• 제목/요약/키워드: Bottom water temperature

검색결과 545건 처리시간 0.036초

Relationship between the Distribution of Water Masses and that of Demersal Fishes in the East China Sea in Spring

  • Cho Kyu Dae;Kim Hee Yong
    • Fisheries and Aquatic Sciences
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    • 제3권1호
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    • pp.14-22
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    • 2000
  • The relationship between the distribution of demersal fishes and that of the water masses was examined by using the catches data and hydrographic data in the Yellow Sea and the East China Sea on May 13-19, 1996 and May 10-17, 1997. During the study period, the dominant fish species were Cleisthenes pinetorum herzinsteini, Lophiomus setigerus and Pseudosciaena polyactis. These three low temperature water species accounted for $21-24\%$ of the total catches. The percentage of the low temperature water species was high in the Yellow Sea and the coastal area on the continental shelf of the East China Sea but was low in the vincinity of Kyushu during the study period. In the East China Sea, the isotherm of $15^{\circ}C$ at 50m, mid layer depth, was located more southeast in 1996 than in 1997. The bottom water temperature was about it lower in 1996 than in 1997. The direction of the detided current on the continental shelf of the East China Sea was southward in 1996 and northward in 1997. Yellow Sea Bottom Cold Water (YSBCW) strongly expanded to south in 1996 when the northward current was weak. But, Tsushima Warm Current (TSWC) strongly intruded into the continental shelf of the East China Sea in 1997. As YSBCW expanded strongly to south in 1996, the percentage of the low temperature water species relative to the total catches was high. But, TSWC strongly intruded and the percentage of low temperature water fishes was low in 1997.

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연안역에서의 저층 빈 산소수의 용승현상(청조현상)에 관한 연구 (A Study on the Upwelling Phenomena of Anoxic Bottom Water (Blue Tide Phenomena) in the Coastal Areas)

  • 윤종성
    • 한국환경과학회지
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    • 제7권3호
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    • pp.291-300
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    • 1998
  • Recently, upwelling of anoxic bottom water mass have been frequently observed in northeast part of Tokyo Bay in Japan during summer to autumn. Since the colour of water surface becomes milkyblue or milkygeen, the upwelling phenomenon Is called 'Blue Tide'. The data analysis of field surveys during 'Blue Tide' appearance have been performed for understanding the physical features of the 'Blue Tide' phenomena In Tokyo Bay. It becomes clear that (1) the formation of the anoxic bottom water correlates well with the temperature difference between the surface and bottom waters, (21 there are two necessary conditions for generating 'Blue Tide': that Is, strong stratincation and off-shore wind. The strong southwest(on-shored wand before the 'Blue Tide' appearance may play an iniportant role to make the striancation strengthen. When these conditions are larger and the northeast or east-northeast (off-shored wind stronger than S ifs blows In succession, the 'Blue Tide' upwelling appears at the head of Tokyo Bay.

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수온층을 고려한 저층수 취수 기술에 관한 연구 (A Study on Extracting Bottom Water Taking in Concern of Temperature Level Boundaries)

  • 심경종;박희문;임현묵;조수;이수열;박태진
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.1285-1290
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    • 2008
  • The interest in use of new field of energy and unused existing potential energy has been raised in number of advanced countries including South Korea. As a respond of the interest and the following reactions, a new technology which helps to reduce bad environmental factors and decrease national energy consumption rate in the way of extract cold-heat energy in dam water. This research focuses on a method that enables taking the water flows in desirable temperature range whilst keeping water temperature boundaries of bottom level water. The analysis was made in simulating on CFD. In order to keep the temperature boundary level, a deep well pump was set in piping in the simulation. As the significant result, the most alteration in temperature was found when the smallest size of pipe was plumbed. However, when the flow has small value of velocity, no matter how big the piping size was, the temperature variation was negligible. Therefore, possible hypothesis was made as bigger piping as fast flow will have better function in the way to keep the temperature boundary level.

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여수 엑스포 해역의 생물.화학적 해양환경 특성 (A Study on the Marine Biological and Chemical Environments in Yeosu Expo Site, Korea)

  • 노일현;오석진;박종식;안영규;윤양호
    • 한국해양환경ㆍ에너지학회지
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    • 제13권1호
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    • pp.1-11
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    • 2010
  • 2012 여수 엑스포 부지인 신항해역의 생물해양학적 환경특성과 이를 조절하는 물리 화학적 요인의 경시적인 변동특성을 파악하기 위해 1개 정점을 대상으로 2006년 4월부터 2007년 12월까지 일주일 간격을 원칙으로 현장조사를 실시하였다. 수온은 표층에서 $6.8{\sim}27.8^{\circ}C$, 저층에서 $6.3{\sim}25.9^{\circ}C$의 범위를, 염분은 표층에서 12.8~33.0 psu의 범위를, 저층에서 25.2~33.6 psu의 범위를 보였다. 강우가 집중된 하계에 급격하게 염분이 낮아지면서 표·저층사이에 강한 염분약층이 형성되었다. 용존무기질소(DIN)는 표층에서 $1.36{\sim}82.7{\mu}M$, 저층에서 $1.27{\sim}25.2{\mu}M$의 범위를, 인산성 인은 표층에서 $0.06{\sim}2.13{\mu}M$, 저층에서 $0.07{\sim}1.38{\mu}M$의 범위를, 규산성 규소는 표층에서 $1.68{\sim}52.0{\mu}M$, 저층에서 $1.37{\sim}30.7{\mu}M$의 범위를 나타내었으며, 영양염류는 계절적으로 강우량이 많은 시기와 저수온기에 높고, 춘계와 추계에 크게 감소하였다. N/P ratio는 표층에서 4.43~325, 저층에서 3.57~321의 범위로 변동하였으며, 강우가 집중되는 시기에 급격히 증가하고, 그 외 시기에는 16 내외의 값을 나타내었다. $Chlorophyll{\alpha}$는 표층에서 $0.46{\sim}65.0{\mu}g$ $L^{-1}$, 저층에서 $0.71{\sim}15.0{\mu}g$ $L^{-1}$의 범위를 나타내었으며, 저수온기에는 낮은 농도로 유지되다 고수온기에 생물량이 급격히 증가하였다. 주성분분석과 중회귀분석 결과, 본 연구해역의 물리 화학적 및 생물학적 요인의 경시적인 변동은 염분의 변화로 표현되는 담수유입에 의해 크게 지배되는 구조를 보이고, 공급된 무기영양염은 식물플랑크톤의 흡수 동화를 통해 비교적 효율적으로 조절되고 있으며, 또한 저수온기에는 무기화과정과 영양염 순환을 통해 재생산된 영양염이 이 해역의 환경구조에 큰 영향을 미치는 것으로 판단되었다.

Relationship between Winter Water Temperature in the Eastern Part of the Yellow Sea and Siberian High Pressure and Arctic Oscillation

  • Jung, Hae Kun;Lee, Chung Il
    • 한국환경과학회지
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    • 제21권12호
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    • pp.1425-1433
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    • 2012
  • Water temperature in the eastern part of the Yellow Sea (EYS) during winter (JFM) and summer (JJA) from 1964 to 2009 and Siberian High Pressure Index (SHI) and Arctic Oscillation index (AOI) during winter (JFM) from 1950 to 2011 were used to analyze long-term variation in oceanic and atmospheric conditions and relationship between winter and summer bottom water temperature. Winter water temperature at 0, 30 and 50 m had fluctuated highly till the late of 1980s, but after this it was relatively stable. The long-term trends in winter water temperature at both depths were separated with cold regime and warm regime on the basis of the late 1980s. Winter water temperature at 0m and 50m during warm regime increased about $0.9^{\circ}C$ and $1.1^{\circ}C$ respectively compared to that during cold regime. Fluctuation pattern in winter water temperature matched well with SHI and AOI The SHI had negative correlation with water temperature at 0 m (r=-0.51) and 50 m (r=-0.58). On the other hand, the AO had positive correlation with Winter water temperature at 0 m (r=0.34) and 50 m (r=0.45). Cyclic fluctuation pattern of winter water temperature had a relation with SHI and AO, in particular two to six-year periodicity were dominant from the early of the 1970s to the early of the 1980s. Before the late of 1980s, change pattern in winter water temperature at 0 and 50 m was similar with that in the bottom water temperature during summer, but after this, relationship between two variables was low.

The Yellow Sea Warm Current and the Yellow Sea Cold Bottom Water, Their Impact on the Distribution of Zooplankton in the Southern Yellow Sea

  • Wang, Rong;Zuo, Tao
    • Journal of the korean society of oceanography
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    • 제39권1호
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    • pp.1-13
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    • 2004
  • The Yellow Sea Warm Current (YSWC) and the Yellow Sea Cold Bottom Water (YSCBW) are two protruding features, which have strong influence on the community structure and distribution of zooplankton in the Yellow Sea. Both of them are seasonal phenomena. In winter, strong north wind drives southward flow at the surface along both Chinese and Korean coasts, which is compensated by a northward flow along the Yellow Sea Trough. That is the YSWC. It advects warmer and saltier water from the East China Sea into the southern Yellow Sea and changes the zooplankton community structure greatly in winter. During a cruise after onset of the winter monsoon in November 2001 in the southern Yellow Sea, 71 zooplankton species were identified, among which 39 species were tropical, accounting for 54.9 %, much more than those found in summer. Many of them were typical for Kuroshio water, e.g. Eucalanus subtenuis, Rhincalanus cornutus, Pareuchaeta russelli, Lucicutia flavicornis, and Euphausia diomedeae etc. 26 species were warm-temperate accounting for 36.6% and 6 temperate 8.5%. The distribution pattern of the warm water species clearly showed the impact of the YSWC and demonstrated that the intrusion of warmer and saltier water happened beneath the surface northwards along the Yellow Sea Trough. The YSCBW is a bottom pool of the remnant Yellow Sea Winter Water resulting from summer stratification and occupy most of the deep area of the Yellow Sea. The temperature of YSCBW temperature remains ${\leq}{\;}10^{\circ}C$ in mid-summer. It is served as an oversummering site for many temperate species, like Calanus sinicus and Euphaisia pacifica. Calanus sinicus is a dominant copepod in the Yellow Sea and East China Sea and can be found throughout the year with the year maximum in May to June. In summer it disappears in the coastal area and in the upper layer of central area due to the high temperature and shrinks its distribution into YSCBW.

여름철 남해 저온수의 특성과 기원 (Characteristics and origin of the Cold Water in the South Sea of Korea in Summer)

  • 조양기;김구
    • 한국해양학회지
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    • 제29권4호
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    • pp.414-421
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    • 1994
  • 여름철 남해 중앙해역 저층에는 14$^{\circ}C$ 이하의 저온수가 남해에서 관측된 기존의 수 온 염분 자료를 분석하여 이 저온수의 특성과 기원에 대하여 알아. 6월과 8월에 저온 수의 염분은 33.4~34.0$\textperthousand$로 4월에 비해 약 0.6$\textperthousand$ 낮으며, 특히 1983년에는 6월부터 8 월에 더 저온인 해수가 나타났다. 이와 같은 현상들은 여름철 남해의 저온수는 겨울에 형성되어 여름까지 잔류한 것이 아니고 주위해역에서 유입된 해수임을 시사한다. 이 저온수는 14$^{\circ}C$ 이하 저온수의 출현빈도분포와 제주해협 부근에서 관측된 수온 염분 자 료 분석 등에 의해 제주해협 서편해역에서 남해로 유입되는 것으로 추정된다.

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Elution Behavior of Nutrient Salts from Sediment and its Impact on Water Bodies

  • Wada, Keiko;Haruki, Fumio;Ishita, Kyoji;Okada, Yuki
    • Environmental Engineering Research
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    • 제15권1호
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    • pp.41-48
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    • 2010
  • This paper describes the influence of nutrient salts eluted from the bottom of a closed water area where polluted sediment has been deposited by inflowing river water. The elution pattern was monitored at our experimental facility. Both the sediment pore water and water above the bottom were sampled using a dialyzer sampler (peeper). The pore water of the eutrophicated sediment contained a large amount of nutrient salts, and the effect of elution was confined to a limited area of the bottom surface. The nutrient concentration of the sediment pore water was closely related to both the water temperature and dissolved oxygen (DO) concentration. The eluted nutrients from the sediment provided a source for phytoplankton and algae growth. This experimental data indicated that the water quality of the surface was not directly connected to the eluted nutrient salts, while it was indirectly affected by the total ecosystem, including all the organisms within an area and their environment.

A Study on the Fluctuation of Bottom Cold Water in the Western Channel of Korea Strait

  • Jong-Hwui Yun;Kyu-Dae Cho
    • 한국항해학회지
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    • 제21권4호
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    • pp.39-47
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    • 1997
  • We researched the mechanism on th flucturain of Bottom Cold Water in the western channel of Korea Strait, using 13 years(1981~1933) oceanographic data of FRDA. The bottom cold water in the western channel appears more often in summer and fall than in winter and spring, and its year-to-year variation of temperature is very large. Such variation seems to be closely related with the variations of cold waters in the subsurface layer of the southwestern East Sea. According to the longitudinal temperature distribution along the korean southeastern coast, a density difference occurs all the time at the still deepth between the western channel and the southwestern East Sea. Thus, it is inferred that the cold waters would intrude into the western channle form the subsurface layer in the southwestern East Sea as a density-driven current, and it intensity depends upon the density difference.

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2005년 하계 완도 연안 냉수대 발생시 식물플랑크톤의 분포 특성 (The Characteristics of Phytoplankton Community of Cold Water in the around Sea of Wando in Summer, 2005)

  • 오현주;김승한;문성용
    • 한국환경과학회지
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    • 제17권9호
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    • pp.949-956
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    • 2008
  • The data of temperature, chlorophyll a, phytoplankton and NOAA/AVHRR satellite data were analyzed about 7 stations around Wando Island area on August 30, 2005. The sea water temperature range was from $15.19^{\circ}C$ to $24.97^{\circ}C$, and there was a cold water mass from the station 1 to 5 around the outside of Chungsando Island, the water temperature was lower at the bottom than surface. The salinity was $32.41{\sim}34.03$, DO was $7.40{\sim}9.14mg/L$, but the concentration of chlorophyll a was 1ug/L higher at the bottom than surface. Total phytoplankton appeared from the whole stations were 47 genus, 80 species and diatoms were dominant. A lot of dinoflagellates Ceratium forca and diatoms Thalassithrix spp. mostly appeared in the cold water mass were turned up from the station 1 to 5. 4 groups of phytoplankton clusters were shown in the surface, and 3 groups of phytoplankton clusters were shown at the bottom according to the water temperature. On the ground of the result analyzed with NOAA/AVHRR satellite data, the SST around Wando Island was $22{\sim}25^{\circ}C$, it was formed by thermohaline front latitudinally