• 제목/요약/키워드: River downstream of dam

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3차원 수리모델을 이용한 한강 상수원구간 지류영향 분석 및 수질오염사고 시나리오 모의 (Impact Analysis of Tributaries and Simulation of Water Pollution Accident Scenarios in the Water Source Section of Han River Using 3-D Hydrodynamic Model)

  • 김은정;박창민;나미정;박현;김복순
    • 한국물환경학회지
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    • 제34권4호
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    • pp.363-374
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    • 2018
  • The Han River serves as an important water resource for the city of Seoul, Korea and in the neighboring metropolitan areas. From the Paldang dam to the Jamsil submerged weir, the 4 water intake stations that are located for the Seoul metropolitan population were under review in this study. Therefore the water quality management in this section is very important to monitor, analyze and review to rule out any safety concerns. In this study, a 3-D hydrodynamic model, EFDC (Environmental Fluid Dynamics Code), was applied to the downstream of the Paldang Dam in the Han River, which is about 23 km in length, to determine issues related to water resource management. The 3-D grid was composed of 2,168 horizontal grids and three vertical layers. In this case, the hydrodynamic model was calibrated and verified with an observed average daily water surface elevation, water temperature and flow rate data for 3 years (2013~2015). The developed EFDC model proved to reproduce the hydrodynamics of the Han River well. The composition ratios of the noted incoming flows at the monitored intake stations for 3 years and their flow patterns in the river were analyzed using the validated model. It was found that the flow of the Wangsuk Stream depended on the Paldnag dam discharge, and it was noted that the composition ratios of the stream at the intake stations changed accordingly. In a word, the Wangsuk Stream moved mainly along the right bank of the Han River under the condition of a normal dam flow. As can be seen, when the dam discharge rate was low, the incidence of lateral mixing was often seen. The scenario analyses were also conducted to predict the transport of conservative pollutants as in the case of a chemical spill accident. Generally speaking, when scenarios were applied, the arrival time and concentration of pollutants at each intake station was thus predicted.

키르기스스탄 코코메렌강 유역의 대규모 산사태 유형과 지형 발달 (Types and Geomorphic Development of Large Landslides in the Kokomeren River Basin, Kyrgyzstan)

  • 오정식
    • 한국지형학회지
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    • 제26권1호
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    • pp.1-14
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    • 2019
  • Large landslide is a type of mass movement that causes drastic landform changesin a short period, and it causes huge human and property damage over a large area. The purpose of this study is to categorize the types and characteristics of large landslides around the Kokomeren River basin, Kyrgyzstan and to discuss the geomorphic development after the large landslides. The topographic analysis about a total of 20 landslides documented collapsed volumes of 0.01 to 1.10 km3, height drops of 180 to 1,770 m, and runout distances of 1,200 to 5,400 m. Rock avalanche and rockslide are identified as major types of large-scale landslides in the study area. Rock avalanches can be divided into P-type, J-type, and S-type based on the features of slope failure and kinematic characteristics of rock debris. Landslide synchronistic landforms such as trimlines, transverse ridges, longitudinal ridges, levees, and hummocks are well developed in the rock avalanche. The pieces of evidence of landslide dam, landslide-dammed lake, and remnant outburst flood deposits are observed in the upstream and downstream where the rockslides occurred. The Ak-Kiol landslide dam is the best example of a geomorphic development due to lake spillover and the large landslides were likely to be triggered by huge paleo-seismic events.

수리구조물 설치에 따른 흐름특성 및 하상변동 연구 (An Assessment of Flow Characteristic and Riverbed Change by Construction of Hydraulic Structure)

  • 곽재원;진환석;김형수
    • 한국습지학회지
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    • 제19권4호
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    • pp.542-550
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    • 2017
  • 흐름특성과 하상변동의 추정은 하천유역 내 수리구조물의 설계 및 유지관리, 홍수터 관리, 하천개수 및 하도의 안정 등을 위한 기본적인 요소이며, 하천관리에 직접적인 영향을 미친다. 이에 본 연구의 목적은 하도 내에 수리구조물 설치에 따른 흐름의 특성과 그에 따른 하상변동을 추정하는 데 있다. 이를 위하여 금강 대청댐 하류부 11.65km 구간을 대상으로 RMA2 모형 및 SED2D 모형을 이용하여 수리구조물의 신설로 인한 흐름특성의 변화와 빈도별 홍수량에 따른 하상변동을 모의하였다. 연구결과, 수리구조물 설치로 인해 상류부에서는 하상 상승, 하류부에서는 보 설치전과 유사한 형태의 침식이 발생하는 것으로 나타났다.

부영양 하천(금강)에서 식물플랑크톤의 일차생산력 (Primary Productivity of Phytoplankton in a Eutrophic River (Kum River System))

  • 신명선;이윤경;박주현;김범철
    • 한국물환경학회지
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    • 제28권1호
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    • pp.10-17
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    • 2012
  • The middle and lower reaches of the Kum River system become stagnant in dry seasons with florishing of phytoplankton. In this study primary productivity of phytoplankton were measured by the C-14 uptake method and the P-I model method at seven main stream sites of the Kum River from the Daechung Dam outet to the river mouth. Nutrients (TN, TP, DIP, TIN) concentrations were measured in the mainstream and tributaries and compared with the variation of assimilation number. The range of primary productivity was $40{\sim}4,558mgC{\cdot}m^{-2}{\cdot}day^{-1}$ and it was higher than those of lentic ecosystems in Korea. Average TN and TP were $4.1mgN{\cdot}L^{-1}$, $70.6mgP{\cdot}m^{-3}$, respectively. Tributaries showed higher nutrient concentrations than the main stream. After two major tributaries merged with the discharging water of the Daechung Dam phyotplankton biomass and productivity increased drastically and remained at the similar eutrophic level through the downstream reach to the river mouth. Both dissolved phosphorus and nitrogen concentrations showed positive correlation with assimilation number of phytoplankton. In conclusion phytoplankton productivity is at the level of eutrophic water and it was higher than usual lentic habitats. Nutrient concentrations are critical factors in controlling productivity in the lower reach of the Kum River.

EFDC-NIER 모델을 이용한 영산강 하구 물흐름 특성 분석 (Analysis of Hydraulic Characteristics of Yeongsan River and Estuary Using EFDC Model)

  • 신창민;김다래;송용식
    • 한국물환경학회지
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    • 제35권6호
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    • pp.580-588
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    • 2019
  • The flow of the middle and downstream of the Yeongsan River is stagnant by two weirs of Seungchon and Juksan and the estuary dam and maintained in freshwater. In this study, the Environmental Fluid Dynamics Code-National Institute of Environment Research(EFDC-NIER) model was applied to the Yeongsan River to simulate water flow, temperature, and salinity stratification. The EFDC-NIER model is an improved model which can simulate multi-functional weirs operation, multiple algal species, and the vertical movement mechanism of algal based on the EFDC model. The simulation results for the water level, water temperature, velocity, and salinity reproduced the observed values well. The mean absolute error(MAE) of the model calibration in the annual variations of the water level was 0.1-0.3 m, water temperature was 0.8-1.7 ℃, velocity was 4.5-7.1 cm/sec, and salinity was 1.5 psu, respectively. In the case of scenario simulation for the full opening of the estuary dam, the water level of the estuary dam was directly impacted by the tide so it was predicted to rise - 1.35 m to 0.2 m on average sea level. The velocity was also predicted to increase from 2.7 cm/sec to 50.8 cm/sec, and the flow rate to increase from 53 ㎥/sec to 5,322 ㎥/sec.

홍수범람지역 가시화를 위한 3차원 GIS 시스템 개발 (Development of 3D GIS System for the Visualization of Flood Inundation Area)

  • 이근상;정일영
    • 대한토목학회논문집
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    • 제28권5D호
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    • pp.749-757
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    • 2008
  • 최근 집중호우나 태풍에 의한 홍수피해가 급증하면서, 댐방류시 하류하천의 홍수범람지역에 대한 가시화 정보가 요구되고 있다. 본 연구에서는 남강댐 하류지역을 대상으로 홍수범람지역을 가시화할 수 있는 3차원 GIS 시스템을 개발하였다. 먼저, TextureMaker와 HeightMaker 모듈을 이용하여 NGIS 수치지형도에서 추출한 DEM과 IKONOS 위성영상을 iWorld 엔진에 탑재 가능한 형태로 최적화 하였으며, 홍수분석모형(COSFIM)과 FLDWAV 수리모델을 이용하여 예측한 하천 횡단측선별 실시간 홍수위정보를 기반으로 댐하류 지역에 대한 홍수범람지역을 효과적으로 추출할 수 있게 되었다. 이러한 홍수범람 가시화 정보는 실시간 댐운영에 필요한 침수취약지역 파악 및 신속한 홍수재해 대처계획 수립에도 효과적으로 이용될 수 있다.

Potential of River Bottom and Bank Erosion for River Restoration after Dam Slit in the Mountain Stream

  • Kang, Ji-Hyun;So, Kazama
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2011년도 학술발표회
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    • pp.46-46
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    • 2011
  • Severe sediment erosion during floods occur disaster and economic losses, but general sediment erosion is basic mechanism to move sediment from upstream to downstream river. In addition, it is important process to change river form. Check dam, which is constructed in mountain stream, play a vital role such as control of sudden debris flow, but it has negative aspects to river ecosystem. Now a day, check dam of open type is an alternative plan to recover river biological diversity and ecosystem through sediment transport while maintaining the function of disaster control. The purpose of this paper is to verify sediment erosion progress of river bottom and bank as first step for river restoration after dam slit by cross-sectional shear stress and critical shear stress. Study area is upstream reach of slit check dam in mountain stream, named Wasada, in Japan. The check dam was slit with two passages in August, 2010. The transects were surveyed for four upstream cross-sections, 7.4 m, 34 m, 86 m, and 150 m distance from dam in October 2010. Sediment size was surveyed at river bottom and bank. Sediment of cobble size was found at the wetted bottom, and small size particles of sand to medium gravel composed river bank. Discharge was $2.5\;m^3/s$ and bottom slope was 0.027 m/m. Excess shear stress (${\tau}_{ex}$) was calculated for hydraulic erosion by subtracting the values of critical shear stress (${\tau}_{c}$) from the value of shear stress (${\tau}$) at river bottom and bank (${\tau}_{ex}=\tau-{\tau}_c$). Shear stress of river bottom (${\tau}_{bottom}$) was calculated using the cross-sectional shear stress, and bank shear stress (${\tau}_{bank}$) was calculated from the method of Flintham and Carling (1988). $${\tau}_{bank}={\tau}^*SF_{bank}((B+P_{bed})/(2^*P_{bank}))$$ where $SF_{bank}=1.77(P_{bed}/p_{bank}+1.5)^{-1.4}$, B is the water surface width, $P_{bed}$ and $P_{bank}$ are wetted parameter of the bed and bank. Estimated values for ${\tau}_{bottom}$ for a flow of $2.5\;m^3/s$ were lower as 25.0 (7.5 m cross-section), 25.7 (34 m), 21.3 (86 m) and 19.8 (150 m), in N/$m^2$, than critical shear stress (${\tau}_c=62.1\;N/m^2$) with cobble of 64 mm. The values were insufficient to erode cobble sediment. In contrast, even if the values of ${\tau}_{bank}$ were lower than the values for ${\tau}_{bottom}$ as 18.7 (7.5 m), 19.3 (34 m), 16.1 (86 m) and 14.7 (150 m), in N/$m^2$, excess shear stresses were calculated at the three cross-sections of 7.5 m, 34 m, and 86 m distances compare with ${\tau}_c$ is 15.5 N/$m^2$ of 16mm gravel. Bank shear stresses were sufficient for erosion of the medium gravel to sand. Therefore there is potential to erode lateral bank than downward erosion in a flow of $2.5\;m^3/s$. Undercutting of the wetted bank can causes bank scour or collapse, therefore this channel has potential to become wider at the same time. This research is about a potential of sediment erosion, and the result could not verify with real data. Therefore it need next step for verification. In addition an erosion mechanism for river restoration is not simple because discharge distribution is variable by snow-melting or rainy season, and a function for disaster control will recover by big precipitation event. Therefore it needs to consider the relationship between continuous discharge change and sediment erosion.

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홍수시 한강 하류부의 하상변동에 관한 연구 (A Study of River-Bed Variation from Goan to Indogyo due to Flood in Han River)

  • 박정응;김경수
    • 물과 미래
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    • 제24권2호
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    • pp.109-119
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    • 1991
  • 댐 건설로 인하여 상류로 부터 토사공급이 중단 상태인 하천에 있어서의 하상변동이나 유사 이송 현상은 상당히 복잡한 물리적 현상이기 때문에 이에 관련된 수치모형의 설정이 필요하다. 본 연구에서는 하상변동에 대한 수치해석방법으로 정류개념보다는 점변부정류 개념을 적용하였으며, 홍수기록과 하상변동에 관한 자료가 비교적 풍부한 한강하류부에 이 수치모형을 적용하여 유량변화(홍수기록, 특정계획유량) 및 하상고 변동(기존, 계획)을 모의 하였다.

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부정류 해석에 의한 금강하류부 홍수위결정 (Flood Stage Determination by Implicit Nymerical Technique)

  • 선우중호
    • 물과 미래
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    • 제16권2호
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    • pp.123-129
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    • 1983
  • One of the techniques to determine flood stages in natural channel is to find the solution of unsteady flow equations such as continuity and momentum equations. Since the exact analytic solution of these equations are not Known, the implicit numerical scheme is widely accepted tool for the approximate solution of equations. This technique is applied to the downstream of Daechung Dam in Geum River for the determination of flood stage for given frequency. However the flood stages are greatly affected by the method of reservoir Operation Method and Technical Operation Reservoir Method. Obviously, the Tech. ROM is found to be superior to Auto ROM.

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식생분포에 따른 하도의 통수능 검토를 위한 3차원 모형의 적용 (Application of Three-Dimensional Model to Evaluate Stream Discharge Capacity due to Vegetation)

  • 노준우;이진영;안기홍
    • 환경영향평가
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    • 제20권1호
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    • pp.37-48
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    • 2011
  • Recently, the social and environmental functions of nature river are important due to the increase of expectation for river restoration. So it should be considered the effect of vegetation affecting the conveyance capacity and hydraulic resistance. However, it has not yet proposed a objective standard and modeling method to estimate the effect of conveyance capacity according to vegetaion distribution in the watercourse such as water level or velocity. Therefore, this study simulates the variations of water level and velocity using 3-dimensional hydrodynamic model, EFDC, to consider a conveyance capacity in downstream of the Soyang Reservoir. The simulation results were validated using statistical index such as F-test and T-test. As results, the water level rises about 0.01 to 0.47m and velocity difference are about -0.95m/s to 0.23m/s.