• 제목/요약/키워드: Soyang river dam

검색결과 43건 처리시간 0.024초

소양강 탁수 현황과 저감에 대한 수리학적 분석 (A Hydrological Analysis of Current Status of Turbid Water in Soyang River and Its Mitigation)

  • 이진용
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제13권6호
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    • pp.85-92
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    • 2008
  • 소양강물은 춘천과 서울지역 시민의 중요한 수원이다. 2006년 태풍 에위니아로 악화된 탁수현상은 예년과 달리 280일 이상 지속되었으며 이로 인하여 춘천 및 서울지역 물 공급에 차질을 빚었다. 한편 소양강 유역의 약 55%에 해당하는 고랭지밭의 토사유출이 탁수현상의 주요원인으로 꼽히며 이와 함께 무분별한 산지개간, 도로의 확포장, 임도개설 등도 탁수를 가중시키는 것으로 알려진다. 본 연구에서 2006년 6월${\sim}$2008년 8월간의 소양강 유역의 탁도, 강수량, 댐수위 등을 분석한 결과 탁도는 일 강우와 49일의 지연시간을 두고 최대의 상관성(r = 0.28)을 보였으며 특히 댐 수위와는 4일의 지연시간에 대해 탁월한 상관성(r = 0.60)을 나타냈다. 그리고 2006년과 2007년 두 차례 발생한 탁수의 지속기간과 거리별 탁도 자료를 이용하여 분석한 결과 취수원인 팔당댐에 탁수(10 NTU)가 도달하기 위한 소양강댐의 기준 탁도는 약 31 NTU로 추정되었다. 또 분석을 통해 향후 탁수발생 시 지속기간을 예측할 수 있는 지배감쇠곡선(master recession curve)을 제시하였다.

물-에너지 넥서스기반 국내 댐 가능최대 수열에너지 산정 (Estimation of the Probable Maximum Water Thermal Energy in Korean Dams based on the Water-Energy Nexus Concept)

  • 정영훈
    • 한국농공학회논문집
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    • 제60권2호
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    • pp.45-53
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    • 2018
  • Demand for essential resources including water, energy and food is rapidly increasing due to climate change, population growth and urbanization. To solve this problem, the concept of water-energy-food nexus has been introduced, and many countries have been trying to acquire the Nexus technology that can maximize the efficiency by analyzing the interconnection between resources. In this regard, this study attempted to estimate the probable maximum water thermal energy in the dam based on the water-energy nexus concept. The estimation of the probable maximum water thermal energy was implemented to monthly water storage of the largest dams in the four major river systems. As a result of analyzing the estimated monthly water thermal energy from 2000 to 2016, Soyang River dam has the largest probable maximum water thermal energy, and Sumjin River dam has the smallest. However, the probable maximum water thermal energy was small in common between March and April, between September and October due to the small temperature difference between the ambient air and the dam water. Also, according to the characteristics of the dam, Daecheong dam and Soyang River dam were beneficial for supplying water thermal energy for heating, and Sumjin River dam and Andong dam were advantageous for supplying water thermal energy for cooling. Our findings can be useful to realize the water-energy-food nexus by increasing the utilization and value of water resources as well as expanding the roles and functions of dams as a starting point to use dam water thermal energy.

춘천댐 및 소양강댐 운영에 따른 의암호 조류 저감 연구 (Study of the Mitigation of Algae in Lake Uiam according to the Operation of the Chuncheon Dam and the Soyang Dam)

  • 이동열;백경오
    • 대한토목학회논문집
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    • 제42권2호
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    • pp.171-179
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    • 2022
  • 본 연구에서는 본류 상류에는 춘천댐, 하류에는 의암댐 그리고 지류엔 소양강댐이 위치한 의암호를 대상으로 댐 운영에 따른 조류 저감 특성을 정량적으로 분석하였다. 이를 위해 3차원 수리 및 수질모의가 가능한 Environmental Fluid Dynamics Code (EFDC) 모형을 활용하였고, 실제 조류경보 수준의 녹조가 발생한 2018년 하절기를 대상으로 총 9가지 댐 운영 시나리오를 구성하여 조류저감 특성을 분석하였다. 댐 운영 시나리오는 각 댐 별 수위에 따른 방류 가능량을 참고하여 상류 춘천댐과 소양강댐에서 펄스파 형태로 특정기간 일정하게 방류하고, 하류 의암댐은 수위를 낮춰 플러싱(flushing) 효과를 유발할 수 있도록 설정하였다. 의암호는 기저 수온이 서로 다른 북한강과 소양강의 영향 및 지형적 특성으로 인해 댐별 운영에 따라 영향권이 상이하였으며, 각 지점별 조류 저감량이 달랐다. 호 내 좌안 지점의 경우 소양강댐에서 3일간 50 m3/s로 펄스 방류할 경우 클로로필-a의 첨두치가 약 50 %이상 저감될 것으로 예측되었다. 반면 우안 지점의 경우 소양강댐 방류량이 조류 저감에 거의 영향을 주지 못하였다. 녹조가 급격히 번무하는 비상 상황의 경우 의암호와 같이 상하류에 대형댐이 존재하는 수역에서는 적절한 댐 운영이 특정 지점의 녹조 저감에 효과적일 수 있을 것이다.

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.

Landsat 시계열 영상을 이용한 한강 수계 호수 수온과 계절적 성충 현상 분석 (Analysis of Lake Water Temperature and Seasonal Stratification in the Han River System from Time-Series of Landsat Images)

  • 한향선;이훈열
    • 대한원격탐사학회지
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    • 제21권4호
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    • pp.253-271
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    • 2005
  • Landsat 시계열 영상과 실측수온자료를 이용하여 한강 수계 댐호들의 표면수온과 계절적 성층현상을 분석하였다. 1994년에서 2004년까지 29회에 걸쳐 얻어진 Landsat-5, 7 열적외선 영상으로부터 NASA 경험식을 이용하여 호수의 표면수온을 추출하였고, 이를 하천형 댐호인 파로호, 춘천호, 의암호, 청평호, 팔당호의 표층수온, 그리고 호소형 댐호인 소양호의 상층수온(수심 10m) 자료와 비교하였다. 십 수 년간 매월 1회 측정된 수온자료를 위성관측 날짜에 보간하여 사용하였음에도 불구하고, 하천형 댐호들에서는 수온오차(위성관측수온-실측보간수온)의 표준 편차가 $2^{\circ}C$ 이하인 영상이 94개로서, 새로운 통계적 대기보정을 적용할 수 있었다. 실측보간수온과 위성관측수온의 상관계수는 소양호가 0.915 (대기보정 후 0.950), 다른 호수는 0.951-0.980 (대기보정 후 0.979-0.997)로서, 높은 상관성을 보여주었다. 이는 수심이 얕고 인위적인 물의 유입과 유출이 연중 계속되는 하천형 댐호의 표층에는 혼합층이 상시 존재하고 수온의 일변화 및 월변화가 비교적 연속적이기 때문인 것으로 해석되었다. 그러나 소양호에서는 4-7월에 위성관측수온이 실측보간수온보다 $3-5^{\circ}C$ 더 높게 나타나는 이상 수온오차가 관찰되었다. 한강 수계의 최상류에 위치하며 수심이 깊고 자연적인 유입량만이 존재하는 소양호에서 이 시기는 상층수의 물리적 혼합현상이 없이 매우 안정적이고, 일조량 증가에 따라 호수 상층부에 수온약층이 발달하기 때문에, 수심 10m에서 측정된 실측수온보다 위성으로 관측된 표면수온이 연중 비교적 건조한 이 시기에 더 높게 나타나는 것으로 밝혀졌다.

A PRELIMINARY STUDY FOR THE COUPLED ATMOSPHERS-STREAMFLOW MODELING IN KOREA

  • Bae, Deg-Hyo;Chung, Jun-Seok;Kwon, Won-Tae
    • Water Engineering Research
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    • 제1권1호
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    • pp.25-37
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    • 2000
  • This study presents some results of a preliminary study for the coupled precipitation and river flow prediction system. The model system in based on three numerical models, Mesoscale Atmospheric Simulation model for generating atmospheric variables. Soil-Plant-Snow model for computing interactions within soil-canopy-snow system as well as the energy and water exchange between the atmosphere and underlying surfaces, and TOPMODEL for simulating stream flow, subsurface flow, and water tabled depth in an watershed. The selected study area is the 2,703 $\alpha_4$ $\km_2$ Soyang River basin with outlet at Soyang dam site. In addition to providing the results of rainfall and stream flow predictions, some results of DEM and GIS application are presented. It is obvious that the accurate river flow predictions are highly dependant on the accurate predictation predictions.

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소양호에서 외부기원유기물의 유입, 유출 특성 (Characteristics of Allochthonous Organic Matter in Large Dam Reservoir, Lake Soyang)

  • 박혜경;권오윤;정동일
    • 한국물환경학회지
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    • 제27권1호
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    • pp.88-97
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    • 2011
  • To identify the inflow and outflow characteristics of allchthonous organic matters and examine the change of allochthonous organic matter load pattern due to the climate change, we investigated the temporal variations of DOC and POC concentrations within inflow water and dam discharge water and spatio-temporal distribution of POM within the lake water in Lake Soyang which is the largest dam reservoir in Korea in 2006. Most of allochthonous DOC flowed into the lake water during initial rain and was not affected by the amount of precipitation, whereas most of allochthonous POC flowed into during concentrated heavy rain and the concentration of POC was significantly associated with the amount of inflow water and precipitation. Calculated annual allochthonous organic matter loads in Lake Soyang from 2003 to 2006 using the regression equation between the amount of inflow water and the concentration of POC indicate allochthonous organic matter loads are mainly affected by total influx and extreme influx of inflow water. The spatio-temporal distribution of POM indicated allochthonous organic matter of inflow river during flood period in July transported from upper part to middle and lower part of the lake a month later respectively along the middle layer of water column in Lake Soyang.

격자기반의 강우유출모형을 통한 한강수계 다목적댐의 홍수유출해석 (Flood Runoff Analysis of Multi-purpose Dam Watersheds in the Han River Basin using a Grid-based Rainfall-Runoff Model)

  • 박인혁;박진혁;허영택
    • 한국물환경학회지
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    • 제27권5호
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    • pp.587-596
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    • 2011
  • The interest in hydrological modeling has increased significantly recently due to the necessity of watershed management, specifically in regards to lumped models, which are being prosperously utilized because of their relatively uncomplicated algorithms which require less simulation time. However, lumped models require empirical coefficients for hydrological analyses, which do not take into consideration the heterogeneity of site-specific characteristics. To overcome such obstacles, a distributed model was offered as an alternative and the number of researches related to watershed management and distributed models has been steadily increasing in the recent years. Thus, in this study, the feasibility of a grid-based rainfall-runoff model was reviewed using the flood runoff process in the Han River basin, including the ChungjuDam, HoengseongDam and SoyangDam watersheds. Hydrological parameters based on GIS/RS were extracted from basic GIS data such as DEM, land cover, soil map and rainfall depth. The accuracy of the runoff analysis for the model application was evaluated using EFF, NRMSE and QER. The calculation results showed that there was a good agreement with the observed data. Besides the ungauged spatial characteristics in the SoyangDam watershed, EFF showed a good result of 0.859.

갈수기 경향성 분석을 활용한 상류 유역의 가뭄위험 변동성 분석 (Analysis of Drought Risk in the Upper River Basins based on Trend Analysis Results)

  • 정일원;김동영;박지연
    • 한국농공학회논문집
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    • 제61권1호
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    • pp.21-29
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    • 2019
  • This study analyzed the variability of drought risk based on trend analysis of dry-seasonal dam inflow located in upper river basins. To this, we used areal averaged precipitation and dam inflow of three upper river dams such as Soyang dam, Chungju dam, and Andong dam. We employed Mann-Kendall trend analysis and change point detection method to identify the significant trends and changing point in time series. Our results showed that significant decreasing trends (95% confidence interval) in dry-seasonal runoff rates (= dam inflow/precipitation) in three-dam basins. We investigated potential causes of decreasing runoff rates trends using changes in potential evapotranspiration (PET) and precipitation indices. However, there were no clear relation among changes in runoff rates, PET, and precipitation indices. Runoff rate reduction in the three dams may increase the risk of dam operational management and long-term water resource planning. Therefore, it will be necessary to perform a multilateral analysis to better understand decreasing runoff rates.

다중회귀모형으로 추정된 모수에 의한 최적단위유량도의 유도에 관한 연구 (A Study on the Derivation of the Unit Hydrograph using Multiple Regression Model)

  • 이종남;김채원;황창현
    • 물과 미래
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    • 제25권1호
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    • pp.93-100
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    • 1992
  • Abstract A study on the Derivation of the Unit Hydrograph using Multiple Regression Moe이. The purpose of this study is to deriver an optimal unit hydrograph suing the multiple regression model, particularly when only small amount of data is available. The presence of multicollinearity among the input data can cause serious oscillations in the derivation of the unit hydrograph. In this case, the oscillations in the unit hydrograph ordinate are eliminated by combining the data. The data used in this study are based upon the collection and arrangement of rainfall-runoff data(1977-1989) at the Soyang-river Dam site. When the matrix X is the rainfall series, the condition number and the reciprocal of the minimum eigenvalue of XTX are calculated by the Jacobi an method, and are compared with the oscillation in the unit hydrograph. The optimal unit hydrograph is derived by combining the numerous rainfall-runoff data. The conclusions are as follows; 1)The oscillations in the derived unit hydrograph are reduced by combining the data from each flood event. 2) The reciprocals of the minimum eigen\value of XTX, 1/k and the condition number CN are increased when the oscillations are active in the derived unit hydrograph. 3)The parameter estimates are validated by extending the model to the Soyang river Dam site with elimination of the autocorrelation in the disturbances. Finally, this paper illustrates the application of the multiple regression model to drive an optimal unit hydrograph dealing with the multicollinearity and the autocorrelation which cause some problems.

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