• 제목/요약/키워드: Sea-breeze front

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부산연안역에서 관측된 해풍전선의 특성 (On Characteristics of Sea Breeze Front observed in Pusan Coastal Area, Korea)

  • 전병일
    • 한국환경과학회지
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    • 제6권6호
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    • pp.629-636
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    • 1997
  • We have analyzed focusing on the characteristics, speed and width of sea breeze front in Pusan coastal area using the meteorological data observed at Kimhae air force meteorological station because the presence of the front has Important effects on the dInstributlon of air pollution. The inland penetration of sea breeze front was recognized by steep variation of meteorological parameters(wind direction, wind speed, temperature, dew point temperature, air pressure, relative humidity) before and after its passage and the variation of $SO_2$ concentration, the speed and width of the sea breeze front was 2.07m/s and 217m, respectively. The structure and inland penetration of sea breeeze front should be taken into account whenever a model is to be compared with detailed field measurements.

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해안지형의 복잡성에 따른 해풍침투 변화가 대기경계층에 미치는 영향 분석 (Impact of the Variation of Sea Breeze Penetration due to Terrain Complexity on PBL Development)

  • 박순영;이화운;이순환;이귀옥;지효은
    • 한국환경과학회지
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    • 제20권2호
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    • pp.275-289
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    • 2011
  • In order to clarify the relation between sea breeze penetration and Planetary Boundary Layer development in southeastern part of the Korean Peninsula, several numerical assessments were carried out using atmospheric numerical model WRF(Weather Research and Forecasting). Compared with onset time of sea breeze at eastern coast area(Uljin), the time at southern coast region(Masan) with complex costal line tend to delay for several hours. The penetration patterns of sea breeze between two coastal regions are some different due to the shape of their coastal line and back ground topography. Intensified valley wind due to high topography of lee side of Uljin can help penetration of sea breeze at early time. So penetration of sea breeze at early time often prevent PBL to develop at Uljin and lower PBL height last for a day time. But because of late penetration of sea breeze at Masna, PBL Height dramatically decrease after 1500LST. The distribution of front genesis function based on the heat and momentum variation are explained obviously the sea breeze penetration patterns and agreed well with the PBL height distribution.

도시형 중규모기상모델을 이용한 연안도시 해풍전선 발달 분석 (Analysis of Sea-breeze Frontogenesis over the Coastal Urban Area Using Urbanized MM5)

  • 황미경;오인보;김유근
    • 한국대기환경학회지
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    • 제27권4호
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    • pp.416-425
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    • 2011
  • To analyze the physical processes of sea-breeze development over a coastal urban area, numerical simulation for seabreeze (SB) and its frontogenesis was examined based on urbanized MM5 (uMM5) with urban canopy parameterization. On 6 August 2006, SB and its front were well developed in Busan under a weak offshore flow. As a result of wind vector, ZVB (Zero Velocity Boundary), potential temperature obtained the uMM5, at 0900 LST, SB advanced below 200 m height in the coastal areas and the internal boundary grew with the urban coastal region. At noon, the height of the SB head with updraft was approximately one and a half times (~600 m) higher than its depth in central urban. Applying the frontogenesis function, the SB structure for frontogenesis and frontolysis were complicated spatially; the dynamic effects of wind (i.e. convergence and tilting term) could play an important role in the growth of SB, especially the convergence effect.

속초연안에서 대기순환의 특성 (Characteristics of Atmospheric Circulation in Sokcho Coast)

  • 최효
    • 한국환경과학회지
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    • 제14권1호
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    • pp.41-51
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    • 2005
  • Using three-dimensional non-hydrostatical numerical model with one way double nesting technique, atmo­spheric circulation in the mountainous coastal region in summer was investigated from August 13 through 15, 1995. During the day, synoptic westerly wind blows over Mt. Mishrung in the west of a coastal city, Sokcho toward the East Sea, while simultaneously, easterly upslope wind combined with both valley wind from plain (coast) toward mountain and sea-breeze from sea toward inland coast blows toward the top of the mountain. Two different directional wind systems confront each other in the mid of eastern slope of the mountain and the upslope wind goes up to the height over 2 km, becoming an easterly return flow in the upper level over the sea and making sea-breeze front with two kinds of sea-breeze circulations of a small one in the coast and a large one in the open sea. Convective boundary layer is developed with a thickness of about 1km over the ground in the upwind side of the mountain in the west and a thickness of thermal internal boundary layer from the coast along the eastern slope of the mountain is only confined to less than 200 m. On the other hand, after sunset, no prohibition of upslope wind generated during the day and downward wind combined with mountain wind from mountain towardplain and land-breeze from land toward under nocturnal radiative cooling of the ground surfaces should intensify westerly downslope wind, resulting in the formation of wind storm. As the wind storm moving down along the eastern slop causes the development of internal gravity waves with hydraulic jump motion in the coast, bounding up toward the upper level of the coastal sea, atmospheric circulation with both onshore and offshore winds like sea-breeze circulation forms in the coastal sea within 70 km until midnight and after that, westerly wind prevails in the coast and open seas.

The Influence of Opposing Flow and Its Separation of SBF over Masan on Southeast Coast of the Korea

  • Ji, Hyo-Eun;Lee, Kwi-Ok;Lee, Soon-Hwan;Park, Soon-Young;Jeon, Won-Bae;Lee, Hwa-Woon
    • Asian Journal of Atmospheric Environment
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    • 제5권4호
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    • pp.216-227
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    • 2011
  • A Sea breeze front (SBF) appears clear particularly if there is opposing wind, and the convergence zone along a SBF affects air quality in coastal areas. This study analyzes features of SBF separation in the presence of an opposing flow in the southeastern coastal area of Korea Peninsula. Using a Regional Atmospheric Modeling System (RAMS) numerical simulation and an opposing flow, two types of SBF were observed at Masan coastal area of Korea. In one, the SBF penetrated inland despite of the opposing flow at Jinhae (1100 LST), Wondong (1700 LST), Saenglim (1700 LST), and Miryang (1700 LST). In the other, the SBF remained on the coastline along with Jinhae (1100 LST), Masan (1400 LST), Jinbuk (1400 LST), and Gaecheon (1700 LST), because the inflow of the sea breeze was not sufficient to penetrate inland against the opposing flow. This study shows that SBFs are affected by the formation of an opposing flow, as well as the inflows of a sea breeze and the opposing flow.

남한 지역에서 여름철 맑은 날의 대기 오염물 확산에 대한 수치적 연구 (A Numerical Study of Atmospheric Pollutant Dispersionon over South Korea on Sunny Summer Days)

  • 이태영;김승범
    • 한국환경과학회지
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    • 제5권4호
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    • pp.411-427
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    • 1996
  • A Lagrangian dispersion model has been developed to study the transport of atmospheric pollutants over the southern Korean peninsula on sunny summer days. A mesoscale atmospheric model has been employed to provide the wind fields and information for turbulent diffusion for the calculation of trajectories using a conditioned particle technique. The model has been applied to the simulation of the transport of atmospheric pollutants emitted from five sources in the coastal locations under various synoptic scale winds. Under calm synoptic scale condition, the particles emitted during daytime are mixed vertically and transported toward inland by sea-breeze, according to the model simulation. The particles are then transported upward at she sea-breeze front or by the upward motion over the mountain, and some particles show tendency of returning toward the coast by the return flow of the sea-breeze circulation. The particles are found to remain over the peninsula throughout the integration period under calm synoptic scale condition. When there is westerly synoptic scale winds the particles emitted in the west coast can reach the east coast within a day of faster depending on the speed. With a synoptic scale southerly wind of 5 m/s, most of the particles from the fine sources are advected toward inland during daytime. During nighttime, significant portion of particles released in the west coast remains over the land, while most particles released in the east coast move toward the sea to the east of the middle peninsula.

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연안지역 특성에 따른 상세 토지피복도 적용 효과 및 기상장에 미치는 영향 분석 (The Application of High-resolution Land Cover and Its Effects on Near-surface Meteorological Fields in Two Different Coastal Areas)

  • 정주희;김유근
    • 한국대기환경학회지
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    • 제25권5호
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    • pp.432-449
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    • 2009
  • In this study, the effects of high-resolution land cover on the simulation of near-surface meteorological fields were evaluated in two different coastal regions using Weather Research and Forecasting (WRF) model. These analyses were performed using the middle classification land cover data upgraded by the Korean Ministry of Environment (KME). For the purpose of this study, two coastal areas were selected as follows: (1) the southwestern coastal (SWC) region characterized by complex shoreline and (2) the eastern coastal (EC) region described a high mountain and a simple coastline. The result showed that the application of high-resolution land cover were found to be notably distinguished between the SWC and EC regions. The land cover improvement has contributed to generate the realistic complex coastline and the distribution of small islands in the SWC region and the expansion of urban and built-up land along the sea front in the EC region, respectively. The model study indicated that the improvement of land cover caused a temperature change on wide areas of inland and nearby sea for the SWC region, and narrow areas along the coastal line for the EC region. These temperature variations in the two regions resulted in a decrease and an increase in land-breeze and sea-breeze intensity, respectively (especially the SWC region). Interestingly, the improvement of land cover can contribute large enough to change wind distributions over the sea in coastal areas.

황해 중동부해역에서 CTD와 음향탐지기로 관측한 내부파와 표층 혼합 (Internal Waves and Surface Mixing Observed by CTD and Echo Sounder in the mid-eastern Yellow Sea)

  • 이상호;최병주;정우진
    • 한국해양학회지:바다
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    • 제18권1호
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    • pp.1-12
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    • 2013
  • 황해 중동부 해역에서 2012년 9월에 동서방향으로 설정된 단면과 금강 하구 외측 저염수 지역의 정박지점에서 음향탐지기를 이용하여 음향 후방산란 구조(acoustic backscatter profile)를 측정하였으며 CTD로 물성구조도 관측하였다. 수심 50 m 부근 해역에 발달한 해저사주 주변에서 조석전선이 형성되었다. 이 사주의 동쪽에서 저조 때 음향탐지기로 관측된 내부파는 파고가 약 15 m, 평균파장이 500 m정도이며, 파형이 비선형 오목형 파(depression wave)였다. 이 내부파는 남동쪽으로 흐르는 조류가 사주를 지나면서 만든 조석내부파로 해석되었다. 약한 비선형성 단독 내부파 이론을 적용하였을 때 오목형 내부파들의 전파속도는 약 50 cm/s 정도이고, 주기는 16~18분 정도로 계산되었다. 강한 음향 산란층이 국지적으로 7 m 정도 상승된 지역의 해면에서 Dinoflagelates Cochlodinium에 의한 적조가 관찰되었다. 금강하구 외측 정박지점에서 한 시간간격으로 관측한 물성구조는 해륙풍과 조류에 따른 염분약층 깊이 변동을 보여 주었다. 창조류가 북동쪽으로 강하게 흐르고 육풍이 서쪽으로 7 m/s 이상 불었을 때에는 염분약층이 일시적으로 상승하였고, 음향구조 영상은 해면 하 약 5 m까지 복잡한 구조를 보였는데 포획과 관입 형태를 갖는 강하고 약한 산란신호의 기울어진 음향구조가 수 십초 간격으로 교대로 나타났다. 표면 혼합층에서의 이러한 음향구조는 황해 중동부 연안역에서는 처음으로 관측되었다. 음향 후방산란 영상과 탁도 자료는 창조류와 육풍에 의한 표층 취송류가 만드는 수직적인 유속차(shear)에 의해 맑은 하층수가 탁한 상층으로 관입 혹은 포획된 것임을 제시한다.

영덕 고래불 모래해안의 지형 특성과 변화 (Geomorphological Properties and Changes of Goreabul Sand Beach in Yeongdeok)

  • 방현주;이광률
    • 한국지형학회지
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    • 제18권3호
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    • pp.83-92
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    • 2011
  • 본 연구는 경상북도 동해안에서 가장 규모가 큰 영덕군 고래불 모래해안을 대상으로, 사빈과 해안사구의 지형 기복 및 해안 퇴적물의 특성과 변화를 분석하였다. 모래의 입도를 분석한 결과, 고래불 해안은 강원도 동해안과는 달리, 여름을 제외한 대부분 계절에 파랑과 연안류가 북류하면서 사빈의 모래 이동과 퇴적을 유발하였고, 여름에는 남북간의 흐름이 둔화되거나 남류가 발생하는 것으로 나타났다. 사빈에서는 여름철에 태풍이나 폭풍으로 인한 침식작용이 발생하였고 상대적으로 조립의 모래가 퇴적되는 것으로 나타났으며, 가을철과 겨울철에는 모래의 퇴적이 활발하게 발생하는 것으로 분석되었다. 해안사구의 전면부에서는 모든 계절에 해풍에 의해 모래가 퇴적되었으며, 특히 겨울철에 퇴적작용이 가장 활발하였다.