• 제목/요약/키워드: Reservoir turbidity

검색결과 128건 처리시간 0.044초

실시간 저수지 탁수 감시 및 예측 모의 (A Real-time Monitoring and Modeling of Turbidity Flow into a Reservoir)

  • 정세웅;고익환
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2005년도 학술발표회 논문집
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    • pp.1184-1188
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    • 2005
  • The impacts of turbidity flow induced by summer rainfall events on water supply, aquatic ecosystems, and socioeconomics are significant and major concerns in most of reservoirs operations. As a decision support tool, the real-time turbidity flow monitoring and modeling system RTMMS is under development using a laterally integrated two-dimensional (2D) hydrodynamic and water quality model. The objectives of this paper is to present the preliminary field observation results on the characteristics of rainfall-induced turbidity flows and their density flow regimes, and the model performance in replicating the fate and transport of turbidity plume in a reservoir. The rainfall-induced turbidity flows caused significant drop of river water temperature by 5 to $10^{\circ}C$ and resulted in density differences of 1.2 to $2.6kg/m^3$ between inflow water and ambient reservoir water, which consequently led development of density flows such as plunge flow and interflow in the reservoir. The 2D model was set up for the reservoir. and applied to simulate the temperature stratification, density flow regimes, and temporal and spatial turbidity distributions during flood season of 2004 After intensive refinements on grid resolutions , the model showed efficient and satisfactory performance in simulating the observed reservoir thermal stratification and turbidity profiles that all are essentially required to enhance the performance of RTMMS.

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성층 저수지로 유입하는 탁류의 유동특성과 영향에 관한 연구 (Flow regimes and water quality impact of turbidity current into a stratified reservoir)

  • 정세웅
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2002년도 학술발표회 발표논문집
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    • pp.269-272
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    • 2002
  • Turbidity currents, often develop after heavy storm events, deliver various non-point pollutants and tend to lead eutrophication, depressed dissolved oxygen, and sedimentation in reservoirs. Field observations were performed to investigate the flow regimes of turbidity currents and their impact on reservoir water quality in Daecheong Reservoir. A 2D laterally-averaged hydrodynamic and water quality model was applied to simulate the temporal and spatial distributions of turbidity in the reservoir, and evaluated by comparing with the field data.

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홍수시 대청호 유역에 발생하는 탁수의 물리적 특성 (Characterization of Physical Properties of Turbid Flow in the Daecheong Reservoir Watershed dining Floods)

  • 정세웅;이흥수;윤성완;예령;이준호;추창오
    • 한국물환경학회지
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    • 제23권6호
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    • pp.934-944
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    • 2007
  • Fine suspended solids (SS) induced into a reservoir after flood events play important ecological and water quality roles by presenting persistent turbidity and attenuating light. Thus the origin and physical features must be characterized to understand their transport processes and associated impacts, and for the establishment of watershed based prevention strategies. This study was aimed to characterize the physical properties of the SS sampled from Daecheong Reservoir and its upstream rivers during flood events. Extensive field and laboratory experiments were carried out to identify the turbidity-SS relationships, particle size distributions, settling velocity, and mineral compositions of the SS. Results showed that the turbidity-SS relationships are site-specific depending on the locations and flood events in the system. The turbidity measured within the reservoir was much greater than that measured in the upstream rivers for the same SS value. The effective diameters ($D_{50}$) in the rivers were in the range of $13.3{\sim}54.3{\mu}m$, while those in the reservoir were reduced to $2.5{\sim}14.0{\mu}m$ due to a fast settling of large particles in the rivers. The major minerals consisting of the SS were found to be Illite, Muscovite, Albite, and Quartz both in the rivers and reservoir. Their apparent settling velocities at various locations in the reservoir were in the range of 0.06~0.13 m/day. The research outcome provides a fundamental information for the fine suspended particles that cause persistent turbidity in the reservoir, and can be used as basic parameters for modeling study to search watershed based optimal control measures.

심층 방류하는 안동호 내 탁수의 거동 (Spatial and Temporal Dynamics of Turbid Water in Hypolimnetic Discharging Reservoir)

  • 박재충;정석원;박정원;김호준
    • 생태와환경
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    • 제41권3호
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    • pp.360-366
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    • 2008
  • 본 연구는 심수층의 고정 취수구를 통해 방류하는 안동댐을 대상으로 1일 최대 99.4 mm, 총 299.1 mm인 단일사상의 강우로 유입된 고탁수의 호소 내 시 공간적인 거동과 방류수의 탁도가 감소하는 경향을 조사하였다. 유입된 고탁수는 중류지점부터 호소 바닥에서 이탈되어 중층 밀도류로 최하류까지 이동하였다. 강우 이전의 호소 내 탁도는 10 NTU 이하의 균일한 분포를 보였으나 강우에 의해 수심 16 m에 최고 290 NTU의 고탁수대가 형성되었다. 고탁수는 강우 후 3일부터 방류수의 탁도를 상승시켰으며 5일째에 129 NTU로 최고 탁도를 보였다. 댐까지 이동한 탁수층은 취수구 상부 5 m 이내의 수심에 최고 농도로 분포하였으며 하류 방류에 의해 탁수층의 두께와 농도가 감소하였다. 방류수의 탁도가 30 NTU까지 감소하는데 38일, 강우 이전의 상태로 회복되는데 87일이 소요되었으며, 감소경향의 상관계수는 각각 0.96, 0.97이었다. 중층에서 밀도류를 형성한 고탁수는 취수구 직상부에 분포하면서 취수구 방향으로 점차 유인되어 하류로 배출되었으며 호소 바닥으로의 침강은 일어나지 않았다. 안동호로 유입된 고탁수는 심층에 위치한 취수구를 통해 효과적으로 배출되므로 취수구 위치는 고탁수 배제에 적정한 것으로 판단된다.

입자크기 분포를 고려한 부력침강 저수지 밀도류의 탁도 모델링 (Turbidity Modeling for a Negative Buoyant Density Flow in a Reservoir with Consideration of Multiple Particle Sizes)

  • 정세웅;이흥수;정용락
    • 한국물환경학회지
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    • 제24권3호
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    • pp.365-377
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    • 2008
  • Large artificial dam reservoirs and associated downstream ecosystems are under increased pressure from long-term negative impacts of turbid flood runoff. Despite various emerging issues of reservoir turbidity flow, turbidity modeling studies have been rare due to lack of experimental data that can support scientific interpretation. Modeling suspended sediment (SS) dynamics, and therefore turbidity ($C_T$), requires provision of constitutive relationships ($SS-C_T$) and accounting for deposition of different SS size fractions/types distribution in order to display this complicated dynamic behavior. This study explored the performance of a coupled two-dimensional (2D) hydrodynamic and particle dynamics model that simulates the fate and transport of a turbid density flow in a negatively buoyant density flow regime. Multiple groups of suspended sediment (SS), classified by the particle size and their site-specific $SS-C_T$ relationships, were used for the conversion between field measurements ($C_T$) and model state variables (SS). The 2D model showed, in overall, good performance in reproducing the reservoir thermal structure, flood propagation dynamics and the magnitude and distribution of turbidity in the stratified reservoir. Some significant errors were noticed in the transitional zone due to the inherent lateral averaging assumption of the 2D hydrodynamic model, and in the lacustrine zone possibly due to long-term decay of particulate organic matters induced during flood runoffs.

표층수를 방류하는 저수지(용담호)에서 몬순 탁수환경의 공간적 해석 (Spatial Interpretation of Monsoon Turbid-water Environment in a Reservoir (Yongdam) Discharging Surface Water, Korea)

  • 신재기;허진;이흥수;박재충;황순진
    • 한국물환경학회지
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    • 제22권5호
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    • pp.933-942
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    • 2006
  • In this study, temperature, turbidity, suspended paniculate matter (SPM) distribution and mineral characteristics were investigated to explain spatial distribution of the turbid-water environment of Yongdam reservoir in July, 2005. Six stations were selected along a longitudinal axis of the reservoir and sampling was conducted in four depths of each station. Water temperature was showed the typical stratified structure by the effects of irradiance and inflow. Content of inorganic matter in suspended particles increased with the concentration of suspended particulate matter (SPM) due to the reduction of ash-free dry matter (AFDM). Turbidity ranged from 0.6 to 95.1 NTU and the maximum turbidity value of each station sharply increased toward downstream from upstream. The high turbidity layers were located at the depth between 12~16 m. Particle size ranged from 0.435 to $482.9{\mu}m$. day and silt-sized particles corresponded 91.9~98.9% and 1.1~8.0% in total numbers of SPM, respectively. Turbidity showed high correlations with clay (r=0.763, p<0.05) and silt content (r=0.870, p<0.05).Inorganic matter content (r=0.960, p<0.01) was more correlated with turbidity than organic matter (r=0.823, p<0.05). Mineral characterization using x-ray diffraction and electron probe microanalyzer demonstrated that the major minerals contained in the SPM were kaolinite, illite, vermiculite and smectite. As results of this study, surface water discharge as well as small size of the SPM were suggested as long-term interfering factors in settling down the turbid water in the reservoir.

팔당호에서 수중 탁도의 일 변동과 고탁수의 입자 분포 (Daily Variations of Water Turbidity and Particle Distribution of High Turbid-Water in Paltang Reservoir, Korea)

  • 신재기;강창근;황순진
    • 생태와환경
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    • 제36권3호통권104호
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    • pp.257-268
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    • 2003
  • 하천형 저수지 (팔당호)에서 탁도의 변동과 탁수에 포함된 입자의 분포를 파악하기 위해 1999${\sim}$2001년동안 일 모니터링 하였다. 수중 탁도와 탁수의 입자 분포는 강우 패턴의 기후학적 요인과 유입${\cdot}$방류량의 수문학적요인 영향이 중요하게 작용하였다. 탁도의 연 평균 농도는 매년 비슷하였고, 연중 10 NTU 이하는 85.0%를 차지하였다. < 5 NTU는 겨울철${\sim}$봄철에, 5${\sim}$10 NTU범위는 가을철에, > 20 NTU이상은 여름철에 우점하는 계절적 특성이 뚜렷하였다. 탁도의 최대값은 7월 하순${\sim}$8월 초순에 발생하였고, 수문 변동과 달리 1999년에서 2001년으로 갈수록 증가하였다. 특히, 2001년에 저수지의 최대탁도는 하류로 갈수록 더욱 증가하는 양상이 현저하였다. 또한, 1999년에는 유량과 탁도가 완만하게 증감되었으나, 2000년과 2001년에는 초기에 급격하게 증가한 후 유량이 커지면서 감소하는 패턴을 보였다. 탁수의 입자는 전 정점에서 clay성분으로 갈수록 분포가 더욱 조밀하였을 뿐만 아니라 차지하는 비율도 높았다. 탁수에서clay는 63.9${\sim}$66.6%, silt는 33.4${\sim}$36.1% 범위로서 총 입자수의 98.9${\sim}$100%범위를 차지하였고, sand는 1.1%이내이었다. 하천형 저수지에서 수중 탁도는 비강우기에 플랑크톤의 생물량에 의한 영향을 많이 받으나 강우기에는 토양 성분을 근간으로 하는 무기입자의 양과 상대적 비율이 매우 우세한 것으로 평가되었다.

댐 배수조작에 따른 저수지내 탁수변화 모의 - 대청댐을 대상으로 - (Simulation of Turbid Water in the Stratified Daecheong Reservoir during Gate Operation)

  • 이재일;서세덕;이규성;하성룡
    • 환경영향평가
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    • 제18권6호
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    • pp.377-386
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    • 2009
  • Due to severe flooding, the long-term residence of turbidity flows within the stratified Daecheong Reservoir have lengthened. A long-term residence of turbidity flows within the stratified Daecheong Reservoir after floods has been major environmental issue. The objective of this study was to assess the impact to water supply from the hydrodynamics and turbidity outflow. Two gate operation scenarios were investigated. Scenario A refers to gate operations according to rainfall events, and scenario B refers to gate operations according to inflow. From the results of secenario A, the SS concentrations decreased from 0.44mg/l to 0.54mg/l at the front of the dam, whereas SS concentrations increased from 0.24mg/l to 1.24mg/l at the intake points at Munhi and Daejeon. From the results of scenario B, the SS concentrations decreased from 0.61mg/l to 0.83mg/l at the front of Dam; howeve, SS concentrations also decreased from 0.16mg/l to 0.48mg/l at the intake points at Munhi and Daejeon. It seems that it may be more efficient to control turbidity by creating additional outflows of generated discharge after intensive rainfalls than not.

북한강 수계 대규모 탁수사상 발생에 의한 댐 저수지의 탁수 영향 분석 (Analyzing the Effect of an Extreme Turbidity Flow Event on the Dam Reservoirs in North Han River Basin)

  • 박형석;정세웅;정선아
    • 한국물환경학회지
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    • 제33권3호
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    • pp.282-290
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    • 2017
  • A long-term resuspension of small particles, called persistent turbidity, is one of the most important water quality concerns in the dam reservoirs system located in North Han River. Persistent turbidity may incur aesthetic nuisance and harmful effect on the ecosystem health, in addition to elevated water treatment costs for the drinking water supply to the Seoul metropolitan area. These sufferings have been more intensified as the strength and frequency of rainfall events increase by climate change in the basin. This study was to analyze the effect of an extreme turbidity flow event that occurred in 2006 on the serial reservoirs system (Soyang-Uiam-Cheongpyung-Paldang) in North Han River. The CE-QUAL-W2 model was set up and calibrated for the river and reservoirs system using the field data obtained in 2006 and 2007. The results showed that Soyang Reservoir released turbid water, which was classified as the TSS concentration is greater than 25 mg/L, for 334 days with peak TSS of 264.1 mg/L after the extreme flood event (592.7 mm) occurred between July 10 and 18 of 2006. The turbid water departed from Soyang Reservoir reached at the most downstream Paldang Reservoir after about 20 days and sustained for 41 days, which was validated with water treatment plant data. Since the released water from Soyang Reservoir had low water temperature and high TSS, an underflow formed in the downstream reservoirs and vertically mixed at Paldang Reservoir due to dilution by the sufficient inflow from South Han River.

SHIHMEN SEDIMENT PREVENTION DIVERSION TUNNEL PLANNING AND DESIGN

  • Ho-Shong Hou;Ming-Shun Lee;Percy Hou
    • 국제학술발표논문집
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    • The 3th International Conference on Construction Engineering and Project Management
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    • pp.168-172
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    • 2009
  • Shihmen reservoir was started in May 1963. The main purposes of Shihmen reservoir are for agriculture, power supply, flood control and tourism. Shihme Asn dam is an earth dam. Its crown height is 133m above mean sea level, with length 360 m, watershed 763.4 km2, and maximum volume 309 million cms. Turbidity in Shihmen dam was severely affected by typhoons Aere (2004) and Masa (2005). Increased deposition after Aere was 28 million cms. Turbidity at Shihmen Canal Inlet is 3000 NTU (Nephelometry Turbidity Unit). Sediment sluicing strategies for downstream channel are demanded. Therefore, diversionary sediment preventing channel is planned in the upstream of Shihmen reservoir. Finally, turbid flow in tunnel channel is bypassed and diverted its flow down to downstream.

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