• 제목/요약/키워드: Sea Surface Wind

검색결과 490건 처리시간 0.018초

지표면 변화와 인공열이 바람장에 미치는 영향에 관한 수치 시뮬레이션 (Numerical Simulation of Effect of Urban Land-use Type and Anthropogenic Heat on Wind Field)

  • 홍정혜;김유근
    • 한국대기환경학회지
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    • 제16권5호
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    • pp.511-520
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    • 2000
  • The urban atmosphere is characterized by th difference in surface and atmospheric environment between urban and more natural area. To investigate th climatic effect of land use type and anthropogenic heat of urban on wind field, numerical simulations were carried out under typical summer synoptic condition. The wind model PNU_MCM(Pusan National University Mesoscale Circulation Model) is based on the three-dimensional Boussinesq equations, taking into account the hydrostatic assumption . Since lane-use differs over every subdivision on Pusan the surface energy budget model includes sub0grid parameterization scheme which can calculate the total heat flux over a grid surface composed of different surfaces. The simulated surface wind agrees well with the observed value, and average over 6 days which represent typical summer lan-sea breeze days, August 1998, i.e. negligible gradient winds and almost clear skies. Urbanization makes sea-breeze enhance at day and reduce land-breeze at night. The results show that contribution of land-use type is much larger than that of anthropogenic heat in Pusan.

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위성원격탐사를 활용한 해양표면 바람장 자료 분석 (Analyses on the sea surface wind field data by satellite remote sensing)

  • 윤홍주
    • 한국정보통신학회논문지
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    • 제12권1호
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    • pp.149-157
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    • 2008
  • SAR의 마이크로파를 이용하면 악기상환경 및 주야간에도 해양의 관측이 가능하다. SAR의 해양표면에 대한 영상은 표면바람장과 관련된 대기 현상에 관한 많은 정보를 가지고 있다. SAR로부터 추출되는 풍속의 정보는 다양하게 이용된다. SAR 영상으로부터 해상풍을 산출하기 위해서는 바람산출모델에 SAR 영상으로부터 추출한 풍향 자료와 후방산란계수 값을 입력하여 풍속을 산출한다. 이 때 풍속은 CMOD5 모델에 풍향의 값을 적용하여 추할 수 있다. CMOD5 모델에 사용할 Azimuth angle 값은 SAR 자료로부터 구해지는 Look angle 값에 $90^{\circ}$를 더 함으로써 구해진다. SAR 영상으로부터 구한 파향 스펙트럼 은 항상 파향에 있어서 $180^{\circ}$의 상반된 두 정점을 보여주는데 이는 영상에 적용한 2차원 FPT의 결과이다. 파향에 있어서의 이러한 모호성은 육지의 위치라든지, 바람의 방향 혹은 수치모델 결과 등을 이용하여 결정하여야 한다. 이러한 2D-FFT를 통해 구해진 풍향은 실측자료와 $3^{\circ}{\sim}7^{\circ}$ 정도의 차이를 나타내고 있다. CMOD5 모델을 통해 얻어진 풍속의 값은 각각 실측자료와 2m/s 이하의 유사한 값들을 나타냈다.

해풍 효과에 의한 저층대기구조 변화의 측정 (Observation on Structural Change of Low Level Atmosphere due to Effect of Sea Breeze)

  • 전병일;김유근
    • 한국환경과학회지
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    • 제5권4호
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    • pp.441-451
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    • 1996
  • The surface meteorological and upper layer meteorological observation carried out to investigate influences of sea breeze effect on lower layer atmosphere at Gori nuclear power plant for 29∼30 July, 1996. According to surface meteorological data, the inflow of sea breeze was occurred 11:30 on 29 July, 10:30-on 30 July, respectively, at observation site. And the meteorological tower data showed that wind direction of sea breeze was identified as south-westerly, and wind speed of 58 m was 2 times stronger than that of 10 m. It is notworthy that surface inversion layer which built from the night time to daybreak of next day was not broken off by seab reeze's inflow for daytime, and strong inversion layer observed at 47∼243 m with moderately stable class (F) by URC. It was found that strong stable layer of potential temperature appeared at that layer, maximum relative humidity observed at the bottom of inversion layer and maximum mixing ratio observed in the low of inversion layer.

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ESTIMATING THE GEOSTROPHIC VELOCITY COMPONENT IN THE SEA SURFACE VELOCITY OBSERVED BY THE HF RADAR IN THE UPSTREAM OF THE KUROSHIO

  • Tokeshi, Ryoko;Ichikawa, Kaoru;Fujii, Satoshi;Sato, Kenji;Kojima, Shoichiro
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume II
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    • pp.672-675
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    • 2006
  • The geostrophic current component is estimated from the sea surface velocity observed by the long-range High-Frequency Ocean Radar (HF radar) system in the upstream of the Kuroshio, by comparing with geostrophic velocity determined from along-track T/P and Jason-1 altimetry data. However, the sea surface velocity of the HF radar (HF velocity) contains not only the geostrophic current but also the ageostrophic current such as tidal current and wind-driven Ekman current. Tidal current component is first extracted by the harmonic analysis of the time series of the HF velocity. Then, the Ekman current is further estimated from daily wind data of IFREMER by applying the least-square method to the residual difference between the HF velocity and the altimetry geostrophic velocity. As a result, the Ekman current in the HF velocity is estimated as 1.32 % of the wind speed and as rotated 45$^{\circ}$ clockwise to the wind direction. These parameters are found almost common in the Kuroshio area and in the Open Ocean. After these corrections, the geostrophic velocity component in the HF velocity agrees well with the altimetry geostrophic velocity.

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Changed Relationship between Snowfall over the Yeongdong region of the Korean Peninsula and Large-scale Factors

  • Cho, Keon-Hee;Chang, Eun-Chul
    • 한국지구과학회지
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    • 제38권3호
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    • pp.182-193
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    • 2017
  • A typical snowfall pattern occurs over the east coastal region of the Korean Peninsula, known as the Yeongdong region. The precipitation over the Yeongdong region is influenced by the cold and dry northeasterly wind which advects over warm and moist sea surface of the East Sea of Korea. This study reveals the influence of large-scale factors, affecting local to remote areas, on the mesoscale snowfall system over the Yeongdong region. The National Centers for Environmental Prediction-Department of Energy reanalysis dataset, Extended Reconstructed sea surface temperature, and observed snowfall data are analyzed to reveal the relationship between February snowfall and large-scale factors from 1981 to 2014. The Yeongdong snowfall is associated with the sea level pressure patterns over the Gaema Plateau and North Pacific near the Bering Sea, which is remotely associated to the sea surface temperature (SST) variability over the North Pacific. It is presented that the relationship between the Yeongdong snowfall and large-scale factors is strengthened after 1999 when the central north Pacific has warm anomalous SST. These enhanced relationships explain the atmospheric patterns of recent strong snowfall years (2010, 2011, and 2014). It is suggested that the newly defined index in this study based on related SST variability can be used for a seasonal predictor of the Yeongdong snowfall with 2-month leading.

2007년 하계 및 추계 경상북도 후포연악역 물리적 해황특성 (Physical Oceanographic Characteristics in Hupo Coastal area during Summer and Autumn, 2007)

  • 황재동;이용화;심정민;윤석현;진현국;김영숙;권기영;윤상철
    • 한국수산과학회지
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    • 제41권6호
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    • pp.505-510
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    • 2008
  • To understand the oceanographic characteristics of Hupo coastal waters as regards the East Korean Warm Current and the North Korean Cold Current, current direction and velocity were investigated by deploying a current meter in Hupo coastal waters during the summer and fall of 2007. Wind data were obtained from the homepage of the Korea Meteorological Administration. Water temperature was measured using a temperature meter attached to the current meter and a mini log. During summer, a south wind prevailed, while during the fall the wind blew from the north. Cold surface waters occurred on a large scale in summer, while in the fall, warm bottom water occurred frequently. After mid-November, when the surface water was cooler than $15^{\circ}C$, there was no difference in water temperature between the surface and bottom layers.

한반도 연안해역에서 인공위성 산란계(MetOp-A/B ASCAT) 해상풍 검증 (Validation of Satellite Scatterometer Sea-Surface Wind Vectors (MetOp-A/B ASCAT) in the Korean Coastal Region)

  • 곽병대;박경애;우혜진;김희영;홍성은;손은하
    • 한국지구과학회지
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    • 제42권5호
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    • pp.536-555
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    • 2021
  • 해상풍은 해양의 표층 해류 및 순환, 혼합층, 열속의 변화를 주도하며 해양-대기 상호작용을 이해할 수 있는 중요한 변수이다. 인공위성의 발달에 따라 산란계 관측 자료를 기반으로 산출한 해상풍은 여러 목적으로 광범위하게 사용되어 왔다. 한반도 연안과 같은 복잡한 해양 환경에서 산란계 관측 해상풍은 해양 및 대기 현상 이해에 중요한 요소이다. 따라서 위성 해상풍의 정확도 검증 결과가 다양한 활용을 위하여 중요하게 활용될 수 있다. 본 연구에서는 대표적인 산란계인 MetOp-A/B (METeorological OPerational satellite-A/B)에 탑재된 ASCAT (Advanced SCATterometer) 해상풍 자료를 한반도 주변의 16개 지점에서 2020년 1월부터 12월까지 실측된 해양기상부이 해상풍 자료와 비교하여 해상풍의 정확도를 검증하였다. 해수면으로부터 4-5 m 고도에서 관측된 부이 바람은 LKB (Liu-Katsaros-Businger) 모델을 활용하여 10 m의 중립 바람으로 변환하였다. 일치점 생산 과정 결과 MetOp-A와 MetOp-B에 대하여 5,544개와 10,051개의 일치점을 만들었다. 각 위성 해상풍 풍속의 평균제곱근오차는 1.36 m s-1와 1.28 m s-1, 편차는 0.44 m s-1와 0.65 m s-1로 나타났다. 산란계의 풍향은 MetOp-A와 MetOp-B에서 각각 -8.03°와 -6.97°의 음의 편차와 32.46°와 36.06°의 평균제곱근오차를 보였다. 이러한 오차들은 해양-대기 경계층 내의 성층과 역학과 관련된 것으로 추정된다. 한반도 주변 해역에서 산란계 해상풍은 특히 풍속이 약한 구간에서 실측 풍속보다 과대추정되었다. 또한 연안으로부터의 거리가 가까워질수록 오차가 증폭되는 특성이 나타났다. 본 연구 결과는 산란계 해상풍 자료를 이용하는 해양-대기 상호작용 및 태풍 연구와 같은 한반도 연안 해역의 예측 모델 발전에 기여할 수 있을 것으로 기대된다.

동해 외해역 해양 기상 특성 및 풍랑특보와 부이 관측 자료 비교 (2006-2013년) (Marine Meterological Characteristics by Comparison of High wind-wave alert and Moored Buoy data off the coast of the East Sea between 2006 and 2013)

  • 김윤배;김상미
    • 수산해양교육연구
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    • 제26권5호
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    • pp.1013-1025
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    • 2014
  • Marine meterological characteristics off the coast in the East Sea between 2006 and 2013 were investigated by comparing the high wind-wave alert and moored-measured significant wave high. Monthly and yearly variations of the high wind-wave alert duration off the coast in the central part of the East Sea are correlated with those of the significant wave height measurement with their minima in June and 2008 and maxima in December and 2012. Both the high wind-wave alert duration and significant wave height increase remarkably during 2010-2013 when compared with during 2006-2009. The remarkable increase, occurring dominantly in December, seems to be related with Arctic oscillation variability. However, the comparisons reveal that only about a half of high wind-wave alerts satisfy the criteria for issuing the high wind-wave alert. To issue the high wind-wave alert, the wind speed at the sea should exceed 14 m/s or the significant wave height should be higher than 3 m. The high wind-wave alerts unsatisfying the significant wave height criteria are issued mainly during spring and summer. These results imply that additional surface buoy moorings in the open basin of the East Sea are necessary for more accurate issue of the high wind-wave alert.

표층해류 신속예측을 위한 회선적분법의 적용 (Application of a Convolution Method for the Fast Prediction of Wind-Induced Surface Current in the Yellow Sea and the East China Sea)

  • 강관수;정경태
    • 한국해안해양공학회지
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    • 제7권3호
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    • pp.265-276
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    • 1995
  • 본 논문에서는 실시간 해황예보 시스템 개발의 일환으로 수행된 회선적분법을 이용한 신속 표층유속 재현에 대하여 다룬다. 바람응력은 공간적으로 균일하고 대 기압은 무시된다. Data Base 구축을 위하여 4방향의 바람(북서, 북동, 남서, 남동)을 고려하여 각 지점의 회선적분의 가중치를 Galerkin-FEM 모형에 의해 계산하였다. 시간에 따른 바람응력이 주어지면 구성된 Data Base를 이용하여 회선적분법에 의해 신속한 예보가 가능하다. 시간적으로 변하는 임의의 바람응력은 6시간 단위로 정의되는 wind pulse의 연속으로 표현되며 총 12개의 pulse(즉, 72시간전)가 convolution product에 사용된다. 회선적분법의 적용 가능성을 확인하기 위하여 황해 이상화한 해역과 황해와 동지나해에 이르는 실제 해역에서의 수치실험이 수행되었다. 고려한 바람응력은 역풍류 생성 확인을 위하여 시간에 따라 sin 함수적으로 변하는 북풍을 고려하였고, 실험 결과 역풍류 생성의 화인과 회선적분법을 이용한 신속 표층해류 예측 가능성을 확인할 수 있었다.

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Reconstruction and Validation of Gridded Product of Wind/Wind-stress derived by Satellite Scatterometer Data over the World Ocean and its Impact for Air-Sea Interaction Study

  • Kutsuwada, Kunio;Koyama, Makoto;Morimoto, Naoki
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.33-36
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    • 2007
  • We have persistently constructed gridded products of surface wind/wind stress over the world ocean using satellite scatterometer (ERS and Qscat). They are available for users as the Japanese Ocean Flux data sets with Use of Remote sensing Observation (J-OFURO) data together with heat flux components. Recently, a new version data of the Qscat/SeaWinds based on improved algorithm for rain flag and high wind-speed range have been delivered, and allowed us to reconstruct gridded product with higher spatial resolution. These products are validated by comparisons with in-situ measurement data by mooring buoys such as TAO/TRITON, NDBC and the Kuroshio Extension Observation (KEO) buoys, together with numerical weather prediction model products such as the NCEP-1 and 2. Results reveal that the new product has almost the same magnitude in mean difference as the previous version of Qscat product and much smaller than the NCEP-1 and 2. On the other hand, it is slightly larger root-mean-square (RMS) difference than the previous one and NCEPs for the comparison using the KEO buoy data. This may be due to the deficit of high wind speed data in the buoy measurement. The high resolution product, together with sea surface temperature (SST) one, is used to examine a new type of relationship between the lower atmosphere and upper ocean in the Kuroshio Extension region.

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