• 제목/요약/키워드: 이어도 해양과학기지

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해상교통을 위한 국지정밀 해상풍 예측 (Local Fine Grid Sea Wind Prediction for Maritime Traffic)

  • 박광순;전기천;권재일;허기영
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2009년도 공동학술대회
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    • pp.449-451
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    • 2009
  • 지구온난화에 따른 해수면 상승과 태풍 강도의 증가는 연안역에 밀집한 주거 및 산업공간을 위협하는 요소로 최근 그 연구가 활발하게 진행되어 오고 있다. 본 연구에서는 안전한 해상교통 및 폭풍해일과 파랑예측을 위해서 반드시 필요한 해상풍에 대한 연구이다. 해상풍은 연안역에서의 자연재해를 유발하는 여러 요소 중에서 중요한 연구과제이나, 현재 가상수치모델에 의한 해상풍 및 해면기압은 시 공간적으로 불충분하다. 따라서, 중규모 기상 모형인 Weather Research and Forecasting(WRF)을 사용하여 우리나라 주변해역을 모두 포함하며, 약 9km 격자로 매일 두 번씩 72시간을 예보하는 해상풍을 산출하는 시스템을 구축하였다. 이어도 해양과학기지와 황해중부부이에서 실측한 해상풍과 검증한 결과 상당히 유의할 만한 결과를 얻었으며, 자료동화을 이용하여 향후에는 보다 정확한 해상풍을 산출할 계획이다.

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이어도 해양과학기지에서 관측된 PM2.5 농도와 이온조성 (Mass Concentration and Ionic Composition of PM2.5 Observed at Ieodo Ocean Research Station)

  • 황길영;이미혜;신범철;이강웅;이재학;심재설
    • 한국대기환경학회지
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    • 제24권5호
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    • pp.501-511
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    • 2008
  • The Objective of this study is to examine the characteristic of fine aerosol $(PM_{2.5})$ obtained at Ieodo Ocean Research Station, which lies between the eastern part of China and the south western part of Korea. The average mass concentration of $PM_{2.5}$ was $21.5{\pm}17.0{\mu}g/m^3$ during June $2004{\sim}June 2006$. The concentration was the highest in winter $(34.8{\mu}g/m^3)$ and lowest in summer $(16.5{\mu}g/m^3)$. Water soluble ions were measured for samples collected from December 2004 to September 2005. Among them, $SO_4^{2-}\;and\;NH_4^+$ were the most abundant species and accounted for 32.2% and 14.2% of the $PM_{2.5}$ mass, respectively. The mass fraction of $SO_4^{2-}$ was higher in winter (42%) than in spring (26%). Nitrate concentrations were much lower than those of sulfate due mainly to evaporation during sampling period. The cluster analysis of backward airmass trajectories showed that the high mass loadings $(26.9{\mu}g/m^3\;on\;average)$ were associated with air originating inland China. Also, the seasonal variation of $PM_{2.5}$ mass was well correlated with the frequency of westerly winds passing through the western part of China. During the ABC-EAREX2005 (March 2005), $PM_{2.5}$ mass and major ionic concentrations were higher at Ieodo, compared with $PM_{2.5}$ measurements at Gosan while they were similar in variation pattern. These results suggested that $PM_{2.5}$ mass and its ionic composition of Ieodo Ocean Research Station were greatly influenced by continental outflows from China.

이어도 해양종합과학기지에서의 에어로솔 수 농도 변동 (The Fluctuations of Aerosol Number Concentration in the leodo Ocean Research Station)

  • 박성화;이동인;서길종;유철환;장민;강미영;장상민;김동철;최창섭;이병걸
    • 한국환경과학회지
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    • 제18권7호
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    • pp.721-733
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    • 2009
  • To examine the fluctuations of aerosol number concentration with different size in the boundary layer of marine area during summer season, aerosol particles were assayed in the Ieodo Ocean Research Station, which is located 419 km southwest of Marado, the southernmost island of Korea, from 24 June to 4 July, 2008. The Laser Particle Counter (LPC) was used to measure the size of aerosol particles and NCEP/NCAR reanalysis data and sounding data were used to analyze the synoptic condition. The distribution of aerosol number concentration had a large variation from bigger particles more than 3 ${\mu}m$ in diameter to smaller particles more than 1 ${\mu}m$ in diameter with wind direction during precipitation. The aerosol number concentration decreased with increasing temperature. An increase (decrease) of small size of aerosol (0.3${\sim}$0.5 ${\mu}m$ in diameter) number concentration was induced by convergence (divergence) of the wind fields. The aerosol number concentration of bigger size more than 3 ${\mu}m$ in diameter after precipitation was removed as much as 89${\sim}$94% compared with aerosol number concentration before precipitation. It is considered that the larger aerosol particles would be more efficient for scavenging at marine boundary layer. In addition, the aerosol number concentration with divergence and convergence could be related with the occurrence and mechanism of aerosol in marine boundary layer.

기상 데이터를 활용한 LSTM 기반의 해양 혼합층 수온 예측 (LSTM Based Prediction of Ocean Mixed Layer Temperature Using Meteorological Data)

  • 고관섭;김영원;변성현;이수진
    • 대한원격탐사학회지
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    • 제37권3호
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    • pp.603-614
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    • 2021
  • 최근 우리나라 주변 해역의 해수면 온도가 상승하고 있다. 이러한 수온 상승은 어족자원의 변화를 일으켜 낚시와 같은 레저활동에 영향을 미치기도 하며, 특히 고수온은 적조 발생으로 이어져 양식업과 같은 해양산업에 극심한 피해를 유발하기도 한다. 한편 수온 변화는 잠수함을 탐지하는 군사작전과도 밀접하게 연관되어 있다. 이는 잠수함을 탐지하기 위한 음파가 수온층에 따라 회절, 굴절 및 반사되는 정도가 달라지기 때문이다. 이와 같이 해양과 관련된 다양한 분야에서 중요성을 가지는 해양 수온의 변화를 예측하기 위한 연구가 현재 활발하게 진행되고 있다. 그러나 기존 연구들은 대부분 해수면 온도만을 예측하는데 중점을 두고 있어 수심별 어족자원의 변화나 잠수함 탐지와 같은 군사분야 활용이 제한된다. 이에 본 연구에서는 수심별 수온자료 및 해수면 온도와 상관관계를 가지는 기온, 기압, 일조량 등의 기상 데이터를 함께 활용하여 수심 38 m 혼합층의 수온을 예측하였다. 사용된 데이터는 이어도 해양과학기지에서 관측한 2016년부터 2020년까지의 기상 데이터와 수심별 수온 자료이며, 예측의 정확성과 효율성을 높이기 위해 딥러닝 기법 중 시계열 자료에 적합하다고 알려진 LSTM(Long Short-Term Memory)을 사용하였다. 실험 결과 1시간 예측을 기준으로 기온과 기압, 일조량 자료를 함께 활용한 모델의 RMSE(Root Mean Square Error)는 0.473으로 나타났다. 반면 해수면 수온만을 활용한 모델의 RMSE는 0.631로 나타나 기상데이터를 함께 활용한 모델이 상부 혼합층 수온 예측에서 보다 우수한 성능을 보임을 확인하였다.

이어도 해양종합과학기지에서의 3차원 바람성분에 따른 에어로솔 수 농도 변동 특성 (The Variation of Aerosol Number Concentrations in Relation with 3D Wind Components in the Ieodo Ocean Research Station)

  • 박성화;장상민;이동인;정운선;정종훈;정성아;정창훈;김경식;김경익
    • 대기
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    • 제22권1호
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    • pp.97-107
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    • 2012
  • To investigate variation of aerosol number concentration at each different size with three-dimensional (3D) wind components in ocean area, aerosol particles and 3D wind components were measured in the Ieodo Ocean Research Station, which is located to 419 km southwest from Marado, the southernmost island of Korea, from 25 June to 8 July 2010. The Laser Particle Counter (LPC) and ultrasonic anemometer were used to measure the size of aerosol particles and 3D wind components (zonal (u), meridional (v), and vertical (w) wind) respectively. Surface weather chart, NCEP/NCAR reanalysis data and sounding data were used to analyze the synoptic condition. The distribution of aerosol number concentration had a large variation from bigger particles more than 1.0 ${\mu}m$ in diameter by wind direction during precipitation. In the number concentration of aerosol particles with respect to the weather conditions, particles larger than 1.0 ${\mu}m$ in size were decreased and sustained to the similar concentration at smaller particles during precipitation. The increase in aerosol number concentration was due to the sea-salt particles which was suspended by southwesterly and upward winds. In addition, the aerosol number concentration with vertical wind flow could be related with the occurrence and increasing mechanism of aerosol in marine boundary layer.

이어도 종합해양과학기지를 활용한 태풍연구: Part I. 태풍관측의 중요성 및 현황 (Typhoon Researches Using the Ieodo Ocean Research Station: Part I. Importance and Present Status of Typhoon Observation)

  • 문일주;심재설;이동영;이재학;민인기;임관창
    • 대기
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    • 제20권3호
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    • pp.247-260
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    • 2010
  • A recent dramatic increase of natural hazards in the Korean peninsular (KP) due to typhoons have raised necessities for the accurate typhoon prediction. Ieodo ocean research station (IORS) has been constructed in June 2003 at the open ocean where typhoons pass frequently, aiming to observe typhoons before the landfall to the KP and hence to improve the prediction skill. This paper investigates the importance of measurements at the IORS in the typhoon research and forecast. Analysis of the best track data in the N. W. Pacific shows that about one typhoon passes over the IORS per year on the average and 54% of the KP-landfall typhoons during 59 years (1950-2008) passed by the IORS within the range of the 150-km radius. The data observed during the event of typhoons reveals that the IORS can provide useful information for the typhoon prediction prior to the landfall (mainland: before 8-10 hrs, Jeju Island: before 4-6 hrs), which may contribute to improving the typhoon prediction skill and conducting the disaster prevention during the landfall. Since 2003, nine typhoons have influenced the IORS by strong winds above 17m/s. Among them, the typhoon Maemi (0314) was the strongest and brought the largest damages in Korea. The various oceanic and atmospheric observation data at the IORS suggest that the Maemi (0314) has kept the strong intensity until the landfall as passing over warm ocean currents, while the Ewiniar (0603) has weakened rapidly as passing over the Yellow Sea Bottom Cold Water (YSBCW), mainly due to the storm's self-induced surface cooling. It is revealed that the IORS is located in the best place for monitering the patterns of the warm currents and the YSBCW which varies in time and space.