• 제목/요약/키워드: Bottom salinity

검색결과 303건 처리시간 0.025초

간척호 (화옹호) 생성 초기의 수온과 염분의 공간적 구조와 계절적 변화 (Spatial Structure and Seasonal Variation of Temperature and Salinity in the Early Stage of Reclaimed Brackish Lake (Hwaong Reservoir))

  • 신재기;윤춘경;황순진
    • 생태와환경
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    • 제39권3호통권117호
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    • pp.352-365
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    • 2006
  • 본 연구는 간척호 조성 초기 단계에 있는 화옹호를 대상으로 수환경의 변화를 파악하고자 2002년 6월부터 2006년 1월까지 수행하였다. 화옹호는 해양환경을 담수화시키는 과정에 있으므로 다양한 환경요인 중에서 강수량, 수온 및 염분도의 월 변동을 중심으로 하였다. 수온의 범위와 평균값은 각각 $-0.7{\sim}33.4^{\circ}C$, $13.6^{\circ}C$이었다. 상류부의 수온은 봄철${\sim}$여름철과 여름철${\sim}$가을철로 전이될때 빠르게 증가 또는 감소하였으나 하천 유입량이 많은 시기에는 일시적으로 다소 급감하는 현상을 보이기도 하였다. 반면에, 겨울철에는 상류부 저층의 경우 표층이나 하류부보다 수온이 다소 높은 양상을 보이기도 하였다. 염분의 범위와 평균값은 각각 0.3${\sim}$32.3 psu, 25.3 psu이었다. 염분은 수층에 따른 상하 수직적 차이가 현저하여 중층과 저층보다 표층에서 증감 변동이 매우 심하였다. 남양천이 유입되는 상류부의 저층을 제외하고는 전 정점에서 현격한 차이를 보이지 않았다. 이것은 저수지내 염분의 수직적 구배가 뚜렷하게 유지되고 있음을 의미하였다. 염분은 여름철 강우기에 해당하는 6${\sim}$10월에 변동폭이 매우 컸고, 표층의 경우 저염수가 상류에서 하류로 확장되는 현상이 뚜렷하였다. 이 시기에 표층의 수색은 황토색으로서 하천으로부터 유입 후 공급 이동된 저염수의 탁수층(turbidity plume)으로 뒤덮는 양상이 전개되었다. 저수지내 수온의 상 ${\cdot}$ 하 차이에 대한 범위는 $-10.6{\sim}9.7^{\circ}C$이었다 또한, 표층과 저층의 염분 차이는 $-27.1{\sim}30.0$ psu 범위이었다. 염분 농도의 차이가 큰 경우는 담수의 유입량이 크거나 배수갑문의 조작에 의한 해수유입이 많은 상태에서 나타났다. 수온과 염분의 관계는 음의 상관성을 보여, 즉 수온이 높을수록 염분 농도가 낮은 특성을 보였다.

새만금호 내 방수제 공사 및 준설에 의한 수리동역학적 특성 변화 수치 모델링 (Numerical Simulation on Hydrodynamic Characterization Changes Associated with the Construction of Dikes and Dredging Operations in Saemangeum Lake)

  • 오찬성;최정훈;조영권
    • 한국환경과학회지
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    • 제22권9호
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    • pp.1115-1129
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    • 2013
  • The study area is located on the western coast, and the inner development construction has been ongoing since 2011. The purposes of current study are to effectively simulate and quantitatively predict a temporal and spatial distributions of water temperature and salinity due to the stages of inner development construction in saemangeum reclaimed area. The transient-state numerical modeling using EFDC model is done, and the numerical simulation results are validated reasonably by repetitive numerical model calibration procedures with respect to field measurements of water temperature and salinity. The spatial distributions of water temperature and salinity show similar trends before and after construction of the dikes. In spring season, the salinity has maximum value of 21 psu, while, in summer season, the salinity shows 7 psu in a whole modeling domain. Thus, it is clearly observed that salt water is replaced by freshwater. However, the salinity and temperature reach their initial conditions at the end of the year. The salinity after construction of the dikes is lower than that before construction of them at Mankyeong area. On the other hands, after construction of the dikes, the salinity after dredging operations is higher than that before dredging. Because drastical increasing of water volume in Saemangeum Lake leads to increasing of stagnation time at bottom layer, and salt water is easily intruded to the two estuaries. Therefore, it may be concluded that hydrodynamic characteristics on Saemangeum are dominated by either Mankyeong and Dongjin discharge or sluice gates in/out-flow amounts, and thus they must be properly considered when rigorous and reasonable predictions of water temperature and salinity according to the stages of inner development construction.

배수갑문 운용에 따른 시화호의 수온과 염분 변화 (Impact of Seawater Inflow on the Temperature and Salinity in Shihwa Lake, Korea)

  • 최정훈;김계영;홍대벽
    • 한국지구과학회지
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    • 제21권5호
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    • pp.541-552
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    • 2000
  • 1997년 2월부터 1998년 7월까지 총 33회에 걸쳐 시화호내 11개 정점에서 장기간 관측한 수온, 염분 자료를 이용하여 배수갑문운용에 따른 시화호의 물성변화를 파악하였다. 배수갑문을 통한 해수유통이 없었던 1997년 3월부터 1997년 6월까지 시화호내의 염분은 15psu 이하로 나타났으며, 약 11m 수심을 경계로 염분에 의한 강한 성층이 관측되었다. 배수갑문을 통한 해수유입이 시작된 1997년 7월에는 태양복사열의 증가로 표층수온이 급격히 상승하여 표층과 저층의 수온차가 약 10^{\circ}C$ 이상으로 나타났으며, 1997년 10월{\sim}$12월에는 표층에 비해 저층 수온이 상대적으로 높은 수온역전현상이 발생하였다. 1997년7월 배수갑문 개폐시기를 전 ${\cdot}$ 후로 배수갑문 내측에 위치한 정점에서 장기간 수온, 염분, 유속 및 유향을 조사한 결과, 해수유입시 수온과 염분이 대칭적인 분포를 나타내었으며, 이는 외해로부터 해수 유입시마다 저온, 고염의 해수가 시화호 내로 유입되었기 때문인 것으로 판단된다. 1998년 1월 이후에는 지속적인 배수갑문 개폐의 영향으로 시화호의 염분이 30psu 이상으로 해수화되었으며, 배수갑문 개폐 이전에 비해 성층이 크게 약화된 것으로 나타났다.

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동지나해 저서어류의 자원조사 연구 - 3 . 1989년 11월 동지나해의 해황 - (Investigation of Demersal Fisheries Resources of East China Sea - 3 . The Oceanographic Condition of the East China Sea in November , 1989 -)

  • 김정창
    • 수산해양기술연구
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    • 제26권2호
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    • pp.151-166
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    • 1990
  • 1989년 11월 4~12일의 동지나해에서 관측한 자료를 사용하여 해황을 조사하였다. 그 결과 표층의 해황은 쓰시마 난류수와 중국 대륙 연안수로 대별되고 그 사이에는 강한 전선이 형성되고 있다. 쓰시마 난류수는 수온 22~24$^{\circ}C$, 염분 33.5~34.5$\textperthousand$의 고온.고염수로 용존산소는 4.5ml/l 이하로 낮았다. 그리고 중국 대륙 연안수는 수온 18~2$0^{\circ}C$, 염분 32.0$\textperthousand$ 이하인 저온.저염수로 용존산소는 4.5~5.0ml/l로 높게 나타났다. 저층에도 역시 표층과 같이 쓰시마 난류수와 중국 대륙 연안수가 존재하였다. 이 외에도 북쪽에는 수온 1$0^{\circ}C$ 이하, 염분 33.0$\textperthousand$ 내외, 용존 산소는 4.5ml/l 이상의 고산소수인 황해 저층냉수가 분포하고, 동남쪽에는 수온 15~19$^{\circ}C$ 염분 34.5$\textperthousand$, 용존산소는 2.0~3.5ml/l의 저산소수인 동지나해 남부 저층수도 분포하였다. 그리고 중국 대륙 연안수와 쓰시마 난류수의 중간 특성을 나타내는 수온 20.5~22.$0^{\circ}C$, 염분 32.3~33.3$\textperthousand$의 물은 중국 대륙 연안수와 쓰시마 난류가 혼합된 결과라고 판단된다.

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진해ㆍ마산만의 성층화 및 DO 농도변화 (Stratification and DO Concentration Changes in Chinhae-Masan Bay)

  • 조홍연;채장원;전시영
    • 한국해안해양공학회지
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    • 제14권4호
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    • pp.295-307
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    • 2002
  • 진해ㆍ마산만에서 수온, 염도 및 DO농도를 연직방향으로 1년동안 측정하였다. 관측된 수온 및 염도 자료를 이용하여 성층화 특성을 분석하고, DO농도의 연직변화를 성층화 특성 및 저질오염도와 관련하여 분석하였다. 분석결과, 진해ㆍ마산만의 수온 성층화는 4월 이전에 시작되어 10월경에 종료되는 양상을 보이고 있는 것으로 판단되었다. 또한, 1998년 4월 연직방향의 평균 염도변화는 3.9(equation omitted) 정도로 증가되고, 1998년 8월 9.3(equation omited), 10월 4.3(equation omitted) 정도가 유지되어 가을철에도 염도 성층이지속되고 있는 것으로 파악되었다. 한편, DO 농도는 성층화가 시작되는 4월을 기점으로 연직방향 평균 DO농도변화도 2.6(mg/L)에서 6월 8.3(mg/L), 8월 5.9(mg/L), 9월 7.24(mg/L), 10월4.4(mg/L)으로 명확한 성층화 양상을 보이고 있다. DO 농도변화는 전체적으로 해역의 오염도와 밀접한 관련이 있으나. 성층화 기간동안 연직방향 DO 농도편차가 크게 나타나고 있는것은 수온 및 염도성층에 의한 표 저층간의 물질교환 저해에 의한 영향도 직접적인 요인으로 작용하고 있은 것으로 파악되었다.

여수연안 정치망 어장의 환경요인과 어항 변동에 관한 연구 (Environmental Factors and Catch Fluctuation of Set-Net Grounds in the Coastal Waters of Yeosu)

  • 김동수;노홍길
    • 수산해양기술연구
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    • 제29권1호
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    • pp.1-10
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    • 1993
  • In order to investigate the environmental properties of set net grounds located in the coastal waters of Yeosu, oceanographic observations on the fishing grounds were carried out by the training ship of Yeosu Fisheries University from Jun. 1988 to Dec. 1990. The resultes obtained are summarized as follows; 1) The water mass in the fishing grounds were divided into the inner water (29.50-31.00$\textperthousand$), the mixed water (31.10-32.70$\textperthousand$) and the offshore water (32.70-34.30$\textperthousand$) according to the distribution of salinity from T-S diagram plotted all salinity data observed from Jun. 1988 to Dec. 1990. In spring the mixing water prevailed and in summer the inner and mixing water. But in autumn and winter the mixing and offshore waters prevailed. 2) The inner water which was formed by land water from the river of Somjin and the precipitation in the Yeosu district flowed southerly along the coast of Dolsando and spread south-easterly in the vicinity of Kumodo. The inner water and offshore water which supplied from the vicinity of Sorido and Yokchido formed the thermal front and halofront. 3) As the mixing water flowing from the western sea of Cheju to the southern coast of korea was low in temperature, the water mass of low temperature which appeared at the offshore bottom of Sorido in summer was considered not to be the Tsushima warm current. 4) As vertical mixing was made frequently in spring, autumn and winter, the differences in temperature and salinity between surface and bottom was respectively small. In summer, however, the mixing was not made because of the inner water expanded offshore through the space between surface and 10m layer and so a thermocline of $2.0^{\circ}C$/10m and halocline of 4.0$\textperthousand$/10m respectively in vertical gradient was formed. 5) In the vicinity of Dolsando and Kum a water low in salinity prevailed, but in the vicinity of Namhaedo and YoKchido the reverse took place. The inner and mixing waters formed at these arease was limited to the observation area not to spread widely.

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Numerical simulation of Hydrodynamics and water properties in the Yellow Sea. I. Climatological inter-annual variability

  • Kim, Chang-S.;Lim, Hak-Soo;Yoon, Jong-Joo;Chu, Peter-C.
    • Journal of the korean society of oceanography
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    • 제39권1호
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    • pp.72-95
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    • 2004
  • The Yellow Sea is characterized by relatively shallow water depth, varying range of tidal action and very complex coastal geometry such as islands, bays, peninsulas, tidal flats, shoals etc. The dynamic system is controlled by tides, regional winds, river discharge, and interaction with the Kuroshio. The circulation, water mass properties and their variability in the Yellow Sea are very complicated and still far from clear understanding. In this study, an effort to improve our understanding the dynamic feature of the Yellow Sea system was conducted using numerical simulation with the ROMS model, applying climatologic forcing such as winds, heat flux and fresh water precipitation. The inter-annual variability of general circulation and thermohaline structure throughout the year has been obtained, which has been compared with observational data sets. The simulated horizontal distribution and vertical cross-sectional structures of temperature and salinity show a good agreement with the observational data indicating significantly the water masses such as Yellow Sea Warm Water, Yellow Sea Bottom Cold Water, Changjiang River Diluted Water and other sporadically observed coastal waters around the Yellow Sea. The tidal effects on circulation and dynamic features such as coastal tidal fronts and coastal mixing are predominant in the Yellow Sea. Hence the tidal effects on those dynamic features are dealt in the accompanying paper (Kim et at., 2004). The ROMS model adopts curvilinear grid with horizontal resolution of 35 km and 20 vertical grid spacing confirming to relatively realistic bottom topography. The model was initialized with the LEVITUS climatologic data and forced by the monthly mean air-sea fluxes of momentum, heat and fresh water derived from COADS. On the open boundaries, climatological temperature and salinity are nudged every 20 days for data assimilation to stabilize the modeling implementation. This study demonstrates a Yellow Sea version of Atlantic Basin experiment conducted by Haidvogel et al. (2000) experiment that the ROMS simulates the dynamic variability of temperature, salinity, and velocity fields in the ocean. However the present study has been improved to deal with the large river system, open boundary nudging process and further with combination of the tidal forcing that is a significant feature in the Yellow Sea.

염도와 수온의 변화가 Vibrio vulnificus의 생존에 미치는 영향 (Effects of Salinity and Temperature on the Survival of Vibrio vulnificus)

  • 김영만;권지영
    • 한국수산과학회지
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    • 제30권3호
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    • pp.367-376
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    • 1997
  • Vibrio vulnificus is a gram-negative, halophilic, oxidase-positive, lactose-positive, motile, rod shaped bacterium that has been associated with primary septicemia and wound infection. Elucidating the growth and survival of V. vulnificus in ecological conditions is of great importance to develop sanitary measure against this microorganism. Thus we simulated the ecological conditions and evaluated the effect. About $10^5\;CFU/ml$ of V. vulnificus was inoculated to fresh water, brackish water $(1\%\;NaCl)$, sea water $(3\%\;NaCl)$, and bottom deposit solution. The same concentration of V. vulnificus was also inoculated to distilled water, $1\%\;NaCl$ solution and $3\%\;NaCl$ solution as controls. These were stored at 4, 15 and $25^{\circ}C$, respectively and were used to assess the effects of temperature and salinity on the survival of V. vulnificus. In fresh water V. vulnificus could not survive regardless of storage temperature. In case of brackish water and sea water survival time of V. vulnificus was the longest at $25^{\circ}C$, and the number of V. vulnificus was decreased most rapidly at $4^{\circ}C$. V. vulnificus survived longer in brackish water than in any other conditions. In bottom deposit solution containing brackish water, the survival time of V. vulnificus was longer and the rate of decline was slower than that in brackish water. These results indicate that both biological and physicochemical factors such as temperature and salinity could affect survival of V. vulnificus. V. vulnificus, damaged in normal fresh water, did not grow on TCBS agar of selective plating medium but grew on BHI agar plate; However, V. vulnificus was recovered by addition of salt and nutrient materials.

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2000년 5월 제주도 주변해역의 해황 및 표층 저염분수의 출현 (Oceanographic Conditions in the Neighboring Seas of Cheju Island and the Appearance of Low Salinity Surface Water in May 2000)

  • 김상현;노홍길
    • 한국수산과학회지
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    • 제37권2호
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    • pp.148-158
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    • 2004
  • In the adjacent seas of Cheju Island, the oceanographic conditions show low salinity surface waters starting in May. This water flows from the southeast part of the China Coastal Water, which flows southeastward along the Great Yangtze Sand Bank until April, with the help of southeasterly winds and flows from the adjacent sea off Cheju Island. In May, the Tsushima Warm Current and the low salinity surface water fluctuate in short and long-term periods as influenced by Yellow Sea Cold Water, which flows to the bottom layer at the western entrance of Cheju Strait. Temperature and salinity fronts in the northeastern sea area of U Island are formed in the boundary area between the Tsushima Warm Current, which expands towards Cheju Island from the southeastern sea area of Cheju Island and Hows out from the eastern entrance of the strait. Seasonally, additional oceanographic conditions, such as coastal counter-currents, which flow southward, appears within limited areas in the adjacent eastern and western seas of Cheju Island.

어장의 저서생물에 미치는 해저 폐기물의 영향 (The Impact of Bottom Debris on the Benthos in Fishing Grounds)

  • 김종화;김삼곤;김민석;김용복
    • 수산해양교육연구
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    • 제19권3호
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    • pp.491-501
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    • 2007
  • This study deals with bottom debris and benthos which have obtained by using a beam trawler in Chinhae bay, Korea. The temperature and salinity didn't impact on the fish species and weights in the bay. But bottom debris is dominated on the precipitation into the bay. And it also was nearly very soiled owing to geographical condition of semi-enclosed bay. Moreover, all debris was not related on the quantitative variability of benthos. On the other hand, it was revealed to be reverse-correlative with fish species and positive-correlative with fish weights.