• Title/Summary/Keyword: 전선역

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Formation and Characteristics of Ocean Fronts at the East China Sea in Southwestern Sea Area from Jeju Island, Summer (제주도 서남방 동중국해역에서 하계 해양전선 형성과 수질특성)

  • Heo M. Y.;Choi Y. C.
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.7 no.2
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    • pp.64-69
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    • 2004
  • The results of analyzing the hydrographic observations in the southwestern sea of Jeju Island in the last 10 days of August 1999 to investigate the characteristics of oceanic front area appeared in the East China Sea in August from is summarized as follows: In Line A, a front appears at Station A5 of 124°E and 31°30'N, showing relatively uniform density of 21.4 to 22.1 in the surface layer of 50m depth, which is distinguished from 22.0 shown in the sides of China and open ocean. In Line B, a front also appears at Station B6 of 124°E and 33°N, of which density is distinguished from 20.0 shown in the sides of China and open ocean as In Line A. As a result, the front area caused by fresh water runoffs from the Yangtze River in the East China Sea is formed at 124°E and 124°30'in the direction of east and northeast from Yangtze River, respectively. Nutrient concentrations in the study area are characterized by higher density in the side of China and by clear density difference between the upper and the lower layers in the side of open ocean, while by uniformly lower density concentration between the upper and the lower layers in the front area. Chlorophyll-α concentrations is high in the sides of China and open ocean, while low in the front area. Judging from the above results, the productivity in the front area is lower according to the inactivity of phytoplankton due to increased flow from vertical mixing between the upper layer and the lower layer. Also, the front area in the East China Sea in summer may be moved towards the adjacent sea of Jeju Island by increasing fresh water runoffs from the Yangtze River in summer.

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Formation and Characteristic of Summer Fronts between Cheju and Shanghai (제주도-상해간 여름철 전선역 형성과 특성)

  • 허만영;최영환
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.10a
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    • pp.164-164
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    • 2000
  • 일반적으로 해양에서 전선이란 서로 다른 수괴간의 불연속면을 일컫는다. 이러한 전선의 양측 면에는 유속, 수온, 염분, 수질 등이 급변한다. 본 연구는 1997년 8월 26일부터 9월 2일까지 제주도 서부에서 중국 상해 양쯔강 하구역까지 21개 정점에서 관측된 물리ㆍ화학적 관측자료로부터 연안과 외양간의 수온, 염분, 밀도 등 물리적 인자 특성으로부터 전선역을 찾아내고 전선역을 중심으로 양측의 수질특성을 용존산소, 인산염, 질산염, 규산염 등 영양염류의 분포 특성과 아울러 생산력 인자인 엽록소 a의 분포량을 파악하여 전선역을 중심으로 한 수괴간의 특성을 규명하였다

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Zooplankton Community in the Front Zone of the East Sea (the Sea of Japan), Korea : 2. Relationship between Abundance Distribution and Seawater Temperature (동해 전선역 동물플랑크톤 군집 : 2. 수온과 분포의 관계)

  • PARK Chul;LEE Chang Rae;KIM Jeong Chang
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.5
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    • pp.749-759
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    • 1998
  • Distribution of zooplankton abundance was studied in the front zone in the East Sea in November, 1996, Averaged total abundance in the front zone was less than that in the nearby cold surface water areas but more than that in the nearby warm surface water areas. The number of taxa was the greatest in the upper layer of mixing. Abundance and the number of tun in the front zone were contributed by the cold water and the warm water, respectively. Inspite of the differences in sampling time (day vs night), the species composition and abundance distribution were similar at two sites within cold or warm water area, However, they were quite different at two sites in the front zone although the sampling time of the day was the same. from this, the history of mixing was believed to be the most important factor for the species composition and abundance distribution in the front zone. Zooplankton distribution in the study area was mainly controlled by the dominant cold water Copepod Species Metridia paoifica, the only taxon that showed significant diet vertical migration. Most other taxa showed no significant diel vortical migration, Seawater temperature also affected zooplankton distribution. Positive correlations in the warm area, weak negative correlations in the cold water area, and no significant correlation in the front zone were obtained in general between the seawater temperature and the abundances of the major taxa.

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Distribution of Fish Larvae and the Front Structure of the Korea Strait in Summer (여름철 대한해협의 전선구조에 따른 자치어의 분포 특성)

  • Kim, Sung;Yoo, Jae-Myung
    • Korean Journal of Ichthyology
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    • v.11 no.1
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    • pp.72-85
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    • 1999
  • A study on the larval fish assemblage around the front area was conducted in the Korea Strait in August, 1993. The front was found in the shelf break located in $35{\sim}36^{\circ}N$. A total of 125 species were found in the study area. Of these Engraulis japonicus was the most dominant species comprising 84.3% of the total fish larvae collected and followed by Maurolicus muelleri accounting for 7.7%. Gobiidae, Callionymidae and Pomacentridae showed higher frequency of occurrence. These five species can be divided into three groups. First group was comprised in the larval fish species such as E. japonicus and Callionymidae which were found in the whole study area. The second group was comprised of Gobiidae and Pomacentridae which were found in the warm area located in the southern part of the front area. The other species was M. muelleri found in the cold area located in the northern part of the front area including the front area. The assemblage, geological distribution and body length composition of the fish larvae in the Korea Strait would be mainly determined by the spawning ecology of the fishes, and the geological distribution and structure of the front which is formed in the ocean boundary between the Tsushima Current and the East Sea Cold Water.

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Limiting Nutrient Based on Alkaline Phosphatase Activity in the Frontal Area of the Southern Sea, Korea (춘계 남해 전선역에서 알칼리 인산분해 효소를 통한 제한 영양염의 평가)

  • Oh, Seok Jin;Jang, Minik;Nam, Ki Taek;Kim, Seok-Yun
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.23 no.7
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    • pp.885-892
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    • 2017
  • We estimated the limiting nutrient and DIP limiting history based on alkaline phosphatase (APase) activity during the spring of 2017 in the Southern Sea, Korea. In the frontal area, concentration of dissolved inorganic phosphorus (DIP), dissolved inorganic nitrogen (DIN): DIP ratio and Chlorophyll a (Chl-a) were < $0.2{\mu}M$, 23.2 and $2.2{\mu}g/L$, respectively, indicating high productivity despite DIP limiting. The relationship between APase and DIP indicates that the study area had limited DIP because of a strongly reverse correlation (r= -0.81; P<0.001). Relationship between APase and Chl-a (r=0.61, p<0.001) also indicated that APase may have been induced by phytoplankton (ca. 60 %) and bacteria (ca. 40 %). In DIP limiting history in this study area, frontal area and non-frontal areas might have induced long-term DIP limitation and the recent relief from DIP-limitation, respectively, based on distributions of dissolved APase and particulate APase. Thus, these results suggest that by measuring the enzyme that hydrolyzes organic matter such as APase in frontal area, it is possible to estimate temporal and spatial characteristics of limiting nutrient, thereby improving our understanding of biogeochemistry cycles.

남해 전선역의 표층퇴적환경과 와편모조류 cyst군집

  • 박종식;윤양호
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2003.05a
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    • pp.138-139
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    • 2003
  • 한국 남해역은 계절에 따라 대마난류, 황해저증 냉수괴 및 중국대륙연안수 등 다양한 수괴가 세력권을 달리하고 있어 다양한 해양환경 특성을 나타낸다. 따라서 본 연구에서는 수온전선역이 형성(국립수산진흥원, 2000)되는 해역을 대상으로 해수의 수온, 염분, 밀도 및 표층적물중의 IL, COD, Phaeopigment등에 의한 표층퇴적 환경과 와편모조류 cyst 군집으로부터 이 지역의 해양환경 특성을 파악해 보고자 한다. (중략)

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The Effect of Variations in the Tsushima Warm Currents on the Egg and Larval Transport of Anchovy in the Southern Sea of Korea (한국 남해의 대마난류 변동이 멸치 난$\cdot$자어의 연안역 수송에 미치는 영향)

  • CHOO Hyo-Sang;KIM Dong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.2
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    • pp.226-244
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    • 1998
  • The relationship between the transport of eggs and larvae of Anchovy (Engraulis japonica) and the oceanic condition in the southern sea of Korea was examined on August and November 1996. In summer (August), when the Tsushima Warm Current is strong near to the coast, the warm waters such as warm streamers from the Tsushima Warm Current intrude into the coastal area, and cyclonic circulations are formed. The warm water intrusions also generate wakes around Komun Island, Sori Island and Koje Island. In the coastal area where the warm water intrusions occur, the nutrients, dissolved oxygen, suspended solid and chlorophyll are concentrated in probably relation to the upwelling concerned with this warm streamer and/or the wakes. Anchovy eggs and larvae are transported to the coastal area by the cyclonic circulations. The hatching and growth of anchovy larvae are increased because of high primary production in the cyclonic circulations. However, as the amount of Copepods which are a main food for anchovy larvae decrease in the coastal area, anchovy larvae seem to move to the Isushima Warm Water area for seeking a prey. In autumn (November), the Tsushima Warm Current is far away from the coast. In this season the warm water intrusions almost disappear, and the small scaled frontal eddies are formed between the coastal water and the Tsushima Warm Water. As the surface water moves towards offshore, few anchovy eggs and larvae were sampled in the survey area. Chemical and biological substances are concentrated in the leftdown sides of the small scaled frontal eddies because of eddy formation.

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Oceanographic Studies Related to the Tidal front in the Mid-Yellow Sea off Korea: Physical Aspects (황해 중부의 조석전선과 연관된 해양학적 연구 : 물리적 특성)

  • SEUNG, YOUNG HO;CHUNG, JUNG HO;PARK, YONG CHUL
    • 한국해양학회지
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    • v.25 no.2
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    • pp.84-95
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    • 1990
  • Observations by CTD castings, moored current meters and satellite imageries reveal some physical characteristics of the area around the tidal mixing front found in the mid-Yellow Sea off Korea. Tidal mixing is the greatest at the promontory of Taean Peninsula with a front around it. The front appears in April with the start of solar heating, becomes most clear in August and disappears in November with the start of surface cooling. In the north of the front, tidal fluctuations of temperature and salinity induced by tidal currents manifest the existence of the front, Differently from the usual tidal mixing front, the front in Kyunggi Bay is formed by presence of the water discharged from the Han River which meets the offshore water at the front. Near the surface cold center, vertically well-mixed zone extends to about 50 Km offshore from the coast, Farther south, this structure is generally retained but with lesser degree of vertical mixing. Within the relatively well-fixed coastal zone, the fresh water discharged from the Kum River makes another salinity front of smaller extent. At some places around this salinity front, an Upwelling-like feature is remarked.

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A Shallow Water Front and Water Quality in Chinhae Bay (진해만에 형성되는 천해전선과 수질분포)

  • Kum, Cha-Kyum
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.9 no.2
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    • pp.86-96
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    • 1997
  • In order to investigate the formation of a shallow water front and its relation to water quality distributions, oceanographic measurements were made, and the numerical computations of the Simpson-Hunter stratification parameter log(H/U$^3$) were performed. It is shown from satellite image and hydrographic data that the shallow water front is formed near the northern Kaduk channel, and the stratification parameter log(H/U$^3$) near the front is in a range of 2.0-2.5. Measured COD (Chemical Oxygen Demand) concentrations in offshore region of the front and in the western part of the bay are below 2.0 mg/1. whereas the concentrations in Masan Bay located in the northern inside of the frontal zone are high as 3.0-5.5 mg/1. COD concentrations decrease gradually from Masan Bay toward the offshore due to the dilution by strong water mixing. Anoxic and hypoxic water masses at the bottom layer in summcr occur in the western part of Chinhae Bay and in Masan Bay, and DO (Dissolved Oxygen) concentrations become low with increasing the stratification parameter. DO concentrations outside the front are more than about 4.0 mg/1, whereas the concentrations inside the front are low. The shallow water front plays a significant role for material transport from coastal area to oceanic area, and the frontal region seems to be important physical and chemical boundaries.

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