추정한 100년 빈도 설계조위 455 cm보다 5 cm 높고, 1987년 태풍 “셀마” 통과시에 기록된 기왕 고극조위 445 cm보다 15 cm높은 조위로서, 과거 20년 간의 최대 고극조위를 나타냈다.

부산 연안지형 VRS-GPS 계측을 통한 태풍해일 침수예측 (VRS-GPS Measure of Typhoon Surge Flood Determinedin Busan Coastal Topography)

  • 김가야;정광효;김정호
    • 한국해양공학회지
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    • 제26권1호
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    • pp.47-53
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    • 2012
  • A coastal flood area was predicted using the empirical superposition of the typhoon surge level and typhoon wave height along the Busan coastal area. The historical typhoon damages were reviewed, and the coastal topography was measured using VRS-GPS. A FEMA formula was applied to estimate the coastal flood area in a typhoon case when the measured and predicted data of typhoon waves are not available. The results in the area of Haeundae beach and Gwangalli beach were verified using the flood area data from the case of Typhoon Maemi (2003). If a Hurricane Katrina class typhoon were to pass through the Maemi trajectory, the areathat would be flooded along theBusan coastal area was predicted and compared with the results of the Maemi case. Because of the lack of ocean environment data such as data for the sea level, waves, bathymetry, wind, pressure, etc., it is hard to improve the prediction accuracy for the coastal flood area in the typhoon case, which could be reflected in the policy to mitigate a typhoon's impact. This paper discusses the kinds of ocean environment information that is needed to predict a typhoon's impact with better accuracy.

태풍 매미의 피해 데이터 기반 국내 태풍 취약성 분석에 관한 연구 (Analysis of Typhoon Vulnerability According to Quantitative Loss Data of Typhoon Maemi)

  • 안성진;김태희;김지명
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2019년도 춘계 학술논문 발표대회
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    • pp.125-126
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    • 2019
  • This study aims to recognize damage indicators of typhoon and to develop damage function's indicators, using information derived from the actual loss of typhoon Maemi. As typhoons engender significant financial damage all over the world, governments and insurance companies, local or global, develop hurricane risk assessment models and use it in quantifying, avoiding, mitigating, or transferring the risks. For the reason, it is crucial to understand the importance of the risk assessment model for typhoons, and the importance of reflecting local vulnerabilities for more advanced evaluation. Although much previous research on the economic losses associated with natural disasters has identified the risk indicators that are indispensable, more comprehensive research addressing the relationship between vulnerability and economic loss are still called for. Hence this study utilizes and analyzes the actual loss record of the typhoon Maemi provided by insurance companies to fill such gaps. In this study, natural disaster indicators and basic building information indicators are used in order to generate the vulnerability functions; and the results and indicators suggest a practical approach to create the vulnerability functions for insurance companies and administrative tasks, while reflecting the financial loss and local vulnerability of the actual buildings.

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태풍-중위도 종관 시스템 상호작용 연구: 루사(0215), 매미(0314) 사례분석 (A Case Study on Typhoon-Midlatitude Synoptic System Interaction: Typhoons Rusa(0215) and Maemi(0314))

  • 최기선;김백조;박종길
    • 한국환경과학회지
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    • 제16권9호
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    • pp.1051-1061
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    • 2007
  • The impact of midlatitude synoptic system (upper-level trough) on typhoon intensity change was investigated by analyzing the spatial and temporal characteristics of vertical wind shear (VWS), relative eddy momentum flux convergence (REFC), and potential vorticity (PV). These variables were computed over the radial mean $300{\sim}1,000km$ from the typhoon center by using GDAPS (Global Data Assimilation and Prediction System) data provided by the Korea Meteorological Administration (KMA). The selected cases in this study are typhoons Rusa (0215) and Maemi (0314), causing much damage in life and property in Korea. Results show that the threshold value of VWS indicating typhoon intensity change (typhoon to severe tropical storm) is approximately 15 m/s and of REFC ranges 6 to 6.5 $ms^{-1}day^{-1}$ in both cases, respectively. During the period with the intensity of typhoon class, PVs with 3 to 3.5 PVU are present in 360K surface-PV field in the cases. In addition, there is a time-lag of 24 hours between central pressure of typhoon and minimum value of VWS, meaning that the midlatitude upper-level trough interacts with the edge of typhoon with a horizontal distance less than 2,000 km between trough and typhoon. That is, strong midlatitude upper-level divergence above the edge of the typhoon provides a good condition for strengthening the vertical circulation associated with the typhoons. In particular, when the distance between typhoon and midlatitude upper-level trough is less than 1,000 km, the typhoons tend to weaken to STS (Severe Tropical Storm). It might be mentioned that midlatitude synoptic system affects the intensity change of typhoons Rusa (0215) and Maemi (0314) while they moves northward. Thus, these variables are useful for diagnosing the intensity change of typhoon approaching to the Korean peninsula.

GPS/MET 기술을 이용한 한반도 수증기 변화량 모니터링(태풍 매미의 경우) (Korea peninsula water vapor monitoring using GPS/MET technique(In case of the typhoon MAEMI))

  • 송동섭;윤홍식
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2004년도 춘계학술발표회논문집
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    • pp.131-137
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    • 2004
  • GPS/Meteorology technique for PWV monitoring is currently actively being researched an advanced nation. We deal with the monitoring of GPS derived PWV during the passage of Typhoon MAEMI. Typhoon MAEMI which caused a series damage was passed over in Korea peninsula from September 12 to September 13, 2003. We obtained GPS-PWV at 17th GPS permanent stations. We retrieve GPS data hourly and use Gipsy-Oasis II software. The GPS-PWV time series results demonstrate that PWV is, in general, high before and during the occurrence of the typhoon, and low after the typhoon.

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SOIL EROSION MODELING USING RUSLE AND GIS ON THE IMHA WATERSHED

  • Kim, Hyeon-Sik;Julien Pierre Y.
    • Water Engineering Research
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    • 제7권1호
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    • pp.29-41
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    • 2006
  • The Imha watershed is vulnerable to severe erosion due to the topographical characteristics such as mountainous steep slopes. Sediment inflow from upland area has also deteriorated the water quality and caused negative effects on the aquatic ecosystem of the Imha reservoir. The Imha reservoir was affected by sediment-laden density currents during the typhoon 'Maemi' in 2003. The RUSLE model was combined with GIS techniques to analyze the mean annual erosion losses and the soil losses caused by typhoon 'Maemi'. The model is used to evaluate the spatial distribution of soil loss rates under different land uses. The mean annual soil loss rate and soil losses caused by typhoon 'Maemi' were predicted as 3,450 tons/km2/year and 2,920 ton/km2/'Maemi', respectively. The sediment delivery ratio was determined to be about 25% from the mean annual soil loss rate and the surveyed sediment deposits in the Imha reservoir in 1997. The trap efficiency of the Imha reservoir was calculated using the methods of Julien, Brown, Brune, and Churchill and ranges from 96% to 99%.

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한반도 영향 태풍의 월별 최대풍 특징과 사례 연구 - 태풍 루사·매미·곤파스·볼라벤을 대상으로 - (Characteristics of Monthly Maximum Wind Speed of Typhoons Affecting the Korean Peninsula - Typhoon RUSA, MAEMI, KOMPASU, and BOLAVEN -)

  • 나하나;정우식
    • 한국환경과학회지
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    • 제28권4호
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    • pp.441-454
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    • 2019
  • The present study analyzes the characteristics of 43 typhoons that affected the Korean Peninsula between 2002 and 2015. The analysis was based on 3-second gust measurements, which is the maximum wind speed relevant for typhoon disaster prevention, using a typhoon disaster prevention model. And the distribution and characteristics of the 3-second gusts of four typhoons, RUSA, MAEMI, KOMPASU, and BOLAVEN that caused great damage, were also analyzed. The analysis show that between May and October during which typhoons affected the Korean Peninsula, the month with the highest frequency was August(13 times), followed by July and September with 12 occurrences each. Furthermore, the 3-second gust was strongest at 21.2 m/s in September, followed by 19.6 m/s in August. These results show that the Korean Peninsula was most frequently affected by typhoons in August and September, and the 3-second gusts were also the strongest during these two months. Typhoons MAEMI and KOMPASU showed distribution of strong 3-second gusts in the right area of the typhoon path, whereas typhoons RUSA and BOLAVEN showed strong 3-second gusts over the entire Korean Peninsula. Moreover, 3-second gusts amount of the ratio of 0.7 % in case of RUSA, 0.8 % at MAEMI, 3.3 % at KOMPASU, and 21.8 % at BOLAVEN showed as "very strong", based on the typhoon intensity classification criteria of the Korea Meteorological Administration. Based on the results of this study, a database was built with the frequencies of the monthly typhoons and 3-second gust data for all typhoons that affected the Korean Peninsula, which could be used as the basic data for developing a typhoon disaster prevention system.

슈퍼태풍 내습 시.부산 경남 연안역의 폭풍해일고 (Storm Surge Height on Busan and Gyeongnam coastal region by an Attack of Super-Typhoon)

  • 허동수;이현우;이우동;배기성
    • 한국해안·해양공학회논문집
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    • 제20권1호
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    • pp.128-136
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    • 2008
  • 최근, 전 세계적으로 지구 온난화가 가속화됨에 따라 해수면의 온도가 상승함과 동시에 태풍의 강도도 커지고 있는 실정이다. 우리나라의 경우에도 태풍을 연구하는 많은 학자들이 머지않은 미래에 슈퍼태풍이 내습할 것으로 예측하고 있다. 따라서 본 연구에서는 태풍 Maemi의 시동경로에 미국을 강타한 허리케인 Katrina(미국 뉴올리언스, 2005)와 태풍 Durian(필리핀, 2006) 및 태풍 Vera(일본 이세만, 1959)의 태풍특성(중심기압, 최대풍속반경,이동속도 등)을 조합하여 수치시뮬레이션을 실시하였다. 그 결과, 부산 경남 연안역 대부분의 지점에서 Maemi의 경로에 Durian과 Vera를 진행시킨 경우, Maemi내습 시보다 약 $1.5{\sim}2.0$배 높은 폭풍해일고를, Katrina의 경우, 약 4.0배 이상의 높은 폭풍해일고를 나타내었다. 이상과 같은 최대폭풍해일고의 수치로서 슈퍼태풍의 위험성을 충분히 인지하여 최적의 방재시스템을 구축하는 것이 폭풍해일의 재해예방 및 최소화를 위하여 조속히 해결하여야 할 과제이다.