• 제목/요약/키워드: Reservoir Operation

검색결과 536건 처리시간 0.029초

유입량의 변동성을 고려한 Fuzzy DEA 기반의 댐 군 연계운영 가중치 대안 평가 (An Evaluation of Multi-Reservoir Operation Weighting Coefficients Using Fuzzy DEA taking into account Inflow Variability)

  • 김용기;김재희;김승권
    • 산업공학
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    • 제24권3호
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    • pp.220-230
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    • 2011
  • The multi-reservoir operation problem for efficient utilization of water resources involves conflicting objectives, and the problem can be solved by varying weight coefficient on objective functions. Accordingly, decision makers need to choose appropriate weight coefficients balancing the trade-offs among multiple objectives. Although the appropriateness of the weight coefficients may depend on the total amount of water inflow, reservoir operating policy may not be changed to a certain degree for different hydrological conditions on inflow. Therefore, we propose to use fuzzy Data Envelopment Analysis (DEA) to rank the weight coefficients in consideration of the inflow variation. In this approach, we generate a set of Paretooptimal solutions by applying different weight coefficients on Coordinated Multi-reservoir Operating Model. Then, we rank the Pareto-optimal solutions or the corresponding weight coefficients by using Fuzzy DEA model. With the proposed approach, we can suggest the best weight coefficients that can produce the appropriate Pareto-optimal solution considering the uncertainty of inflow, whereas the general DEA model cannot pinpoint the best weight coefficients.

저수지 장기운영을 위한 퇴적토사의 효율적 관리(2) - 저수지 퇴사분포 및 저감방안 (An Efficient Management of Sediment Deposit for Reservoir Long-Term Operation (2) - Sediment Distribution and Reduction Method in Reservoir)

  • 안재현;장수형;최원석;윤용남
    • 한국물환경학회지
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    • 제22권6호
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    • pp.1094-1100
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    • 2006
  • In this study, the reservoir sediment reduction methods for long-term operation are proposed by the analysis of both sediment deposit characteristics and sediment reduction effect by each method. To that end, a flowchart for sediment analysis in reservoir is established and sediment deposit is simulated by SMS-SED2D model. The sediment reduction methods which are sediment passing (sluicing), flushing, trapping, bypassing and mechanical removal are used. From the simulation results, the effective method for sediment reduction is operation which is coupled by both sediment passing with sand gate and sediment trapping with debris dam. And If sediment flushing will be used once a year after 50 years, conservation storage can be secured until 100 years after dam construction.

홍수기중의 실시간 저수지운영 모형(II) - 대청댑의 단일저수지 운영 방안 - (A Model for Real-time Reservoir Operations during Flood Period.II : Single Reservoir Operating Rules at Daecheong Dam)

  • 심명필;박인보
    • 물과 미래
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    • 제23권4호
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    • pp.499-507
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    • 1990
  • 홍수기중의 실시간 저수지 운영을 위해서는 매시간 on-line으로 입력된 자료와 예측치로부터 시간별 최적방류량을 구해야 한다. 이를 위해서 댐하류의 홍수피해를 최소화하고 홍수 말기의 용수보존을 고려하는 무의 모형의 기법을 발표한 바 있다. 본 논문에서는 홍수시의 대청댐의 단일저수지 운영을 위해 모형을 적용하고 결과를 검토하며, 과거의 측정된 유입량과 방류량자료도 검토한다. 초기저수위를 달리하여 각 재현 기간별 홍수수문곡선을 다루고, 강우유출 모형으로부터 얻은 예측유입량을 구하여 운영한 뒤에 실제값과 비교하였다. 연구결과에 의하면 예측유입량의 불확실성을 고려하기 위해 위험계수를 적용하면 홍수조절용량을 효율적으로 이용할 수 있다.

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Application of Artificial Intelligence Technology for Dam-Reservoir Operation in Long-Term Solution to Flood and Drought in Upper Mun River Basin

  • Areeya Rittima;JidapaKraisangka;WudhichartSawangphol;YutthanaPhankamolsil;Allan Sriratana Tabucanon;YutthanaTalaluxmana;VarawootVudhivanich
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.30-30
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    • 2023
  • This study aims to establish the multi-reservoir operation system model in the Upper Mun River Basin which includes 5 main dams namely, Mun Bon (MB), Lamchae (LC), Lam Takhong (LTK), Lam Phraphoeng (LPP), and Lower Lam Chiengkrai (LLCK) Dams. The knowledge and AI technology were applied aiming to develop innovative prototype for SMART dam-reservoir operation in future. Two different sorts of reservoir operation system model namely, Fuzzy Logic (FL) and Constraint Programming (CP) as well as the development of rainfall and reservoir inflow prediction models using Machine Learning (ML) technique were made to help specify the right amount of daily reservoir releases for the Royal Irrigation Department (RID). The model could also provide the essential information particularly for the Office of National Water Resource of Thailand (ONWR) to determine the short-term and long-term water resource management plan and strengthen water security against flood and drought in this region. The simulated results of base case scenario for reservoir operation in the Upper Mun from 2008 to 2021 indicated that in the same circumstances, FL and CP models could specify the new release schemes to increase the reservoir water storages at the beginning of dry season of approximately 125.25 and 142.20 MCM per year. This means that supplying the agricultural water to farmers in dry season could be well managed. In other words, water scarcity problem could substantially be moderated at some extent in case of incapability to control the expansion of cultivated area size properly. Moreover, using AI technology to determine the new reservoir release schemes plays important role in reducing the actual volume of water shortfall in the basin although the drought situation at LTK and LLCK Dams were still existed in some periods of time. Meanwhile, considering the predicted inflow and hydrologic factors downstream of 5 main dams by FL model and minimizing the flood volume by CP model could ensure that flood risk was considerably minimized as a result of new release schemes.

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추계학적(推計學的) 저수용량(貯水容量) 결정(決定)에 관(關)한 연구(硏究) (A study on the determination for stochastic reservoir capacity)

  • 최한규
    • 산업기술연구
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    • 제3권
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    • pp.69-74
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    • 1983
  • For the determination of a reservoir capacity Rippl's mass-curve method has long been used with the past river flow data assuming the same flow records will be repeated in the future. This study aims to find out a better method for determining the reservoir capacity by employing the analytical theory based on the stochastic process. For the present study the synthetic generation methods of Thomas-Fiering type was used to synthetically generate 50 years of monthly river inflows to three single-purpose reservoirs and three multi-purpose reservoirs. The generated sequences of monthly flows were analyzed based on the range concept. With the optimum operation rule of the reservoirs as the one which maximizes the water-use downstream the waterrelease from the reservoir was determined and with due consideration to the mean inflows and the range of monthly flows the required reservoirs capacity was stochastically determined. It was possible to repersent the so-determined reservoir capacity in terms of the mean monthly inflows and the number of subseries in the determination of ranges. It is suggested that the result obtained in this study would be applied to approximately estimate, in the stage of preliminary design, the required capacity of a reservoir in question with the limited information such as the mean monthly inflow and the period of reservoir operation.

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농업용 저수지 이수관리를 위한 저수율 가뭄단계기준 개선 (Improvement of Drought Operation Criteria in Agricultural Reservoirs)

  • 문영식;남원호;우승범;이희진;양미혜;이종서;하태현
    • 한국농공학회논문집
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    • 제64권4호
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    • pp.11-20
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    • 2022
  • Currently, the operation rule of agricultural reservoirs in case of drought events follows the drought forecast warning standard of agricultural water supply. However, it is difficult to preemptively manage drought in individual reservoirs because drought forecasting standards are set according to average reservoir storage ratio such as 70%, 60%, 50%, and 40%. The equal standards based on average water level across the country could not reflect the actual drought situation in the region. In this study, we proposed the improvement of drought operation rule for agricultural reservoirs based on the percentile approach using past water level of each reservoir. The percentile approach is applied to monitor drought conditions and determine drought criteria in the U.S. Drought Monitoring (USDM). We applied the drought operation rule to reservoir storage rate in extreme 2017 spring drought year, the one of the most climatologically driest spring seasons over the 1961-2021 period of record. We counted frequency of each drought criteria which are existing and developed operation rules to compare drought operation rule determining the actual drought conditions during 2016-2017. As a result of comparing the current standard and the percentile standard with SPI6, the percentile standard showed severe-level when SPI6 showed severe drought condition, but the current standard fell short of the results. Results can be used to improve the drought operation criteria of drought events that better reflects the actual drought conditions in agricultural reservoirs.

Incremental DP에 의한 홍수시 댐군의 연계운영 (An Optimal Operation of Multi-Reservoirs for Flood Control by Incremental DP)

  • 이재형;이길성;정동국
    • 물과 미래
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    • 제25권2호
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    • pp.47-60
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    • 1992
  • 북한강 수계에 위치한 화천댐과 소양강댐을 홍수시 연계운영을 위하여 Incremental DP를 사용하여 최적운영모형을 개발하였다. 목적함수로는 의암댐 합류점의 첨두 유량을 최소화하는 것으로 하였으며 수리-수문학적 제약조건은 홍수시 댐조작에 관한 법령, 각 댐 및 하도특성을 고려하여 설정하였다. 특히, 2차 홍수에 대비하여 홍수가 끝나는 시점의 수위가 제한수위가 되도록 하였다. 또한 Incremental DP 모형의 운영결과와 Simulation 및 DP에 의한 단일댐 운영결과를 조절률과 이용률의 관점에서 비교하였고, 합류점의 첨두유량을 Feedback Loop를 이용한 Simulation 결과와 비교하였다. 운영결과 조절률과 이용률이 Simulation 및 DP에 의한 단일댐 운영결과보다 다소 낮게 나타났고, 합류점 유량이 Feedback Loop에 결과보다 크게 나타났는데 이는 홍수말기의 수위에 관한 제약조건 때문이다.

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Hedging Rule을 이용한 댐 연계 운영 최적화: 한강수계 사례연구 (Optimization of Multi-reservoir Operation with a Hedging Rule: Case Study of the Han River Basin)

  • 류관형;정건희;이정호;김중훈
    • 한국수자원학회논문집
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    • 제42권8호
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    • pp.643-657
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    • 2009
  • 홍수기에 집중되는 유출량을 갈수기에 적절히 활용하기 위한 대표적인 구조물이 댐이다. 제한된 용수공급량을 적절히 분배해 용수수요량을 만족시키면서 미래 갈수기시 용수공급을 대비하여 댐 저류량을 조절하는 것이 댐 운영의 중요한 목적 중 하나이다. 본 연구에서는 갈수 시 댐 저류량에 따라 댐 계획방류량을 일정비율 줄여주는 Hedging Rule을 5단계로 적용하여 댐의 상시만수위 저류량에 대한 실제 저류량의 편차, 수요에 대한 용수공급 부족량, 그리고 하천유지용수 부족량을 목적함수로 하여 혼합정수 선형계획법(MILP, Mixed Integer Linear Programming)으로 저수지 연계운영모형을 구성하였다. 한강수계의 다목적댐인 충주, 횡성, 소양강 댐과 용수전용댐인 광동 댐, 그리고 발전용 댐이지만 비교적 큰 저류용량을 가진 화천 댐을 연계 운영 대상으로 하여, 수자원장기종합계획에 사용된 2003년 유출량 및 수요량 자료와 댐 운영 실무편람의 댐 계획방류량 자료를 10일 단위로 입력하여 GAMS/CPLEX를 이용해 최적화하였다. 그 결과 생공용수 수요량 99.99%, 농업용수 수요량 99.91%, 그리고 하천유지용수 수요량 100.00%를 충족시키면서도, 실제 2003년 운영자료에 비교하여 댐 저류효율이 10.04% 개선된 결과를 도출하였다.

수요의 불확실성을 고려한 한강수계 댐 연계 운영 최적화 (Optimization of Multi-reservoir Operation considering Water Demand Uncertainty in the Han River Basin)

  • 정건희;류관형;김중훈
    • 한국방재학회 논문집
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    • 제10권1호
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    • pp.89-102
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    • 2010
  • 미래의 기후조건과 생활패턴의 불확실성으로 인해 미래용수수요 또한 불확실성을 가지며, 이는 충분한 용수공급을 목적으로 하는 댐 운영에 어려움을 초래한다. 따라서 가용 수자원을 최대한 활용하여 충분한 용수분배를 하는 동시에, 홍수와 가뭄에 대한 대비까지 가능한 댐의 운영은 매우 중요하다. 본 연구에서는 미래의 불확실한 용수수요량을 정확히 알지 못하는 상태에서 저수지의 운영을 통한 저류량을 1단계에서 결정하고, 2단계에서 용수수요에 따른 용수공급량과 하천유지유량을 결정하기 위한 최적화 모형을 2단계 추계학적 선형계획법을 이용하여 구축하고, 목표저류량과 실제 저류량의 차이, 용수공급과 하천유지유량의 부족량을 최소화하기 위한 저수지 운영 규칙을 최적화하였다. 또한 가뭄시 보다 현실적이고 효율적인 저수지 운영을 위해 댐저류량에 따라 댐 계획방류량을 일정비율 줄여주는 Hedging Rule을 사용하여 모형의 적절성과 적용성을 향상시켰다. 제안된 모형은 한강수계의 댐들 중 다목적댐인 충주, 횡성, 소양강 댐과 용수전용댐인 광동 댐, 그리고 발전용 댐이지만 비교적 큰 저류용량을 가진 화천 댐을 연계 운영 대상으로 하여, 미래 용수수요량 시나리오를 고려한 최적화를 실시하였다. 그 결과 모든 시나리오에서 생공용수, 농업용수, 하천유지용수 공급량을 대부분 만족시킬 수 있었고, 댐의 저류량 역시 갈수기 용수공급에 대비하여 홍수기인 6월 말에서 9월 중순에 저류량을 확보하면서도 홍수피해저감까지 고려하는 운영이 가능하였다. 이는 다목적 댐들의 연계운영을 위한 저수지 운영규칙결정에 매우 중요한 지표가 될 수 있을 것으로 판단된다.

Prediction of reservoir sedimentation: A case study of Pleikrong Reservoir

  • Thu Hien Nguyen;XuanKhanh Do
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.36-36
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    • 2023
  • Sedimentation is a natural process that occurs in all reservoirs. Sedimentation problem reduces the storage capacity of the reservoir and limits its ability to provide water for various uses, such as irrigation, hydropower generation, and flood control. Therefore, predicting reservoir sedimentation is important for ensuring the efficient operation and sedimentation management of a reservoir and . In this study, the HECRAS model was applied to predict longitudinal distribution of deposited sediment in the Pleikrong reservoir to 2050. Different scenarios was considered: (i) no climate change, (ii) climate change (under two emissions scenarios, RCP4.5 and RCP8.5), and (iii) climate change and land use change (followed land use planning of the watershed). The computation results with different scenarios were analyses and compared. The results show that the reservoir reduced storage volume's rate and sedimentation proceed toward to the dam in the case of climate change is faster than in the case of no climate change. Analyses also indicates that following the land used planning could also improve the long-term problem of the reservoir sedimentation. The outcomes of this study will be helpful for a sustainable plan of sediment management for the Pleikrong reservoir.

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