• Title/Summary/Keyword: 대청댐

Search Result 243, Processing Time 0.031 seconds

The performance evaluation of dam management by using Granger causal analysis (그랜저 인과분석을 통한 댐관리 성과평가)

  • Cho, Sung-Min;Yoo, Myoung-Kwan;Lee, Deokro
    • Journal of Korea Water Resources Association
    • /
    • v.54 no.2
    • /
    • pp.135-144
    • /
    • 2021
  • This paper attempted to find implications for water resource management and water quality improvement by analyzing the causal relationship among discharge, water temperature and pollution index, which were expected to have a great effect on water quality with the rise of water temperature and precipitation change as the warming effect in recent years. For this purpose, the unit root test, cointegration test, and Granger causal test were carried out for 10 multi-purpose dams in Korean major water systems using time series data on discharge, water temperature, BOD, COD and DO. It was analyzed that the fluctuation of water temperature affected the pollution index more than the fluctuation of discharge volume. Also, Hapcheon dam and Chungju dam were the best water quality management dams based on the high causal relationship between water quality and discharge. The second rank was Daecheong dam. The third-ranking group were Yongdam and Andong dam, whose causal relationships between water quality and discharge were low. The last group were the remaining five dams.

Evaluation of Eutrophication and Control Alternatives in Sejong Weir using EFDC Model (EFDC 모델에 의한 세종보의 부영양화 및 제어대책 평가)

  • Yun, Yeojeong;Jang, Eunji;Park, Hyung-Seok;Chung, Se-Woong
    • Journal of Environmental Impact Assessment
    • /
    • v.27 no.6
    • /
    • pp.548-561
    • /
    • 2018
  • The objectives of this study were to construct a three-dimensional (3D) hydrodynamic and water quality model (EFDC) for the river reach between the Daecheong dam and the Sejong weir, which are directly affected by Gap and Miho streams located in the middle of the Geum River, and to evaluate the trophic status and water quality improvement effect according to the flow control and pollutant load reduction scenarios. The EFDC model was calibrated with the field data including waterlevel, temperature and water quality collected from September, 2012 to April, 2013. The model showed a good agreement with the field data and adequately replicated the spatial and temporal variations of water surface elevation, temperature and water quality. Especially, it was confirmed that spatial distributions of nutrients and algae biomass have wide variation of transverse direction. Also, from the analysis of algal growth limiting factor, it was found that phosphorous loadings from Gap and Miho streams to Sejong weir induce eutrophication and algal bloom. The scenario of pollutant load reduction from Gap and Miho streams showed a significant effect on the improvement of water quality; 4.7~18.2% for Chl-a, 5.4~21.9% for TP at Cheongwon-1 site, and 4.2~ 17.3% for Chl-a and 4.7~19.4% for TP at Yeongi site. In addition, the eutrophication index value, identifying the tropic status of the river, was improved. Meanwhile, flow control of Daecheong Dam and Sejong weir showed little effect on the improvement of water quality; 1.5~2.4% for Chl-a, 2.5~ 3.8% for TP at Cheongwon-1 site, and 1.2~2.1% for Chl-a and 0.9~1.5% for TP at Yeongi site. Therefore, improvement of the water quality in Gap and Miho streams is essential and a prerequirement to meet the target water quality level of the study area.

A Study on the Water Quality Simulation in the Midstream and Downstream of Geum-River (금강 중하류에서의 수질모의에 관한 연구)

  • Sin, Jae-Gi;Im, Chang-Su
    • Journal of Korea Water Resources Association
    • /
    • v.33 no.2
    • /
    • pp.145-157
    • /
    • 2000
  • The Water Quality Analysis Simulation Program 5 (WASP5) and HEC-2 models have been coupled and applied to find the possibility of simulation of long-term river water quality variation. The EUTR05 as a simulator of water quality simulation in WASPS model was used to simulate the water quality variables in the downstream of Geum-River from Daechung multi-purpose dam during the dry period. The water quality and flow rate conditions have been measured at the stage measurement stations located in the downstream of Geum-River from Daechung dam in December, 1998 and January and March, 1999. The water quality simulation model was calibrated with January data of 1999, and verified with December data of 1998 and March data of 1999. The trend of longitudinal variation of water quality variables simulated by model is consistent with that of measured water quality constituents except chlorophyll-a, $BOD_5,\;NH_3-N\;and\;PO_4-P$ simulated with March data of 1999. Furthennore, the chlorophyll a concentration in the mainstream of Geum-River was simulated by changing the concentrations of $PO_4-P$ and/or $NH_4-N$ flowing into the mainstream of Geum-River from Gabcheon and Mihocheon. The variation of chlorophyll a concentration in the mainstream was almost ignorable except only when $NH_3-N\;and\;PO_4-P$ concentrations decreased by 70% flow into the mainstream from Gabcheon and Mihocheon.

  • PDF

Effect of Selective Withdrawal on the Control of Turbidity Flow and Its Water Quality Impact in Deacheong Reservoir (선택취수에 따른 대청호 탁수 조절효과 및 수질영향 분석)

  • Jung, Yong-Rak;Liu, Huan;Kim, Yu-Kyung;Ye, Lyeong;Chung, Se-Woong
    • Journal of Korea Water Resources Association
    • /
    • v.40 no.8
    • /
    • pp.601-615
    • /
    • 2007
  • A selective withdrawal method has been widely used to control the quality of water released from a stratified reservoir and to improve downstream ecosystem habitats. Recently, several existing reservoir withdrawal facilities have been modified to accommodate multi-level water intake capabilities in order to adapt the impact of long-term discharge of high turbidity flow. The purpose of this study was to assess the effect of selective withdrawal method on the control of downstream turbidity and its impact on water quality in Daecheong Reservoir. A laterally integrated two-dimensional hydrodynamic and eutrophication model, which was calibrated and validated in the previous studies, was applied to simulate the temporal variations of outflow turbidity with various hypothetical selective withdrawal scenarios. In addition, their impacts on the algal growth as well as water quality constituents were analyzed in three different spatial domains of the reservoir The results showed that the costly selective withdrawal method would provide very limited benefits for downstream turbidity control during two years of consecutive simulations for 2004-2005. In particular, an excessive withdrawal from the epilimnion zone for supplying upper layer clean water resulted in movement of turbidity plume that contained high phosphorus concentrations upward photic zone, and in turn increased algal growth in the lacustrine zone.

Application of SWAT for the Estimation of Soil Loss in the Daecheong Dam Basin (대청댐 유역 토양 침식량 산정을 위한 SWAT 모델의 적용)

  • Ye, Lyeong;Yoon, Sung-Wan;Chung, Se-Woong
    • Journal of Korea Water Resources Association
    • /
    • v.41 no.2
    • /
    • pp.149-162
    • /
    • 2008
  • The Soil and Water Assessment Tool (SWAT) developed by the USDA-Agricultural Research Service for the prediction of land management impact on water, sediment, and agricultural chemical yields in a large-scale basin was applied to Daecheong Reservoir basin to estimate the amount of soil losses from different land uses. The research outcomes provide important indications for reservoir managers and policy makers to search alternative watershed management practices for the mitigation of reservoir turbidity flow problems. After calibrations of key model parameters, SWAT showed fairly good performance by adequately simulating observed annual runoff components and replicating the monthly flow regimes in the basin. The specific soil losses from agricultural farm field, forest, urban area, and paddy field were 33.1, $2.3{\sim}5.4$ depending on the tree types, 1.0, and 0.1 tons/ha/yr, respectively in 2004. It was noticed that about 55.3% of the total annual soil loss is caused by agricultural activities although agricultural land occupies only 10% in the basin. Although the soil erosion assessment approach adopted in this study has some extent of uncertainties due to the lack of detailed information on crop types and management activities, the results at least imply that soil erosion control practices for the vulnerable agricultural farm lands can be one of the most effective alternatives to reduce the impact of turbidity flow in the river basin system.

Numerical Modeling the Effects of Curtain Weir in the Daecheong Reservoir (수류차단막 설치효과 수치모의 (2009년))

  • Lee, Heung-Soo;Chung, Se-Woong;Min, Byeong-Hwan
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2010.05a
    • /
    • pp.793-797
    • /
    • 2010
  • 물리적 녹조저감 기술인 커튼형 수류차단막은 유입 하천과 저수지 천이부에서 높은 영양염류와 조류를 포함한 표층 수류의 차단 또는 우회를 통해 본류 수역의 녹조발생을 저감하는 대책이다. 본 연구에서는 2009년 5월 회남대교 약 2 km 상류에 시범 설치된 대청호의 수류차단막 효과를 분석하고자 선행연구에서 보정한 2차원 횡방향 평균 수리 및 수질 모델을 최근의 수문사상인 2009년 6~8월까지 적용하여 검보정하고 수치모의를 실시하였다. 저수지 수위와 실측수위를 비교한 결과, 7월 중순 유입량 증가에 따른 수위 상승을 잘 반영하였고, 결정계수값($R^2$)이 0.997로 나타나 모델은 저수지 물수지 계산에 있어서 높은 신뢰도를 보였다. 댐앞과 회남수역에서 수심별 수온예측 오차는 AME 0.258~$1.584^{\circ}C$, RMSE 0.393~$2.548^{\circ}C$의 범위로 실측값을 잘 반영하는 것으로 나타났다. 회남, 댐, 추동, 문의 수역의 표층에서 $PO_4$-P 및 Chl-a 농도에 대한 모의값과 실측값의 시계열 비교 결과, 모델은 저수지내 각 측정지점에서 실측값의 시계열 변화를 잘 모의하였고, 회남수역에서 7월 중순 홍수 유입에 따라 증가하였다. 특히, $PO_4$-P 농도가 0.06 mg/L까지 증가하는 것으로 나타났다. 이는 홍수기에 높은 영양염류를 포함한 탁수가 수류차단막 하단을 통과하여 수리학적 도수현상(Hydraulic jump)을 일으킨 것이 원인이라 판단된다. 수류차단막 설치에 따라 회남수역의 표층에서 Chl-a 농도의 저감 효과가 두드러졌으나, 댐, 추동 및 문의수역에서의 제어 효과는 미미하였다. 이와 같이 회남수역에서 효과가 큰 이유는 2009년 수문사상의 영향과 저수지 지형특성상 유입수의 영향을 직접받기 때문으로 판단된다. 또한, 회남수역에서 수류차단막 설치에 따른 T-N 및 T-P 평균 저감 효율(수류차단막이 설치되지 않은 경우에 대한 설치 후 농도 저감 비)은 각각 10.8% 및 19.1%이었으며, 평균 저감농도는 모의값을 기준으로 각각 1.637 mg/L에서 1.461 mg/L 및 0.047 mg/L에서 0.038 mg/L로 나타났다. DIN 및 $PO_4$-P 평균 저감 효율은 각각 6.4% 및 24.6%이었고, Chl-a 평균 저감 효율은 25.5%이었으며, 평균 저감농도는 모의값을 기준으로 0.025 mg/L에서 0.018 mg/L로 나타났다. 모의결과를 종합해 볼 때, 대청호에 시범 설치된 조류제어용 수류차단막은 2009년의 수문사상에서 회남수역의 녹조발생 저감에 기여한 것으로 판단된다. 또한 대청호에서 유사한 수문사상을 보인 2006년(62일간)에 비해 2009년(28일간)에 조류주의보 발령 일수가 대폭 줄었다는 사실도 차단막의 효과를 간접적으로 확인해 준다.

  • PDF

Development and Validation of A Decision Support System for the Real-time Monitoring and Management of Reservoir Turbidity Flows: A Case Study for Daecheong Dam (실시간 저수지 탁수 감시 및 관리를 위한 의사결정지원시스템 개발 및 검증: 대청댐 사례)

  • Chung, Se-Woong;Jung, Yong-Rak;Ko, Ick-Hwan;Kim, Nam-Il
    • Journal of Korea Water Resources Association
    • /
    • v.41 no.3
    • /
    • pp.293-303
    • /
    • 2008
  • Reservoir turbidity flows degrade the efficiency and sustainability of water supply system in many countries located in monsoon climate region. A decision support system called RTMMS aimed to assist reservoir operations was developed for the real time monitoring, modeling, and management of turbidity flows induced by flood runoffs in Daecheong reservoir. RTMMS consists of a real time data acquisition module that collects and stores field monitoring data, a data assimilation module that assists pre-processing of model input data, a two dimensional numerical model for the simulation of reservoir hydrodynamics and turbidity, and a post-processor that aids the analysis of simulation results and alternative management scenarios. RTMMS was calibrated using field data obtained during the flood season of 2004, and applied to real-time simulations of flood events occurred on July of 2006 for assessing its predictive capability. The system showed fairly satisfactory performance in reproducing the density flow regimes and fate of turbidity plumes in the reservoir with efficient computation time that is a vital requirement for a real time application. The configurations of RTMMS suggested in this study can be adopted in many reservoirs that have similar turbidity issues for better management of water supply utilities and downstream aquatic ecosystem.

Application of Monthly Water Balance Models for the Climate Change Impact Assessment (기후변화 영향평가를 위한 월 물수지모형의 적용성 검토)

  • Hwang, Jun-Shik;Jeong, Dae-Il;Lee, Jae-Kyoung;Kim, Young-Oh
    • Journal of Korea Water Resources Association
    • /
    • v.40 no.2 s.175
    • /
    • pp.147-158
    • /
    • 2007
  • This study attempted to determine a suitable hydrologic model for assessing the impact of climate change on water resources, and to assess the accuracy of streamflow scenarios simulated by the selected hydrologic model using the meteorological scenarios of the Seoul National University Regional Climate Model(SNURCM). Comparison of four water balance models and two daily conceptual rainfall-runoff models for the simulation capability of the Daecheong Dam inflow indicated that the abcd model performs the best among the tested water balance models and performs as well as SSARR that is popular as a daily rainfall-runoff model in Korea. Parameters of the abcd model were then estimated for 12 ungauged subbasins of the Geum River by the regionalization method. The model parameters were first calibrated at nine multi-purpose dams and were then regionalized using catchment characteristics for another four multi-purpose dams, which were assumed to be ungauged sites. The model efficiency(ME) coefficients of the simulated inflows for these four dams were at least 87%. The MEs of the hindcasted meteorological rainfall scenarios of the 12 subbasins of the Geum River were more than 60%. Moreover, the ME of the Daecheong Dam inflow simulated by the abcd model using the SNURCM rainfall scenarios was more than 80%. Therefore, this research concluded that the abcd model coupled with the SNU-RCM meteorological scenarios can be used for impact assessment studies of climate change on water resources.

Appraising applicability of daily runoff analysis using NASA POWER's meteorological data (NASA POWER 기상자료의 일 유출해석 활용성 평가)

  • Noh, Jaekyoung;Park, Jonghyun
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2020.06a
    • /
    • pp.106-106
    • /
    • 2020
  • 물 이용 측면에서 유출해석은 강수, 증발산, 침투, 유출 등 물 순환의 핵심이다. 또 기상자료는 증발산량을 산정하는데 꼭 필요하다. 그러나 해외 수자원 사업에서 기상자료가 없어 곤란을 겪는 경우가 많다. 여기서, NASA POWER에서 전지구 0.5° 격자로 제공하는 위성기반의 일 기상자료를 이용한 증발산량과, 지상의 기상자료를 이용한 증발산량을, 각각 일 유출 모형에 적용한 결과를 비교하였다. 유역면적 4,134 ㎢인 대청댐 유역에 1984년부터 2001년까지 일별 유입량을 모의하고 관측 유입량과 비교하고, R2, RMSE, NSE 등으로 평가하였다. 지상의 기상관측소는 위도 36.21°, 경도 127.34°인 대전 관측소를, 위성자료는 대전 지점과 동일한 위치의 경위도의 기상자료를 적용하였고, 일 증발산량은 Penman-Monteith 방법으로, 일 유출량은 ONE 모형에 의해 모의하였다. 강수량을 대청댐 유역 면적강수량을 적용한 경우, 지상 기상자료를 적용하여 유입량을 모의한 결과는 연평균하여 연 유입량 668.1 mm, 일 최대 82.9 mm, 유출률 56.1%(관측은 연 강수량 1,191.3 mm, 연 유입량 668.3 mm, 일 최대 87.0 mm, 유출률 56.1%)로 나타났고, R2 0.805, RMSE 2.425, NSE 0.802였고, 위성 기상자료를 적용하여 유입량을 모의한 결과는 연평균하여 연 유입량 668.4 mm, 일 최대 83.7 mm, 유출률 57.8%로 나타났고, R2 0.803, RMSE 2.431, NSE 0.801였다. 또한, 강수량을 위성 제공의 강수량을 적용한 경우, 지상 기상자료를 적용하여 유입량을 모의한 결과는 연평균하여 연 유입량 718.0 mm, 일 최대 97.7 mm, 유출률 56.7%(관측은 연 강수량 1,265.3 mm, 유출률 52.8%)로 나타났고, R2 0.582, RMSE 3.524, NSE 0.581였고, 위성 기상자료를 적용하여 유입량을 모의한 결과는 연평균하여 연 유입량 741.5 mm, 일 최대 99.0 mm, 유출률 58.6%로 나타났고, R2 0.578, RMSE 3.541, NSE 0.577였다. 결과적으로 위성 기상자료를 이용하여 증발산량을 산정하여 일 유출해석에 적용한 결과는 지상 기상자료를 이용한 경우와 거의 같은 값을 나타내, NASA POWER가 제공한 기상자료의 활용성은 매우 높게 나타났다. 그러나 위성 제공 강수량의 활용은 R2, RMSE, NSE 등의 지표가 낮게 나타나, 신중하게 검토되어야 할 것으로 평가하였다.

  • PDF

Vertical Variation of Total Bacterial number in Daechung Reservoir (대청호에서 세균의 수직적 분포에 관한 연구)

  • Bing, Sun-Hye;Oh, In-Hye
    • The Journal of Natural Sciences
    • /
    • v.16 no.1
    • /
    • pp.143-154
    • /
    • 2005
  • To define the ecological roles of bacterial community in Daechung Reservoir. Vertical variation of total bacterial numbers were estimated at MAN site for one year with DAPI staining. The bacterial numbers were counted, environmental factors were monitored at the surface, -5m, -10m, -15m and -25 m of MAN sited and tried to explain the vertical bacterial numbers with environmental factors. The bacterial number was $1.6-1.7.0 x10^6$ cells/ml at the surface, $2.3-11.0x10^6$ cells/ml at 5 m depth, $1.2-1.4.0x10^6$ cells/ml at 10 m depth, $1.4-15.0x10^6$ cells/ml at 15 m depth and $1.4-1.3.0x10^6$ cells/ml at 25 m depth. The Mean bacterial number at the surface was more that those at any other depth. The explanation of the vertical total bacterial numbers with environmental factors were suggested.

  • PDF