• 제목/요약/키워드: the Yellow Sea

검색결과 1,321건 처리시간 0.026초

A Numerical Study on the Wintertime Upwind flow of the Yellow Sen in an Idealized Basin

  • Kyung, Tae-Jung;Park, Chang-Wook;Oh, Im-Sang;Lee, Ho-Jin;Kang, Hyoun-Woo
    • Journal of the korean society of oceanography
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    • 제37권3호
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    • pp.91-107
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    • 2002
  • The wintertime upwind flow in the Yellow Sea has been investigated through a series of two-dimensional numerical experiments in an idealized basin. A total of 10 experiments have been carried out to examine the effects of wind forcing, bottom friction and the presence of oceanic currents sweeping the shelf of the East China Sea. A spatially uniform steady and periodic wind stresses are considered along with comparison of linear and quadratic formulations. The wind-driven flow in the absence of oceanic current has been computed using Proudman open boundary condition (POBC), while the wind-driven current in the presence of oceanic current has been computed using Flather’s radiation condition (FOBC). The oceanic currents to be prescribed at the open boundary have been simulated by specifying uniform sea level gradients across the Taiwan Strait and the eastern ECS shelf, Calculations show that, as seen in Lee et al. (2000), oceanic flow little penetrates into the Yellow Sea in the absence of wind forcing unless a unrealistically low rate of bottom frictional dissipation is assumed. Both steady and time-periodic wind stresses invoke the upwind flow along the central trough of the Yellow Sea, independently of the presence of the oceanic current. The presence of oceanic currents very marginally alters the north-south gradient of the sea surface elevation in the Yellow Sea. Changes in the intensity and direction of the wind-induced mean upwind flow are hardly noticeable in the Yellow Sea but are found to be significant near Cheju Island where the gradient is reduced and therewith contribution of Ekman transport increases. In case of steady wind forcing circulation patterns such as two gyres on the slope sides, a cyclonic gyre on the western slope and an anticyclonic gyre on the eastern slope persist and the upwind flow composes part of the cyclonic gyre in the Yellow Sea. While in case of the time-periodic wind stress the appearance and disappearance of the patterns are repeated according to the time variation of the wind stress and the upwind flow accordingly varies with phase delay, mostly intensifying near the time when the wind forcing is approximately near the middle of the decaying stage.

한국 남해와 서해에서 출현하는 황아귀(Lophius litulon)의 위내용물 조성 비교 (Comparison of Stomach Contents of Yellow Goosefish Lophius litulon, in the South Sea and Yellow Sea, Korea)

  • 김도균;정재묵;이승종;강수경;성기창;강다연;진수연;백근욱
    • 한국수산과학회지
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    • 제55권5호
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    • pp.714-720
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    • 2022
  • A dietary comparison of yellow goosefish Lophius litulon in the South Sea and Yellow Sea was performed by analyzing stomach contents. Using a bottom trawl net from fisheries resources survey vessels of the National Institute of Fisheries Science, 326 individuals were collected from the South Sea and 166 individuals were collected from the Yellow Sea. The total length range of L. litulon was 5.3-68.4 cm for individuals collected from the South Sea and 7.5-55.1 cm for individuals collected from the Yellow Sea. Based on the index of relative importance and the variation in stomach contents by fish size, L. litulon was found to be a piscevore and a spatiotemporally opportunistic feeder fish that fed mainly on pisces. There were differences in the composition of the stomach contents by season, location, and the interaction between the season and the location. Thus, the diet of L. litulon is affected by the prey abundance and prey spectrum of the habitat.

해수면 온도 변화가 서해상 강설에 미치는 영향 연구 (A Study of the Effects of SST Deviations on Heavy Snowfall over the Yellow Sea)

  • 정재인;박록진
    • 대기
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    • 제23권2호
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    • pp.161-169
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    • 2013
  • We examine the effects of the sea surface temperature (SST) distribution on heavy snowfall over the Yellow Sea using high-resolution SST products and WRF (Weather Research and Forecasting) model simulations in 30 December 2010. First, we evaluate the model by comparing the simulated and observed fresh snowfall over the Korean peninsula (Ho-Nam province). The comparison shows that the model reproduces the distributions and magnitudes of the observed snowfall. We then conduct sensitivity model simulations where SST perturbations by ${\pm}1.1^{\circ}C$ relative to baseline SST values (averaged SST for $5{\sim}15^{\circ}C$) are uniformly specified over the region of interest. Results show that ${\pm}1.1^{\circ}C$ SST perturbation simulations result in changes of air temperature by $+0.37/-0.38^{\circ}C$, and by ${\pm}0.31^{\circ}C$ hPa for sea level pressure, respectively, relative to the baseline simulation. Atmospheric responses to SST perturbations are found to be relatively linear. The changes in SST appear to perturb precipitation variability accounting for 10% of snow and graupel, and 18% of snowfall over the Yellow Sea and Ho- Nam province, respectively. We find that anomalies of air temperature, pressure, and hydrometeors due to SST perturbation propagate to the upper part of cloud top up to 500 hPa and show symmetric responses with respect to SST changes.

하계 제주도 주변의 해역 및 해수순환 (Water masses and circulation around Cheju-Do in summer)

  • 김구;노홍길;이상호
    • 한국해양학회지
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    • 제26권3호
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    • pp.262-277
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    • 1991
  • 1980년 6월과 1981년 8월 제주해협과 황해의 동남 해역에서 8-16해리 간격으로 수 온-염분의 정밀 관측을 실시한 결과, 대양성의 고온 고염수가 제주도 서쪽연안 20 km 이내에 존재함을 발견하였다. 동시에 제주도 주변 해역의 표층에 나타나는 저염분 골 이 양자강퇴 해역의 저염분수에서 기원함이 확인되었다. 이 골에 의해 고온 고염수는 황해 표층수와 분리되며, 저층에서는 황해의 저층냉수와 전선을 이루고 있다. 황해 냉 수는 양자강퇴의 70 m 수심을 따라 동지나해를 향하여 남하하며, 또한 부분적으로 제주 해협의 북쪽 단면에도 나타나 남해로 유입 가능성이 크다. 이러한 복잡한 수계구조와 공간적 분포는 황해난류가 한국 서해안을 향하여 북상한다는 기존 학설(Uda, 1934)과 는 일치하지 않으며, 지속적인 조밀한 정선관측을 제주도 주변 해역에서 순서하여 해 류 구조의 시·공간적 변동상을 파악하여야 한다.

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위 내용물 및 지방산 구성을 통한 황해 모악류(Sagitta crassa와 S. nagae)의 먹이 섭식 특성 (Diet of Chaetognaths Sagitta crassa and S. nagae in the Yellow Sea Inferred from Gut Content and Fatty Acid Analyses)

  • 윤현진;고아라;강정훈;최중기;주세종
    • Ocean and Polar Research
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    • 제38권1호
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    • pp.35-46
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    • 2016
  • To understand the diet of chaetognaths, the gut content and fatty acid trophic makers (FATMs) of Sagitta crassa and S. nagae, which are the most predominant species of chaetognath in the Yellow Sea, were analyzed. Gut contents of the two species examined by microscopic analysis revealed that copepods are the major components of the diet (> 70% of gut contents) and there was no significant changes in the gut contents of two species collected in spring and summer season. Although 16:0, 20:5(n-3) (Eicosapentaenoic acid) and 22:6(n-3) (Docosahexanoic acid), which are known as phytoplankton FA markers, were the most dominant among the fatty acids in both chaetognath species, the detection of copepod FA markers, 20:1(n-9) (Gadoleic acid) and 22:1(n-11) (Cetoleic acid), provided evidence that their food sources include copepods. These results suggest that S. crassa and S. nagae are carnivores and mainly feed on copepods in the Yellow Sea.

황해 동부 해역에서 하계에 조석전선과 용승에 의한 식물플랑크톤군집 분포 (Phytoplankton Distribution in the Eastern Part of the Yellow Sea by the Formation of Tidal Front and Upwelling during Summer)

  • 이영주;최중기;손재경
    • Ocean and Polar Research
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    • 제34권2호
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    • pp.111-123
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    • 2012
  • To understand the phytoplankton community in the eastern part of the Yellow Sea (EYS), in the summer, field survey was conducted at 25 stations in June 2009, and water samples were analyzed using a epifluorescence microscopy, flow cytometry and HPLC method. The EYS could be divided into four areas by a cluster analysis, using phytoplankton group abundances: coastal mixing area, Anma-do area, transition water, and the central Yellow Sea. In the coastal mixing area, water column was well mixed vertically, and phytoplankton was dominated by diatoms, chrysophytes, dinoflagellates and nanoflagellates, showing high abundance ($>10^5\;cells\;l^{-1}$). In Anma-do coastal waters characterized by high dominance of dinoflagellates, high phytoplankton abundance and biomass separated from other coastal mixing area. The southeastern upwelling area was expanded from Jin-do to Heuksan-do, by a tidal mixing and coastal upwelling in the southern area of Manjae-do, and phytoplankton was dominated by benthic diatoms, nanoflagellates and Synechococcus group in this area. Phytoplankton abundance and biomass dominated by pico- and nanophytoplankton were low values in the transition waters and the central Yellow Sea. In the surface of the central Yellow Sea, high dominance of photosynthetic pigments, 19'-hexanoyloxyfucoxanthin and zeaxanthin implies that haptophytes and cyanobacteria could be the dominant group during the summer. These results indicate that the phytoplankton communities in the EYS were significantly affected by the formation of tidal front, thermal stratification, and coastal upwelling showing the differences of physical and chemical characteristics during the summer.

일제강점기 황해에서의 대형 수염고래류 포경실태 및 출현 계절에 대한 고찰 (The Study on the Whaling Reality to the Large Baleen Whales and their Seasonal Occurrence in the Yellow Sea during Japanese Colonial Period)

  • 최중기;서지호;윤원득
    • 한국해양학회지:바다
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    • 제24권3호
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    • pp.475-482
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    • 2019
  • 일제강점기 황해에서 일본 포경회사에 포획된 대형 수염고래류는 참고래 3,173마리, 대왕고래 7마리, 혹등고래 28마리를 합하여 총 3,200마리 이상이 포획되었다. 이러한 대량포획으로 황해에서 대형 수염고래류가 거의 소멸되었다. 황해는 대형 수염고래류가 서식하기에 적합한 수온조건($4{\sim}26^{\circ}C$)과 풍부한 먹이 조건을 갖추고 있어 동계와 춘계에 대형 수염고래류의 출현이 많았던 것으로 추정된다. 동계와 춘계에 참고래가 많이 포획된 것은 이들의 주 먹이인 태평양크릴새우(Euphausia pacifica)가 표, 중층에 많아 이들이 이 시기에 대량 회유한 것에 기인된다. 그러나 수온약층이 강하게 형성되는 여름과 가을에는 태평양크릴새우가 수온약층 아래에 분포하여 포식 조건이 좋은 다른 해역(울산 해역)으로 이동한 것으로 보인다.

가을철 황해 남부의 중형동물플랑크톤 분포 (Mesozooplankton Distribution in the Southern Yellow Sea in Autumn)

  • 김가람;강형구
    • Ocean and Polar Research
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    • 제41권4호
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    • pp.251-263
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    • 2019
  • We investigated the mesozooplankton community structure during autumn in the southern Yellow Sea. Mesozooplankton density generally ranged from 352 to 2,954 ind. m-3 and varied according to different sampling stations. The copepod Paracalanus parvus s.l. and its copepodites dominated in the communities, corresponding to 57.3% in density of the total. Surface and water-column averaged salinity were positively correlated with density of total mesozooplankton, copepods and a few dominant species, and the tunicate Thalia rhomboides was negatively related to chlorophyll-a concentration. The mesozooplankton community of the study area was divided into three groups according to the cluster analysis using species composition and density: one in the northern coastal region, another in the northern offshore region, and the other in the south. The most significant indicator species for each of the groups were Labidocera euchaeta in the northern coastal region, T. rhomboides in the northern offshore region, and Themisto sp. juveniles in the south. This study provides recent data on the characteristics of the mesozooplankton community in the southern Yellow Sea, which may be valuable for gaining a better understanding of changes in the pelagic ecosystem of the Yellow Sea.

2015년 봄철에 선박으로 관측한 서해상 이차에어로졸 성분의 농도 및 오염 특성 (Concentration and Pollution Characteristics of Secondary Aerosol Components Over the Yellow Sea by Ship-Borne Observation in Spring, 2015)

  • 고희정;강창희;차주완;류상범
    • 대기
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    • 제27권1호
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    • pp.29-40
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    • 2017
  • The $PM_{10}$ and $PM_{2.5}$ particles over the Yellow Sea of Korea were collected by ship-borne observation during two cruises in spring, 2015. Their water-soluble ionic components such as $NH_4^+$, $Na^+$, $K^+$, $Mg^{2+}$, $Ca^{2+}$, $SO_4^{2-}$, $NO_3^-$, $Cl^-$, $F^-$, $CH_3COO^-$, $HCOO^-$, and $CH_3SO_3^-$ were analyzed, in order to examine the pollution characteristics of the secondary aerosol components. The comparative study of particle size distribution has resulted that $NH_4^+$, $nss-SO_4^{2-}$, $nss-Mg2+$, $nss-K^+$, $HCOO^-$, and $CH_3SO_3^-$ species mostly existed in fine particle mode. Meanwhile, nss-F-and sea-salt species were distributed in both fine and coarse particle mode, $NO_3^-$, $nss-Ca^{2+}$, $CH_3COO^-$ species were rich in coarse particle mode. The concentrations of secondary pollutants($nss-SO_4^{2-}$, $NO_3^-$, $NH_4^+$) increased in fine particles, and those of natural components ($nss-Ca^{2+}$, Sea-salt) increased in coarse particles. $NH_4^+$ exists as the form of $(NH_4)_2SO_4$ and $NH_4NO_3$, and mostly as $(NH_4)_2SO_4$ in fine particles. $NH_4NO_3$ has lower content compared to $(NH_4)_2SO_4$, and it mostly existed in fine particles at Yellow Sea I and in coarse particles at Yellow Sea II. The concentration ratios of $NO_3^-/nss-SO_4^{2-}$ for Yellow Sea I and Yellow Sea II were 0.52 and 0.16 in coarse particles, and they were 0.64 and 0.38 in fine particles, respectively, showing that the stationary source emissions were more important than mobile source emissions in Yellow Sea II (except Passage II-4).

Seasonal Variation of Water Mass Distributions in the Eastern Yellow Sea and the Yellow Sea Warm Current

  • Pang, Ig-Chan;Hyun, Kyung-Hoon
    • Journal of the korean society of oceanography
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    • 제33권3호
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    • pp.41-52
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    • 1998
  • A seasonal circulation pattern in the eastern Yellow Sea (EYS) is suggested from the water mass analysis and geostrophic calculation using the hydrographic data collected by National Fisheries Research and Development Institute during the years of 1970 to 1990. This research focuses on the presence of inflow of warm (and saline) waters into EYS in summer. EYS is divided into two regions in this paper: the west coast of Korea (WCK) and the central Yellow Sea (CYS). In CYS, waters are linked with warm waters near Cheju Island in winter, but with cold waters from the north in summer (in the lower layer). It is not simple to say about WCK because of the influences of freshwater input and tidal mixing. Nevertheless, water mass analysis reveals that along WCK, waters have the major mixing ratios (40-60%) of warm waters in summer, while the dominant mixing ratios (50-90%) of cold waters in winter. Such a seasonal change of water mass distribution can be explained only by seasonal circulation. In winter, warm waters flow northward into CYS and cold waters flow southward along WCK. In summer, warm waters flow northward along WCK and cold waters flow southward into CYS. This circulation pattern is supported by both statistical analysis and dynamic depth topography. Accordingly, Yellow Sea Warm Current may be defined as the inflow of warm waters to CYS in winter and to WCK in summer.

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