• 제목/요약/키워드: Stratified lake

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대형 성층 호수의 수온과 내부파의 3차원 수치 모델링 (Three-dimensional Numerical Modeling of Water Temperature and Internal Waves in a Large Stratified Lake)

  • 정세웅
    • 한국물환경학회지
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    • 제31권4호
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    • pp.367-376
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    • 2015
  • The momentum and kinetic turbulent energy carried by the wind to a stratified lake lead to basin-scale motions, which provide a major driving force for vertical and horizontal mixing. A three-dimensional (3D) hydrodynamic model was applied to Lake Tahoe, located between California and Nevada, USA, to simulate the dominant basin-scale internal waves in the deep lake. The results demonstrated that the model well represents the temporal and vertical variations of water temperature that allows the internal waves to be energized correctly at the basin scale. Both the model and thermistor chain (TC) data identified the presence of Kelvin modes and Poincare mode internal waves. The lake was weakly stratified during the study period, and produced large amplitude (up to 60 m) of internal oscillations after several wind events and partial upwelling near the southwestern lake. The partial upwelling and followed coastal jets could be an important feature of basin-scale internal waves because they can cause re-suspension and horizontal transport of fine particles from nearshore to offshore. The internal wave dynamics can be also associated with the distributions of water quality variables such as dissolved oxygen and nutrients in the lake. Thus, the basin-scale internal waves and horizontal circulation processes need to be accurately modeled for the correct simulation of the dissolved and particulate contaminants, and biogeochemical processes in the lake.

바람의 회전응력, 지형, 그리고 성층화가 성층 호수의 물 순환에 미치는 영향 (Effects of Wind Stress Curl, Topography, and Stratification on the Basin-scale Circulations in a Stratified Lake)

  • 정세웅
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.53-53
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    • 2015
  • Basin-scale motions in a stratified lake rely on interactions of spatially and temporally varying wind force, bathymetry, density variation, and earth's rotation. These motions provide a major driving force for vertical and horizontal mixing of inorganic and organic materials, dissolved oxygen, storm water and floating debris in stratified lakes. In Lake Tahoe, located between California and Nevada, USA, basin-scale circulations are obviously important because they are directly associated with the fate of the suspended particulate materials that degrade the clarity of the lake. A three-dimensional hydrodynamic model, ELCOM, was applied to Lake Tahoe to investigate the underlying mechanisms that determine the characteristics of basin-scale circulations. Numerical experiments were designed to examine the relative effects of various mechanisms responsible for the horizontal circulations for two different seasons, summer and winter. The unique double gyre, a cyclonic northern gyre and an anti-cyclonic southern gyre, occurred during the winter cooling season when wind stress curl, stratification, and Coriolis effect were all incorporated. The horizontal structure of the upwelling and downwelling formed due to basin-scale internal waves found to be closely related to the rotating direction of each gyre. In the summer, the spatially varying wind field and the Coriolis effect caused a dominant anti-cyclonic gyre to develop in the center of the lake. In the winter, a significant wind event excited internal waves, and a persistent (2 week long) cyclonic gyre formed near the upwelling zone. Mechanism of the persistent cyclonic gyre is explained as a geostrophic circulation ensued by balancing of the baroclinc pressure gradient (or baroclinic instability) and Coriolis effect. Topographic effect, examined by simulating a flat bathymetry with constant depth of 300m, was found to be significant during the winter cooling season but not as significant as the wind curl and baroclinic effects.

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Analysis of Stratified Lake using an Eddy Diffusion and a Mixed-layer Models

  • Kim, Kyung-sub
    • Korean Journal of Hydrosciences
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    • 제8권
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    • pp.111-123
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    • 1997
  • A one-dimensional eddy diffusion model and a mixed-layer model are developed and applied to simulate the vertical temperature profiles in lakes. Also the running result of each method are compared and analyzed. In an eddy diffusion model, molecular diffusivity is neglected and eddy diffusivity which does not need lake-specific fitting parameter and constant lake's level are applied. The heat exchanges at the water surface and the bottom are formulated by the energy balance and zero energy gradient, respectively. In a mixed-layer model, two layers approach which has a constant thickness is adopted. The application of these models which use explicit finite difference and Runge-Kutta methods respectively demonstrates that the models simulate water temperatures efficiently.

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저층수 흡입식 광역 순환장치의 설계변수에 따른 배출량 및 소비동력 변화 특성에 대한 수치 해석 연구 (Numerical Analysis on Changes in Flowrate of Draft Water and Power by Changing Design Parameters of a Long-Distance Water Circulation)

  • 송동근;홍원석;김영철;박명하
    • 한국유체기계학회 논문집
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    • 제13권1호
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    • pp.23-28
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    • 2010
  • A draft tube which has impeller to elevate bottom water and spread it over surface of lake water, induces convective circulation of lake water, a Long-Distance Circulation (LDC). Circulation of lake water make stratified water mixed and enhance DO (Dissolved Oxygen) of bottom water. Circulation rate of water is determined by draft rate of the tube, which is dependent on design parameters of the draft tube system, i. e. dimension of impeller and diffuser, inclined angle of impeller, impeller shape, and rotational speed. In this study, change in draft rate and power consumption of circulation equipment was investigated numerically with changing impeller dimension, angle and rotational speed. It was found that flowrate of draft water was increased as the dimensions of draft tube and impeller, and rotational speed and inclined angle of impeller increased. The power consumption was also elevated with increasing parameter values, and final selection of parameter values was made to satisfy target flowrates and power consumption.

시화호의 계절변화에 따른 지화학적 환경요인 특성 연구 (The Environmental Impacts of Seasonal Variation on Characteristics of Geochemical Parameters in Lake Shihwa, Korea)

  • 김태하;박용철;이효진;김동화;박준건;김성준;이미연
    • 한국환경과학회지
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    • 제13권12호
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    • pp.1089-1102
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    • 2004
  • Seasonal variation of biogeochemical characteristics was determined in Lake Shihwa from October 2002 to August 2003. When the lake was artificially constructed for the freshwater reservoir in 1988, the development of the strong haline density stratification resulted in two-layered system in water column and hypoxic/anoxic environment prevailed in the bottom layer due to oxidation of accumulated organic matters in the lake. Recently, seawater flux to the lake through the sluice has been increased to improve water quality in the lake since 2000, but seasonal stratification and hypoxic bottom layer of the lake still developed in the summer due to the nature of artificially enclosed lake system. As the lake is still receiving tremendous amount of organic matters and other pollutants from neighboring streams during the rainy summer season, limited seawater flux sluicing into the lake may not be enough for the physical and biogeochemical mass balance especially in the summer. The excess of accumulated organic matters in the bottom layer apparently exhausted dissolved oxygen and affected biogeochemical distributions and processes of organic and inorganic compounds in the stratified two-layered environment in the summer. During the summer, ammonia and dissolved organic carbon remarkably increased in the bottom layer due to the hypoxic/anoxic condition in the bottom layer. Phosphate also increased as the result of benthic flux from the bottom sediment. Meanwhile, dissolved organic carbon showed the highest value at the upstream area and decreased along the salinity gradient in the lake. In addition to the sources from the upstream, autochthonous origin of particulate organic carbon from algal bloom in the lake might be more important for sustaining aggravated water quality and development of deteriorated bottom environment in the summer. The removal of trace metals could be attributed to scavenging by strong insoluble metal-sulfide compounds in the hypoxic/anoxic bottom layer in the summer.

장자못의 생태학적 연구 제II보 춘계 장자못의 기초생산 (Ecological Studies of the Lake Changjamot II. Primary Production in Lake Changjamot During Spring Season)

  • 엄규백
    • Journal of Plant Biology
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    • 제17권2호
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    • pp.53-62
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    • 1974
  • A study was made on the primary production of Lake Changjamot during the spring season of 1973 by menas of the oxygen method. The stratification of temperature and dissolved oxygen were formed in May with the stratified structure of phytoplankton. The range of Secchi disc transparency was from 0.8m to 2.3m during the nine months of this investigation, which was begun in January, 1973. The value was lowest in early June when the phytoplankton blooming reached the peak. The concentration of PO4-P, NH3-N, NO3-N and NO3-N was reduced at the beginning of the phytoplankton blooming and increased again after May except PO4-P. It might have been caused by the inflow of the nitogenous fertilizer from the surrounding agricultural area since May when farming was started. The total amount of chlorophyll-a in the entire water column varied from 25mg/$m^2$ to 277mg/$m^2$ from January till September with the maximum value occurring in early June. These values show a considerable eutrophication of the in comparison with the data obtained in 1969. The daily gross production in the lake varied from a low of 655mgC/$m^2$ to a high of 2,859 mgC/$m^2$ during the spring season and this corresponds to the variation of the amount of chlorophyll. The total amount of daily respiration varied from 650mg C/$m^2$ in winter to 2,307 mg C/$m^2$ in late spring and exceeds gross primary production especially in late May showing the negative balance of daily production and consumption of organic material at that time. In conclusion, Lake Changjamot is a fairly productive and a moderately autotrophic lake and has been eutrophicated much during the past four years.

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섬진강 ${\cdot}$ 영산강 수계 주요 호소의 수질 동향과 영양상태 조사 (Trophic State and Water Quality in Major Lakes of the Sumjin and Youngsan River Systems)

  • 이상현;장남익;김종민;김현구;조영관;정진;신용식
    • 생태와환경
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    • 제39권3호통권117호
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    • pp.296-309
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    • 2006
  • 조사 시기 동안 (2000~2004년) 주암호와 동복호에서는 겨울을 제외한 시기에 표층과 저층의 수온차이로 인해성층화가 발생하였지만 영산호에서는 나타나지 않았다. 투명도는 주암호>동복호>영산호 순으로 영산호에서 낮은 투명도를 보였으며 주암호와 동복호에서는 식물플랑크톤의 생물량이 높게 나타나는 가을 저층에는 저산소상태로 수질 악화를 나타내었다. 암모니아, 질산염, 인산염 TN, TP는 주암호와 동복호에 비해 영산호에서 높게 나타났으나 클로로필 a는 평균적으로 동복호에서 높았으며 영산호에서 낮았다. 3개호소의 여름, 가을 연평균 영양상태는 평균적으로 영산호>동복호>주암호 순으로 영산호에서 높았다. 주암호와 동복호에서는 TSI (CHL)>TSI (SD)>TSI (TP) 순으로 나타나 조류성장에 있어 인산염이 제한영양염으로 작용할 가능성을 나타내었으며 영산호에서는 TSI (TP)>TSI (SD)>TSI (CHL) 순으로 나타났다. 영산호에서는 인산염에 의한 제한보다는 탁도 즉 광량에 의한 제한이 식물플랑크톤의 성장에 영향을 미치는 것으로 판단된다. 주암호는 빈, 중영양을 보였으며, 동복호에서는 중, 부영양을 영산호에서는 부, 과영양을 보였다.

저수지의 수질 관리를 위한 간헐식 양수통형 인공 순환 장치의 설계 방법 개발 (Design Methods of Intermittent Deep Draw Aeration System for Reservoir Water Quality Management)

  • 서동일;송무석;황현동;이은형
    • 상하수도학회지
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    • 제18권4호
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    • pp.445-452
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    • 2004
  • Intermittent deep draw artificial circulation system is one of the most widely used destratification systems to control algal bloom in reservoirs in Korea. However, there have been neither theoretical background of design criteria nor operation guide line for efficient application of the system available for such systems. A design method was developed to calculate required compressor capacity and number of circulation units considering physical interactions between stratified water layers and plumes induced by the intermittent deep draw artificial circulation system. The program was tested with data observed in Yeoncho Lake. The results indicated that the developed method can applied in the fields successfully. Further validation processes would improve design and operation methods.

와확산 및 혼합층 모델을 이용한 성층화 호수 해석 (Analysis of Stratified Lake using an Eddy Diffusion and a Mixed-Layer Models)

  • 김경섭
    • 물과 미래
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    • 제29권5호
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    • pp.235-244
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    • 1996
  • 호수에서의 수직온도분포를 모의하기 위하여, 수리학적 특성 즉 유속분포가 필요없는 일차원 와확산모델 및 혼합층모델이 개발, 적용되었으며 각 모델의 결과가 비교, 검토되었다. 전자는 지배방정식 유도시 분자확산을 모델적용시 년간 수면변화를 무시했으며, 후자는 간단한 해석을 위하여 일정한 층의 두께를 가정하였다. 호수표면과 바닥에서의 온도경계조건이 각각 열 에너지의 이동에 의해서 결정되도록 하는 와확산모델은 explicit 유한차분법을, 두층을 이용하는 혼합층모델은 Runge-Kutta 방법을 사용하였다. 측정된 데이타와 와확산모델 및 혼합층모델의 계산치와 비교해본 결과, 만족한 결과를 도출하였다. 따라서, 호수관리의 수단으로 이 모델들을 유용하게 이용할 수 있을 것으로 사료된다.

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몽골 훕스굴 호수 수층에서 유기물질 분해세균의 분포 (Distribution of Bacterial Decomposers in Lake Khuvsgul, Mongolia)

  • 정유정;정다운;김주영;조영근;임정한;이홍금;안태석
    • 미생물학회지
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    • 제45권2호
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    • pp.119-125
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    • 2009
  • 동토지대 거대 담수호에 서식하는 종속영양세균 군집의 생태학적 기능을 파악하기 위하여, 몽골 북부의 동토지대 경계에 위치한 스굴 호수에서, 전체 세균군집의 구조와 유기물질을 분해할 수 있는 미생물 군집의 구조를 수심별로 비교 분석하였다. 환경인자 분석결과, 수심 5~10 m 사이에서 thermocline과 chemocline이 관찰되었다. Denaturing gradient gel electrophoresis (DGGE)로 전체 세균군집의 구조를 수심별로 비교한 결과 0~5 m 사이에서 군집구조의 변화가 컸고, 10 m 이상에서는 Acidovorax facilis를 위주로 비교적 안정된 군집을 형성하였다. $10^{\circ}C$에서 고분자 유기물 분해 활성도(protease, cellulase, amylase, lipase)가 높은 균주들을 탐색하여 23개 균주를 선별하였다. 표층수로부터 Acidovorax defluvii와 Sphingobacterium faecium이 분리되었는데 cellulase 활성이 높았다. 수심2 m, 5 m 및 10 m 이상의 시료에서 분리된 세균군집은 각각, Flavobacterium succinicans, Mycoplana bullata, A. facilis가 우점하였다. F. succinicans는 높은 protease 활성을 보였고, 수심 5 m의 M. bullata는 protease와 cellulase 활성이 있었지만, 상대적으로 약한 활성을 보였다. 수심10 m의 A. facilis 균주들은 cellulase 또는 lipase를 서로 배타적으로 발현하였다. 온도별 성장속도를 분석한 결과 표층(0~5m) 세균들은 기회성 호냉성 세균이었고, 심층($\geq$10m)에서 분리된 균주들은 $10^{\circ}C$ 이하에서 성장률이 낮았다. 심층의 저온 빈영양 상태 때문에 심층 세균들간의 경쟁에서 빠른 저온 성장이 요구되지 않고, 상층의 경우 육상 또는 식물 플랑크톤으로부터 영양물질이 공급되므로 저온에서 빠른 성장 속도를 보이는 세균들이 상층에 주로 분포하는 것으로 해석되었다. 따라서 스굴 호수수층에서 관찰된 세균군집의 종 분포와 물질분해 작용의 성층화는, 한냉대 빈영양 담수 호수에서 분해자 군집들의 생태학적 기능이 0~10 m 수심의 표층에 집중됨을 시사하였다.