• 제목/요약/키워드: sea-surface winds

검색결과 131건 처리시간 0.027초

강설시 도심지역 에어러솔의 물리.화학적 특성 (The Physio-Chemical Characteristics of Aerosol in Urban Area During Snowfall)

  • 김민수;이동인;유철환
    • 한국환경과학회지
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    • 제10권3호
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    • pp.201-208
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    • 2001
  • To investigate the physio-chemical components and properties of aerosol particles in urban area sampling of aerosol particles was carried out in the campus of Hokkaido University, Sapporo, Japan, during snowfall. Aerosol particles were collected on millipore filter papers using a low volume air sampler. Their shapes, sizes and chemical components were analyzed by a SEM(Scanning Electron Microscope) and an EDX(Energy Dispersive X-ray). As a results, ice crystals of dendrite and column types were predominantly shown at mature and developing stage of snowfall intensity. The denerite and sector plate types of ice crystals were mainly originated from the sea but column types were come from soil. Scavenging effect by snowfall was greatly also shown at dendrite type ice crystals that embryo was fully developd. Al, Si elements were shown at high frequencies as compared with others. Na, Cl components were especially shown at high frequencies under the sea-breeze wind during snowfall. Anthropogenic aerosol particles had shown with irregular shapes and sizes, relatively. Mainly 3-7$\mu$m aerosol particles were abundant and coarse particles also could be seen during snowfall. Ca, Zn, Fe components mainly caused by spike tires from vehicles in winter season were dominant before snowfall, however the element S mainly caused by human activity was rich after snowfall. The pH values of snow in Sapporo city were higher than those at coastal area. The concentration of chemical components in aerosol particles was also affected by surface winds. Aerosol particles in urban area, Sapporo were mainly affected by human activities like vehicles and combustion with wind system. And their types were related with snowfall intensity.

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2014년 가을철 이어도 종합과학기지에서의 난류 플럭스의 관측 및 분석 (Observation and Analysis of Turbulent Fluxes Observed at Ieodo Ocean Research Station in Autumn 2014)

  • 윤정희;오효은;하경자
    • 대기
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    • 제25권4호
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    • pp.707-718
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    • 2015
  • This study investigates the characteristics of turbulent fluxes observed at Ieodo Ocean Research Station (IORS) in autumn 2014. The 10 Hz IORS data is quality controlled and calculated to be the 30 minutes turbulent fluxes. The quality control consists of five steps: a weather check, Vickers and Mahrt (VM) sequential check, VM parallel check, flag check, and direction check. Since the IORS is an open-sea station with no orographic influence, there are no significant diurnal variations for the turbulent fluxes and 10 m wind speed. According to stabilities, the unstable and semi-unstable states appear more than 28% and 70% in autumn, respectively and they have strong winds of over $10m\;s^{-1}$. In addition, the turbulent fluxes increase with increasing wind speed. In particular, the latent heat flux and its deviations are clearly shown because the latent heat flux is influenced by the change of both the sea surface roughness and wave height induced by the wind. To demonstrate the changes of the turbulent fluxes before and after typhoon, Vongpong (1419), which is the most intense typhoon affecting the Korean Peninsula in 2014, is considered. The turbulent flux fluctuates in accordance with the location of Vongpong. The turbulent fluxes have a large (small) variation when Vongpong approaches (retreats) at the IORS. The overall results represent that the IORS data helps us understand physical processes related to air-sea interaction by providing the valuable and reliable observed data.

해양기상 관측자료를 이용한 서해 중부해역 해무 분석 (Analysis of a Sea Fog Using Ocean-air Observation Data in the Mid-Yellow Sea off Korea)

  • 오희진;이호만;서태건;윤용훈;김태희
    • 한국지구과학회지
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    • 제24권4호
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    • pp.303-314
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    • 2003
  • 2002년 7월 8일에서 10일까지 AWS와 CTD를 이용하여 서해 중부 연안역에서 해양기상관측을 실시하였다. 수심이 낮은 태안반도 연안역에서 17$^{\circ}C$ 이하의 냉수가 출현하였고, 36$^{\circ}$20'N와 36$^{\circ}$30'N 사이에 정선을 따라 조석전선이 형성되었다. 기온의 분포는 수온의 분포양상과 유사하게 나타났다. 덕적도 주변(Al)에서 24시간 연속관측결과, 조류와 같은 주기로 북동부로부터 고온저염수와 남서부로부터 저온고염수의 이동이 관측되었다. 관측기간 중에 7월 8일 23시에서 9일 1시 30분까지, 9일 3시에서 5시까지 해무가 발생하였다. 해무발생 시 북태평양 고기압이 약해지면서 기온은 18$^{\circ}C$까지 하강하였고, 바람은 2-4m/s의 북동풍이 불었다. 위성사진을 분석하였을 때, 이 안개는 표층수온이 높은 황해서부를 중심으로 발생하여 시간이 지나면서 관측해역으로 확장된 증기안개이다. 이 해무는 기온과 풍속이 상승하면서 소멸되었다.

최근 남극의 기후변화 고찰 (A brief review of recent Antarctic climate change)

  • 김성중;임창규
    • 한국제4기학회지
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    • 제32권1_2호
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    • pp.30-40
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    • 2018
  • 화석연료 사용 증가에 의해 북극은 다른 지역보다 온난화가 2-3배 빠르게 진행 중이며 이를 '북극 온난화 증폭'이라 한다 (Overland et al., 2017; Goose et al, 2018). 북극 온난화 증폭과 관련하여 북극 해빙은 급격히 줄고 있고, 그린랜드 빙하도 연안을 중심으로 빠르게 녹고 있다 (State of Climate, 2018). 그렇지만 남극은 기후변화의 양상이 북극과 다르게 나타나는데, 남극 반도와 서남극은 온난화가 빠르고 해빙과 육상 빙하의 감소도 두드러진데 반해 동남극은 온난화가 거의 없고 해빙과 육상빙하는 약간 증가 추세에 있다. 서남극과 동남극이 이와 같이 대조적으로 반응이 나타나는 원인은 아문젠해 저기압 강화(deepening)에 따른 시계방향의 순환 증가로 따뜻한 해양성 공기가 남극 반도와 서남극으로 유입되면서 서남극의 기온은 올라가는 경향을 보이는데 반해, 동남극은 차고 냉각된 남극 대륙의 공기가 로스해 쪽으로 불어나오며 수온을 낮추고 해빙을 확장시키는 역할을 한다. 또한 성층권 오존 농도 감소에 따라 남극 주변을 시계 방향으로 도는 제트기류가 강화됨에 따라 동남극은 약간의 냉각화가 나타나는 것으로 여겨진다. 본 연구에서는 최근 남극의 기후변화가 북극과 다르게 나타나는 현상을 살펴보고 가능한 이유를 고찰해 보고자 한다.

여름철 황해 동부 연안을 따라 흐르는 연안 경계류: 수치 모델 실험 (Coastal Current Along the Eastern Boundary of the Yellow Sea in Summer: Numerical Simulations)

  • 권경만;최병주;이상호;조양기;장찬주
    • 한국해양학회지:바다
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    • 제16권4호
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    • pp.155-168
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    • 2011
  • 여름철 황해 동부 연안 저층에 형성되는 수온전선을 따라 북쪽으로 흐르는 연안 경계류의 크기와 위치에 영향을 주는 요소들을 3차원 수치모형인 ROMS를 이용하여 살펴보았다. 여름에 수심이 깊은 외해에서는 태양 가열로 강한 성층에 존재하지만 수심이 얕은 연안에서는 조류가 일으키는 저층 혼합으로 해수물성이 연직으로 잘 혼합된다. 이 과정에서 성층화된 외해와 연직 혼합이 잘되고 수온이 높은 연안 사이에서 수온전선이 형성되며, 수온전선을 가로 지르는 방향의 밀도 구배에 의해 수온전선을 따라 북쪽으로 흐르는 연안 경계류가 발생함을 확인하였다. 해류계를 이용한 현장 관측에서도 약 10 cm/s로 북상하는 연안 경계류가 관측되었다. 이러한 수온전선을 따라 북쪽으로 흐르는 연안 경계류는 주로 조류와 바람의 영향을 크게 받는다. 조류에 의한 저층 혼합과 바람에 의한 표층 혼합이 여름철 황해 동부 경계류에 가장 큰 영향을 주는 요소다. 바람에 의한 표층 혼합은 북쪽으로 흐르는 황해 동부 연안 경계류의 폭을 더 넓게 하여 수송량을 증가시킨다. 강물의 유입과 일사량의 변화는 연안 경계류의 세기와 위치 변화에 큰 영향을 주지 않는다. 성층이 강하게 이루어지는 여름철 황해 동부 연안 $36^{\circ}N$에서는 대조기(소조기) 동안 강한(약한) 조류가 북쪽으로 흐르는 해류의 수송량을 증가(감소)시키지만, 동안 경계류의 위치를 크게 변화시키지는 않는다. 연안 경계류의 평균적인 위치는 바람의 세기 변화에 따라 변화하였다.

Ecosysteme de I′Etang de Berre (Mediterranee nord-occidentale) : Caracteres Generales Physiques, Chimiques et Biologiques

  • Kim, Ki-Tai
    • 환경생물
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    • 제22권2호
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    • pp.247-258
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    • 2004
  • Climatological, hydrological and planktonical research studies, measurements of primary production and photosynthetic efficiency from December 1976 to December 1978 have been carried out in two brackish lakes: Lake Etang de Berre and Lake Etang de Vaine located in the French Mediterranean coast, in the region of Carry-le-Rouet located on the north-west Mediterranean near Marseilles, and in fresh water inflows from 4 Rivers (Touloubre, Durance, Arc, Durancole) to Lake Etang de Berre. Physico-chemical parameters were measured for this study: water temperature, salinity, density, pH, alcalinity, dissolved oxygen (% saturation), phosphate, nitrate, nitrite, silicate etc. Diverse biological parameters were also studied: photosynthetic pigments, phaeopigments, specific composition and biomass of phytoplankton, primary pelagic production etc. Climatical factors were studied: air-temperature, solar-radiation, evaporation, direction (including strength) of winds, precipitation and freshwater volume of the four rivers. The changes in Lake ‘Etang de Berre’ ecosystem depend on the quality of the water in the Durance River, and on the effects of seawater near the entrance of the Caronte Canal. The water quality of the lake varies horizontally and vertically as a result of atmospheric phenomena, maritime currents and tides. The distribution of water temperatures is generally heterogeneous. Southeasterly winds and the Northeasterly Mistral wind are important in the origins of circulated and mixed water masses. These winds are both frequent and strong. They have, as a result, a great effect on the water environment of Lake Etang de Berre. In theory, the annual precipitation in this region is well over eight times the water mass of the lake. The water of the Durance River flows into Lake Etang de Berre through the EDF Canal, amounting to 90% of the precipitation. However, reduction of rainfall in dry seasons has a serious effect on the hydrological characteristics of the lake. The temperature in the winter is partially caused by the low temperature of fresh water, particularly that of the Durance River. The hydrological season of fresh and brackish water is about one month ahead of the hydrological season of sea water in its vicinity. The salinity of Lake Etang de Berre runs approximately 3$\textperthousand$, except at lower levels and near the entrance to the Caronte Canal. However, when the volume of the Durance River water is reduced in the summer and fall, the salinity rises to 15$\textperthousand$. In the lake, the ratio of fresh water to sea water is six to one (6:1). The large quantities of seston conveyed by rivers, particularly the Durance diversion, strongly reduce the transparency in the brackish waters. Although the amount of sunshine is also notable, transparency is slight because of the large amount of seston, carried chiefly by Tripton in the fresh water of the Durance River. Therefore, photosynthesis generally occurs only in the surface layer. The transparency progressively increases from freshwater to open seawater, as mineral particles sink to the bottom (about 1.7kg $m^{-2}a^{-1}$ on the average in brackish lakes). The concentration of dissolved oxygen and the rate of oxygen saturation in seawater (Carry-le-Rouet) ranged from 5.0 to 6.0 $m\ell$ㆍ.$1^{-1}$, and from 95 to 105%, respectively. The amount of dissolved oxygen in Etang de Berre oscillated between 2.9 and 268.3%. The monographs of phosphate, nitrate, nitrite and silicate were published as a part of a study on the ecology of phytoplankton in these environments. Horizontal and vertical distributions of these nutriments were studied in detail. The recent diversion of the Durance River into Lake Etang de Berre has effected a fundamental change in this formerly marine environment, which has had a great impact in its plankton populations. A total of 182 taxa were identified, including 111 Bacillariophyceae, 44 Chlorophyceae, and 15 Cyanophyceae. The most abundant species are small freshwater algae, mainly Chlorophyceae. The average density is about $10^{8}$ cells $1^{-1}$ in Lake Etang de Berre, and about double that amount in Lake Etang de Vaine. Differences in phytoplankton abundance and composition at the various stations or at various depths are slight. Cell biovolume V (equivalent to true biomass), plasma volume VP (‘useful’ biomass) and, simultaneously. the cell surface area S and S/V ratio through the measurement of cell dimensions were computed as the parameters of phytoplankton productivity and metabolism. Pigment concentrations are generally very high on account of phytoplankton blooms by Cyanophyceae, Chlorophyceae and Cryptophyceae. On the other hand, in freshwaters and marine waters, pigment concentrations are comparatively low and stable, showing slight annual variation. The variations of ATP concentration were closely related to those of chlorophyll a and phytoplankton blooms only in marine waters. The carbon uptake rates ranged between 38 and 1091 mg$Cm^{-2}d^{-1}$, with an average surface value of 256 mg; water-column carbon-uptake rates ranged between 240 and 2310 mg$Cm^{-2}d^{-1}$, with an average of 810, representing 290 mg$Cm^{-2}$, per year 45 000 tons per year of photosynthetized carbon for the whole lake. Gross photosynthetic production measured by the method of Ryther was studied over a 2-year period. The values obtained from marine water(Carry-le-Rouet) ranged from 23 to 2 337 mg$Cm^{-2}d^{-1}$, with a weighted average of 319, representing about 110 gCm$^{-2}$ per year. The values in brakish water (Etang de Berre) ranged from 14 to 1778 mg$Cm^{-2}d^{-1}$, with a weighted average of 682, representing 250 mg$Cm^{-2}$ per year and 38 400 tons per year of photosynthesized carbon for the whole lake.

한반도 서해 연안 해역에서의 해양 부이 관측 수온과 위성 마이크로파 관측 해수면온도의 비교 (Comparison of Sea Surface Temperature from Oceanic Buoys and Satellite Microwave Measurements in the Western Coastal Region of Korean Peninsula)

  • 김희영;박경애
    • 한국지구과학회지
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    • 제39권6호
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    • pp.555-567
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    • 2018
  • 본 연구에서는 서해 연안에서의 실측-위성 해수면온도 차이를 규명하고 그 특성을 분석하기 위해 GCOM-W1/AMSR2 마이크로파 해수면온도 자료와 서해 연안에 위치한 덕적도, 칠발도, 외연도 해양기상 부이의 실측 수온 자료를 활용하여 2012년 7월부터 2017년 12월까지 총 6,457개의 일치점 자료를 생산하였다. 5년 이상의 덕적도, 칠발도, 외연도 해양 부이 수온 자료와 AMSR2 해수면온도를 비교하여 정확도를 제시하였다. 마이크로파 위성 해수면온도와 현장 관측 부이 해수면온도 간의 차이는 풍속과 수온 등 환경 요인에 대한 의존성을 가지는 것으로 나타났다. 낮시간 풍속이 약할 때 ($<6ms^{-1}$) AMSR2 해수면온도는 실측 해수면온도보다 높게 산출되며, 밤시간에 대해서는 풍속이 커질수록 양의 편차가 증가함을 밝혔다. 또한 AMSR2 해수면온도와 실측 해양부이 수온 간의 차이가 증가하는 경향은 낮은 온도에서 마이크로파 센서의 민감도의 저하와 육지에 의한 자료오염과 관련이 있는 것으로 나타났다. 실측-위성 해수면온도 차이를 월별로 도시해본 결과, 마이크로파 위성 해수면온도의 편차는 강한 바람이 부는 겨울철에 가장 커진다고 알려져 있던 기존의 경향성과는 달리 덕적도, 칠발도 부이에서는 여름철 가장 큰 해수면온도 편차값이 나타났다. 이러한 차이는 부이의 위치에 따른 조석 혼합의 공간적 차등에 기인한 것으로 사료된다. 본 연구는 인공위성 합성장에 기여도가 높은 마이크로파 위성 해수면온도를 사용할 때 한반도 서해안에서 발생할 수 있는 문제점과 제한점을 제시하였다.

MJO의 다중스케일 분석을 통한 수십년 변동성 (A multi-scale analysis of the interdecadal change in the Madden-Julian Oscillation)

  • 이상헌;서경환
    • 대기
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    • 제21권2호
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    • pp.143-149
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    • 2011
  • A new multi-timescale analysis method, Ensemble Empirical Mode Decomposition (EEMD), is used to diagnose the variation of the MJO activity determined by 850hPa and 200hPa zonal winds from the National Centers for Environmental Prediction/National Center for Atmospheric Research (NCEP/NCAR) Reanalysis data for the 56-yr period from 1950 to 2005. The results show that MJO activity can be decomposed into 9 quasi-periodic oscillations and a trend. With each level of contribution of the quasi-periodic oscillation discussed, the bi-seasonal oscillation, the interannual oscillation and the trend of the MJO activity are the most prominent features. The trend increases almost linearly, so that prior to around 1978 the activity of the MJO is lower than that during the latter part. This may be related to the tropical sea surface temperature(SST). It is speculated that the interdecadal change in the MJO activity appeared in around 1978 is related to the warmer SST in the equatorial warm pool, especially over the Indian Ocean.

黃海水 와 循環에 관한 考察 (A Note on Water Masses and General Circulation in the Yellow Sea (Hwanghae))

  • 이흥재
    • 한국해양학회지
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    • 제19권2호
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    • pp.187-194
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    • 1984
  • 黃海에서 水塊와 循環에 대해 간략히 檢討, 討議하였다. 水塊는 黃海冷水, 黃海溫流水, 沿岸水, 陽子江 稀釋수 네가지로 分類된다. 黃海冷水는 長技 海洋觀測資料와 최근 CTD로 資料부터 32.0~33.0%의 鹽分, 1$0^{\circ}C$이하의 水溫을 갖고 있는 것으로 定義할 수 있다. 海水循環은 南部海域에서 年中 反時計方向의 海水循環이 存在한다. 겨울철에는 中國沿岸을 따라 南向하는 沿岸流流가 北風, 北西風으로 인해 强하게 나타나며 濟州道 西部 海域에 강한 水溫.鹽分前線이 잘 보여주듯 黃海暖流는 弱해진다. 반면에 여름철에는 陽子江 釋수가 濟州道 쪽을 향해 北東쪽으로 擴張하며 中國 沿岸流가 상당히 減少하게 된다. 지금 까지 여름철 東南黃海에서 北向流를 黃海暖流로 分類하였으나 류의 延長이 아니라 沿岸水와 黃海冷水사이 境界面을 따라 形成되는 密度流로 보는 것이 더욱 妥當하다.

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Seasonal Changes of Water Properties and Current in the Northernmost Gulf of Aqaba, Red Sea

  • Manasrah, Riyad;Zibdah, Mohammad;Al-Ougaily, Firas;Yusuf, Najim;Al-Najjar, Tariq
    • Ocean Science Journal
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    • 제42권2호
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    • pp.103-116
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    • 2007
  • Seasonal changes of tide signal(s), temperature, salinity and current were studied during the years 2004-2005 in the northernmost Gulf of Aqaba, which is under developmental activities, to obtain scientific bases for best management and sustainability. Spectrum analysis revealed permanent signals of tide measurements during all seasons, which represented semidiurnal and diurnal barotropic tides. The other signal periods of 8.13, 6.10-6.32, 4.16 and 1.02-1.05 h were not detected in all seasons, which were related to shallow water compound and overtides of principle solar and lunar constituent and to seiches generated in the Red Sea and the Gulf of Aqaba. Spatial and temporal distribution of temperature, salinity and density showed significant differences between months in the coastal and offshore region and no significant differences among the coastal sites, between the surface and bottom waters and between coastal and offshore waters. Therefore, the temporal and spatial variation of water properties in the northernmost Gulf of Aqaba behave similarly compared to other parts. The coastal current below 12 m depth was weak $(3-6\;cms^{-1})$ and fluctuated from east-northeastward to west-southwestward (parallel to the shoreline), which may be related to the effect of bottom topography and/or current density due to differential cooling between eastern and western parts in the study area, and wind-induced upwelling and downwelling in the eastern and western side, respectively. The prevailing northerly winds and stratification conditions during summer were the main causes of the southward current at 6 and 12 m depths with average speed of 28 and $12cms^{-1}$ respectively.