• Title/Summary/Keyword: 저수지 해석

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Analysis and evaluation of water and heat cycle at the Geumho river catchment using WRF-Hydro (WRF-Hydro를 이용한 금호강 유역의 물 및 열 순환 해석 및 평가)

  • Sohyun Kim;Bomi Kim;Garim Lee;Yaewon Lee;Seong Jin Noh
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.282-282
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    • 2023
  • 도시침수와 도시열섬 등 도시화 및 기후변화로 인한 물 및 환경문제에 대비하기 위해서는 고해상도 물순환 및 열순환 해석 기술이 필수적이다. 도심지의 고밀도 건축물 및 식생 등 다양한 토지피복의 조합은 물/열 순환에 직접적인 영향을 미치는 요인이며, 물리과정에 대한 이해를 높이기 위해서는 고해상도 모의 및 관측이 필요하다. WRF-Hydro는 침투 및 증발산, 열 순환, 지표와 하천 및 저수지 추적 등 여러 물/열 순환 요소 해석 모듈을 연동할 수 있는 공간분포형 수문 해석 시스템이다. 본 연구에서는 WRF-Hydro를 기반으로 낙동강 지류인 금호강 유역에 대한 고해상도 물순환 및 열순환 모형을 구축하여, 토양수분, 하천 유량, 지표온도, 증발산 등 수문 요소 해석 결과를 분석한다. WRF-Hydro 모형의 입력자료 구축 시 고해상도 토지피복 및 토양도를 적용하고, 기상자료에는 국내 지상관측자료와 국외 재분석자료를 비교, 분석하여 자료의 신뢰성을 분석한다. 또한, ECOSTRESS 등 고해상도 원격탐사자료로부터의 열, 증발산 관련 추정 자료를 모의 결과와 비교하여, 열순환 해석의 불확실성을 평가한다. 물순환과 열순환의 해석의 신뢰도를 동시에 향상하기 위한 분포형 모형의 구축 및 매개변수 보정 방안에 대해 토의한다.

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Behavioral Characteristics and Safety Management Plan for Fill Dam During Water Level Fluctuation Using Numerical Analysis (수치해석을 이용한 수위변동시 필댐의 거동특성 및 안전관리방안)

  • Jung, Heedon;Kim, Yongseong;Lee, Moojae;Lee, Seungjoo;Tamang, Bibek;Heo, Joon;Ahn, Sungsoo
    • Journal of the Korean Geosynthetics Society
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    • v.20 no.1
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    • pp.45-55
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    • 2021
  • In this study, the behavioral characteristics of the fill dam were analyzed during water level fluctuations through a numerical analysis model, and the reservoir safety management plan was prepared. The variation in plastic deviatoric strain, horizontal displacement, stress path, pore water pressure, etc., due to elevation of water level in the upper and lower sides of shell and core were analyzed using numerical analysis software, viz. GTS NX and LIQCA. The analysis results manifest that as the water level in the dam body increases rapidly, the pore water pressure and displacement also increase quickly. It was found that the elevation of the water level causes an increase in pore water pressure in the dam body as well as an increase in the saturation of the dam body and decreased effective stress. It is considered that this type of dam behavior can be the cause of the reduction of strength and stiffness of the dam. Also, it is assumed that the accumulated plastic deviatoric strain due to the deformation of the dam body caused by water infiltration causes an increase in displacement. Based on these experimental results and the results of analyses of the existing reservoir safety diagnosis techniques, an improvement plan for dam safety diagnosis and evaluation criteria was proposed, and these results can be used as primary data while revising dam safety diagnosis guidelines.

Possibility of continuous flood modeling by ONE model (ONE 모형에 의한 연속 홍수모의의 가능성)

  • Noh, Jaekyoung;Lee, Jaenam
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.41-41
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    • 2022
  • 홍수는 단기간의 사상이다. 평상시 유량은 일단위로 연속유량이라 한다. 홍수해석은 사상 모형을 이용하고, 물 이용의 용수계획에서는 연속 모형에 의한다. 평상시 유량을 홍수처럼 10분, 30분, 60분 단위로 해석할 수 있으면 여러 가지로 편리하다. 홍수기에는 홍수와 이수를 동시에 분석할 수 있는 이점이 있다. 평상시에는 수문자료가 생성되는 기본단위가 10분, 60분이기 때문에 이와 일치하여 유량을 해석할 수 있는 이점이 있다. 특히 저수지에서는 운영자료가 저수율 자료만 관리되고 있는 현실을 감안하면, 연속 홍수모의의 필요성은 매우 높다. 다목적댐도 그 편의성은 말로 형용할 수 없는 수준이다. 홍수모의는 첨두유량도 중요하고, 전체 누적유량도 중요하다. 여기서는 당초 일 단위로 개발된 ONE 모형으로 연속 홍수모의의 가능성을 타진했다. 모형의 검증은 홍수사상 마다 훨씬 긴 장기간의 댐의 유입량, 저수량 오차로 실시했다. 유입량이 누적되면 저수량이 되기 때문에 저수량을 비교하면 확실한 검증 방법이 된다. 유역면적 930.0km2, 총저수량 8억1,500만m3인 용담댐과 유역면적 218.80km2, 유효저수량 3,498만m3인 탑정지를 대상으로 60단위의 장기간 연속 홍수모의 결과를 제시한다. 첫째, 용담댐에 대해 2020년 3월1일부터 6월30일까지 연속유입량을 모의한 결과(ONE모형 매개변수 α=3.18), 면적우량은 최대 12.5mm, 총 371.2mm(3억4,522만m3)였고, 유입량은 최대 1,363.0m3/s, 총 1억8,326만m3로 유출률 53.1%였다, 관측 유입량은 최대 766.1m3/s, 총 2억9,152만m3로 유출률 84.4%로 나타났다. 관측 유입량이 높은 것으로 평가했는데 그 이유는 산정된 유입량이 넓은 수면적에서 오는 음유입량이 발생하는데 이를 0으로 처리하고, 음의 누적 값이 전체유량에 더해지는 계산의 한계에서 비롯한다. 이는 현실적 제한이며, 개선이 필요하다. 댐 수위로 검증한 결과는 관측수위는 EL.257.97~262.92m, 평균 EL.260.40m, 모의수위는 EL.257.22~262.88m, 평균 EL.260.02m로 나타났고, RMSE는 0.174, NSE는 0.959, R2는 0.968로 만족한 결과를 얻었다. 둘째, 탑정지에 대해 2020년 3월1일부터 6월30일까지 연속유입량을 모의한 결과(ONE모형 매개변수 α=3.18), 면적우량은 최대 18.5mm, 총 311.4mm(6,813만m3)였고, 유입량은 최대 187.8m3/s, 총 3,691만m3로 유출률 54.2%였다. 저수지 수위로 검증한 결과 관측수위는 EL.26.55~29.79m, 평균 EL.29.01m, 모의수위는 EL.26.16~29.92m, 평균 EL.29.07m로 나타났고, RMSE는 0.563, NSE는 0.877, R2는 0.943로 만족한 결과를 얻었다. 정리하면 2020년 4개월의 장기간 용담댐과 탑정지에 대한 1시간 간격의 연속 홍수모의의 결과는 그 활용 가능성이 충분하다고 말하고 있다. 이 결과로부터 평상시 댐과 저수지의 실시간 운영자료 검증 및 생산체제의 수문관측업무에 활용 가능한 것으로 평가했다.

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안동 및 임하댐 연계운영을 통한 하류하천 탁도관리방안 연구

  • Noh, Joon-Woo;Kim, Jeong-Kon;Lee, Bae-Sung;Ko, Ick-Hwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.992-996
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    • 2006
  • 2005년부터 홍수기 유입된 탁수를 조기방류함에 있어서 안동댐과의 연계운영을 통한 탁도저감 대책이 수립되었으며, 이와 더불어 하류하천의 탁도관리 시스템 구축이 요구되는 실정이다. 본 연구에서는 이러한 하류하천의 탁도관리를 지원하는 모형을 구축함으로써 안동 및 임하댐의 연계운영을 통한 하류하천 탁도관리방안을 수립하고자 한다. 기본적으로 시간적인 변동이 심한 댐 방류시나리오를 입력자료로 구성하여 탁도자료와 함께 하류하천의 영향거리를 분석하고 자연흐름에 의한 탁도저감을 평가하고자 함이 연구의 골자가 된다. 본 연구에서는 임하 및 안동댐의 호내 탁도분포를 조사하고 하류하천의 지점별 탁도를 측정함과 동시에 동적수질모형인 KoRiv1-win 모형을 사용하여 하류단 탁도를 계산할 수 있도록 구성하였으며 댐직하류 구간에 대해서는 2차원 유한요소 흐름해석 모형인 SMS모형을 사용해서 모의를 수행하였다. 2차원 및 1차원 수리해석 및 수질해석결과를 바탕으로 탁수전파 거리 및 탁도도달 시간을 산정함하고 하류단 탁도저감을 위한 저수지 연계운영에 활용할 수 있도록 하였다.

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Study on Waterhammer Analysis (수격작용(워터햄머)의 해석에 관한 연구)

  • 남선우
    • Water for future
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    • v.12 no.2
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    • pp.49-55
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    • 1979
  • The purpose of this study is to develope the computer program to compute the unsteady, transient flow conditions in a hydraulic system. The unstready flow condition may be brought about due to power failure to pump motors, pump start-up or modulation of control valve. The program was written specially for analyzing the water-hammer in the pumping system. The pumping system which can be simulated by the program can contain pipelines, tunnel, surge tanks, branched lines, reservoirs, dead end pipes and valve controls. The use of a computer program to analyze haydranlic transients is of great benifit to the designers of transmission main and distribution systems. Advantages include time savings, the ability to analyze complex piping systems, and increased accuracy. The author outlines a pogram developed for the above system.

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Parameter Sensitivity Analysis for Spatial and Temporal Temperature Simulation in the Hapcheon Dam Reservoir (합천댐 저수지에서의 시공간적 수온모의를 위한 매개변수 민감도 분석)

  • Kim, Boram;Kang, Boosik
    • Journal of Korea Water Resources Association
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    • v.46 no.12
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    • pp.1181-1191
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    • 2013
  • This study have implemented finding the optimal water temperature parameter set for Hapcheon dam reservoir using CE-QUAL-W2 model. In particular the sensitivity analysis was carried out for four water temperature parameters of wind sheltering coefficient (WSC), radiation heat coefficient (BETA), light extinction coefficient (EXH2O), heat exchange coefficient at the channel bed (CBHE). Firstly, WSC, BETA, EXH2O shows relatively high sensitivity in common during April to September, and CBHE does during August to November. Secondly, as a result of identifying depth range of parameter influence, BETA and EXH2O show 0~9 m and 8~14 m which is thermocline layer close to water surface, CBHE is deep layer 12 m away from bottom. Finally, applying annual or monthly optimal parameter sets indicates that the bias between two sets does not show much differences for WSC and CBHE parameters, but BETA and EXH2O parameters show $0.20^{\circ}C$ and $0.51^{\circ}C$ of monthly average biases for two parameter sets. In particular the bias reveals to be $0.4^{\circ}C$ and $1.09^{\circ}C$ during May and August that confirms the necessity of use of monthly parameters during that season. It is claimed that the current operational custom use of annual parameters in calibration of reservoir water quality model requires the improvement of using monthly parameters.

A Probabilistic Determination of the Active Storage Capacity of A Reservoir Using the Monthly Streamflows Generated by Stochastic Models (월유하량(月流下量)의 추계학적(推計學的) 모의발생자료(模擬發生資料)를 사용(使用)한 저수지(貯水池) 활용(活用) 저수용량(貯水容量)의 확률론적(確率論的) 결정(決定))

  • Yoon, Yong Nam;Yoon, Kang Hoon
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.6 no.3
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    • pp.63-74
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    • 1986
  • A methodology for the probabilistic determination of active storage capacity of an impounding reservoir is proposed with due considerations to the durations and return periods of the low flow series at the reservoir site. For more reliable probabilistic analysis the best-fit stochastic generation model of Monte Carlo type was first selected for the generation of monthly flow series, the models tested being the Month Carlo Model based on the month-by-month flow series (Monte Carlo-A Type), Monte Carlo Model based on the standardized sequential monthly flow series (Monte Carlo-B Type), and the Thomas-Fiering Model. Monte Carlo-B Model was final1y selected and synthetic monthly flows of 200 years at Hong Cheon dam site were generated. With so generated 200 years' monthly flows partial duration series of low flows were developed for various durations. Each low flow series was further processed by a nonsequential mass analysis for specified draft rates. This mass analysis furnished the storage-draft-recurrence interval relationship which gives the reservoir storage requirement for a specified water demand from the reservoir during a drought of given return period. Illustrations are given on the application of these results in analyzing the water supply capacity of a particlar reservoir, existing or proposed.

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A Study on the Safety Ratio of Reservoir Embankment by Seismic Reinforcement Section Shape (내진보강 단면형상에 따른 국내 저수지 제방의 안전율에 대한 검토)

  • Lim, Seonghun;Kim, Daehyeon
    • The Journal of Engineering Geology
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    • v.31 no.3
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    • pp.343-355
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    • 2021
  • Agricultural reservoirs seek human convenience by supplying agricultural water and providing flood damage effects and rest areas at the same time, but preventing them from aging reservoirs and earthquakes is important. The safety of levees is influenced by field material properties such as soil parameter values of the granular materials that make up the levees, but since precision safety diagnosis or general literature values are diverted, the final safety factors are limited to material properties alone. Since safety factors are determined by physical characteristic values and embankment shapes and have a significant impact on safety factors, accurate contemplation is required when examining reinforced cross sections. Therefore, this study analyzed the case of reasonable and economical reinforcement intersections when designing '◯◯reservoir' in Goheung-geun, Jeollanam-do using the GEP-SLOPE program to enable rational economic design of reinforcement intersections through repeated reviews. As a result of reducing and analyzing the first, second, and third seismic reinforcement of the levees, it was confirmed that the safety ratio was secured even with a significantly smaller amount of reinforcement than the first, second, and lower slopes by obtaining design standards of 1.20. In addition, when determining all seismic reinforcement cross-sectional shapes, it was confirmed that the shape that reinforces only the lower side rather than the upper side of the slope and the entire slope was economical with minimized cross-sectional reinforcement.

Field Applications of Non-powered Downward Water Circulation System to Improve Reservoir Water Quality (저수지 수질개선을 위한 무동력 하향류 수류순환시스템의 현장적용성)

  • Jang, YeoJu;Lim, HyunMan;Jung, JinHong;Park, JaeRho;Kim, WeonJae
    • Ecology and Resilient Infrastructure
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    • v.6 no.2
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    • pp.109-119
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    • 2019
  • Eutrophication has occurred due to the inflow of various water pollutants in many Korean reservoirs with low depth, and algal blooms of surface layer and low oxygenation of deep layer have repeated every year. There are several existing technologies to alleviate the stratification of reservoirs, but it is difficult to apply them in field sites due to the necessity of electric power and low economic efficiency. In this study, a non-powered water circulation system using natural energy of wind and water flow has been developed, and two test-beds constructed in the reservoirs with different conditions and examined its field applicability. Through computational fluid dynamics (CFD) simulation, it has been shown that the water circulation system could induce the downward flow to mitigate the stratification between surface and deep layers, and its influence radius could reach about 30 m. As a result of long-term monitoring of the test-beds, various water quality improvement effects have been observed such as moderation of DO fluctuation by water circulation, reduction of DO supersaturation and prevention of excessive pH rising. In order to improve the applicability of the water circulation system, it is considered necessary to review countermeasures against flood and depth conditions of each reservoir.

Determination of Solidified Material's Optimum Mixing Ratio for Reservoir Embankment Reinforcement (저수지 제체 보강을 위한 고화재 최적 배합비 결정)

  • Jaegeun Woo;Jungsoon Hwang;Seungwook Kim;Seungcheol Baek
    • Journal of the Korean GEO-environmental Society
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    • v.25 no.6
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    • pp.5-12
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    • 2024
  • Currently, a grouting method that minimizes damage to the reservoir embankment by injecting solidification agent at low pressure is commonly used to ensure waterproofing and safety of the embankment, but the use of solidification agents can cause issues, such as a decrease in durability and a lack of clear method for determining the mixing ratio. In this study, when the base ground and solidification agent were stirred and mixed at various weight mixing ratios, the permeability coefficient and strength of the mixture were confirmed through laboratory tests, and the optimal mixing ratio was suggested through analysis of the test results. The specimen for the laboratory test was produced considering the mixing ratio of the solidification agent. The specimen for the permeability coefficient test was tested by producing one each of cohesionless and cohesive soil for a mixing amount of 1.5 kN/m3 of solidification agent, and the permeability test results confirmed that the water barrier performance was secured below the permeability coefficient value required by various design criteria. A total of 24 specimens for the strength test were produced, 3 for each of 5 mixing amounts for cohesive soil and 3 mixing amounts for cohesionless soil. The strength test results showed that the uniaxial compressive strength tends to increase linearly with increasing curing time for both cohesionless soil and cohesive soil when the mixing amount is less than 2.0 kN/m3. Therefore, the optimal mixing ratio applied to the site is determined to be mixing amount of 1.5 kN/m3 and 2.0 kN/m3. Finally, numerical analysis reflecting test results was conducted on design case for improvement projects for aging reservoirs embankment to verify the water barrier performance and safety improvement effects.