• 제목/요약/키워드: upper dam

검색결과 217건 처리시간 0.026초

증고에 따른 기존 CFRD 댐체의 변형거동 (Deformation Behavior of Existing Concrete-Faced Rockfill Dam due to Raising)

  • 신동훈;조성은;전제성;이종욱
    • 한국지반환경공학회 논문집
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    • 제8권6호
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    • pp.77-83
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    • 2007
  • 본 논문에서는 이미 사용 중인 콘크리트표면차수벽형석괴댐(이하 CFRD)에 대하여 저수용량 확대 또는 수리 수문학적 안정성을 증대할 목적 등으로 하류측에 추가 축조하여 댐의 높이를 높이는 경우에 대하여 추가 축조과정에 기존 댐체 및 추가 축조 부분의 변형거동을 유한요소해석법으로 검토하였다. 해석결과 기존 댐체의 하류측에 덧붙여 추가 축조할 경우 기존 댐체 전반에 걸쳐 추가 변형이 발생하는 것으로 나타났다. 특히, 상류사면은 침하(댐마루측)와 융기(댐체 하부측)가 동시에 발생하며, 이 경우CFRD의 특성상 상류사면에 시공되어 있는 콘크리트 차수벽에는 휨모멘트에 의한 인장균열이 발생할 수 있는 것으로 나타났다. 따라서 기존 CFRD에 증고를 하는 경우에는 시공전에 반드시 기존 차수벽의 변형량과 휨모멘트 발생량 등을 검토하고 경우에 따라서는 적절한 보완대책의 수립이 필요한 것으로 나타났다.

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사방댐 준설이 저서성 대형무척추동물 군집에 미치는 영향 (The Influence of Sediment Control Dam Dredging on Benthic Macroinvertebrate Communities of Mountain Stream)

  • 김봉성;이창우;서을원;이종은
    • 한국산림과학회지
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    • 제101권3호
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    • pp.454-460
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    • 2012
  • 본 연구는 사방댐의 준설이 저서성 대형무척추동물 군집에 미치는 영향을 파악하기 위해 경북북부지역 예천, 영주, 봉화의 산간계류에 위치한 사방댐을 대상으로 준설 전 후로 조사하였다. 조사는 실험수계 3곳과 대조수계 2곳의 사방댐을 기준으로 상류와 하류로 설정하여 2011년 5월부터 8월까지 이루어졌다. 실험수계에서 준설 전 4문 6강 11목 31과 56종이 출현하였으나, 준설 후 4문 5강 10목 27과 51종으로 감소하였다. 이와 같이 사방댐 준설후 발생한 저서성 대형무척추동물의 미소서식처 파괴는 종수 및 개체수의 감소로 이어졌으며, 특히 실험수계의 상류지점에서는 종수가 평균 38% 감소하였다. 전반적으로 준설 후 실험수계에서 종풍부도지수와 종다양도지수가 감소했지만, 우점도지수는 증가하였다. 실험수계의 상류지점에서 미소서식처의 파괴와 정수역이 형성되었으며, 유속이 감소하고 하상구조는 모래나 실트로 단순해졌다. 그에 따라 상류지점의 섭식기능군과 서식기능군의 종조성은 단순해졌으며, 상 하류 군집의 차이가 커졌다. 또한 상류지점에서는 유속이 느리거나 정수역을 선호하는 깔따구류(Chironomidae spp.), 부채장수잠자리류(Gomphidae spp.), 하루살이류(Ephemeridae spp.)의 개체수 비율이 크게 증가하였으며, 군집의 균형성을 나타내는 EPT/C 지수가 감소하였다.

댐과 하천유역을 연계한 홍수 대응 방안 - 2020년 섬진강 홍수사상을 대상으로 - (Plan for Flood Control Linked with Dam and River Basin)

  • 백경오;이동열
    • 한국안전학회지
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    • 제38권2호
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    • pp.81-86
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    • 2023
  • In this study, a one-dimensional numerical model was constructed to propose a flood control plan linked with the dam and river basin for the flood events of the Seomjin River in 2020. The flood level reduction of the downstream river was tested based on a scenario operation of the Seomjingang Dam and was also analyzed when a storage pocket was newly constructed as one of the river basin measures. It was confirmed that Seomjingang Dam's flood control capacity would be increased if the flood limit level was drastically lowered from the current EL. 196.5 m to EL. 188.0 m. In addition, if the upper area of the (old) Geumgok Bridge (which suffered great damage due to the loss of the levee) is used as a storage pocket, it would be effective in preventing floods in the lower area of it. In the era of the climate crisis, more integrated flood management is needed and basic river management must be observed.

Image-based characterization of internal erosion around pipe in earth dam

  • Dong-Ju Kim;Samuel OIamide Aregbesola;Jong-Sub Lee;Hunhee Cho;Yong-Hoon Byun
    • Computers and Concrete
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    • 제33권5호
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    • pp.481-496
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    • 2024
  • Internal erosion around pipes can lead to the failure of earth dams through various mechanisms. This study investigates the displacement patterns in earth dam models under three different failure modes due to internal erosion, using digital image correlation (DIC) methods. Three failure modes—erosion along a pipe (FM1), pipe leakage leading to soil erosion (FM2), and erosion in a pipe due to defects (FM3)—are analyzed using two- and three-dimensional image- processing techniques. The internal displacement of the cross-sectional area and the surface displacement of the downstream slope in the dam models are monitored using an image acquisition system. Physical model tests reveal that FM1 exhibits significant displacement on the upper surface of the downstream slope, FM2 shows focused displacement around the pipe defect, and FM3 demonstrates increased displacement on the upstream slope. The variations in internal and surface displacements with time depend on the segmented area and failure mode. Analyzing the relationships between internal and surface displacements using Pearson correlation coefficients reveals various displacement patterns for the segmented areas and failure modes. Therefore, the image-based characterization methods presented in this study may be useful for analyzing the displacement distribution and behavior of earth dams around pipes, and further, for understanding and predicting their failure mechanisms.

소양댐 상류 유역 내 어류상의 시⋅공간 분포와 부유성 퇴적물 영향 (Spatio-temporal Distribution and Suspended Sediment Effects on Fish Flora in the Upper Basin of Soyang-Dam)

  • 유은진;안종호;이문환;전동진
    • 한국물환경학회지
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    • 제39권4호
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    • pp.329-342
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    • 2023
  • Turbid water and suspended sediment (SS) load are having negative consequences such as water quality degradation and ecological damage, thus necessitating the establishment of management guidelines to reduce their impact. The present work investigates the spatio-temporal distribution of fish species and the effects of turbid water from 2011-2016 in the upper reaches of Soyang-Dam. The family Cyprinidae is the largest population in the study area, among which Zacco platypus and Zacco koreanus are the dominant species. The diversity of species is relatively abundant in the upper watershed, while the seasonal effect on the population distribution remains unclear. Using two main common components of the empirical orthogonal function (EOF) analysis, the distribution characteristics of 27 species at five survey sites are revealed. Zacco koreanus is found to be predominant at the upstream A-Naerincheon, while Zacco platypus and Rhinogobius brunneus are found to be predominant at the upstream B-Bukcheon. Disturbance of an aquatic ecosystem has a relatively greater impact in the downstream, as-compared to the upper area-the high proportion of forest area is decreased whereas that of agricultural and urbanized areas is increased. The patterns of representative species are changed according to the mid- to long-term effects of turbid water and SS. Accordingly, the significant correlation between the SS load and fish distribution EOF analysis indicates that it should be considered as a potential alternative that can overcome the limitations of impact assessment on turbid water to the Fish Assessment Index (FAI). A comprehensive study examining the long-term effects of SS load to the fish ecosystems with a systematic statistical analysis of sufficiently accumulated data at the national level is needed as future research.

Bhumipol Dam Operation Improvement via smart system for the Thor Tong Daeng Irrigation Project, Ping River Basin, Thailand

  • Koontanakulvong, Sucharit;Long, Tran Thanh;Van, Tuan Pham
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.164-175
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    • 2019
  • The Tor Tong Daeng Irrigation Project with the irrigation area of 61,400 hectares is located in the Ping Basin of the Upper Central Plain of Thailand where farmers depended on both surface water and groundwater. In the drought year, water storage in the Bhumipol Dam is inadequate to allocate water for agriculture, and caused water deficit in many irrigation projects. Farmers need to find extra sources of water such as water from farm pond or groundwater as a supplement. The operation of Bhumipol Dam and irrigation demand estimation are vital for irrigation water allocation to help solve water shortage issue in the irrigation project. The study aims to determine the smart dam operation system to mitigate water shortage in this irrigation project via introduction of machine learning to improve dam operation and irrigation demand estimation via soil moisture estimation from satellite images. Via ANN technique application, the inflows to the dam are generated from the upstream rain gauge stations using past 10 years daily rainfall data. The input vectors for ANN model are identified base on regression and principal component analysis. The structure of ANN (length of training data, the type of activation functions, the number of hidden nodes and training methods) is determined from the statistics performance between measurements and ANN outputs. On the other hands, the irrigation demand will be estimated by using satellite images, LANDSAT. The Enhanced Vegetation Index (EVI) and Temperature Vegetation Dryness Index (TVDI) values are estimated from the plant growth stage and soil moisture. The values are calibrated and verified with the field plant growth stages and soil moisture data in the year 2017-2018. The irrigation demand in the irrigation project is then estimated from the plant growth stage and soil moisture in the area. With the estimated dam inflow and irrigation demand, the dam operation will manage the water release in the better manner compared with the past operational data. The results show how smart system concept was applied and improve dam operation by using inflow estimation from ANN technique combining with irrigation demand estimation from satellite images when compared with the past operation data which is an initial step to develop the smart dam operation system in Thailand.

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지하댐 설치 시 섬진강 하류 염수침입 방지 효과의 모델기반 분석 (Effect of Underground Dam for the Prevention of Seawater Intrusion at the Seom-jin River)

  • 김성윤;김규범;박준형;신선호
    • 한국지반환경공학회 논문집
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    • 제12권8호
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    • pp.51-57
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    • 2011
  • 섬진강 하류지역은 1978년 이후 지속적인 하상 세굴로 인하여 염수 침입이 확대된 지역으로서, 본 연구에서는 지하댐 설치 시의 염수침입 차단 효과를 수치모델로서 평가하였다. 현재 섬진강 하류 지표수의 염소이온농도는 상류로 가면서 지수함수적으로 감소하며, 지하수내 농도는 지표수의 1/10 이내로 나타난다. 하구로부터 4.6km 지점에 암반 상부로부터 25m 높이의 지하댐을 설치하는 조건으로 FEM 모델인 FEFLOW를 수행한 결과, 지하댐 상류의 퇴적 작용으로 현재보다 충적층의 두께가 5m 정도 두꺼워진다면 하구로부터 25km 지점에서의 염소이온농도(0.25psu)가 하류로 약 3km 정도 이동하는 것으로 나타났다. 반면에, 지하댐 상류에 퇴적물이 쌓이지 않을 경우에는 지하댐 설치 효과가 미미한 것으로 해석되었다.

Seismic damage assessment of a large concrete gravity dam

  • Lounis Guechari;Abdelghani Seghir;Ouassila Kada;Abdelhamid Becheur
    • Earthquakes and Structures
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    • 제25권2호
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    • pp.125-134
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    • 2023
  • In the present work, a new global damage index is proposed for the seismic performance and failure analysis of concrete gravity dams. Unlike the existing indices of concrete structures, this index doesn't need scaling with an ultimate or an upper value. For this purpose, the Beni-Haroun dam in north-eastern Algeria, is considered as a case study, for which an average seismic capacity curve is first evaluated by performing several incremental dynamic analyses. The seismic performance point of the dam is then determined using the N2 method, considering multiple modes and taking into account the stiffness degradation. The seismic demand is obtained from the design spectrum of the Algerian seismic regulations. A series of recorded and artificial accelerograms are used as dynamic loads to evaluate the nonlinear responses of the dam. The nonlinear behaviour of the concrete mass is modelled by using continuum damage mechanics, where material damage is represented by a scalar field damage variable. This modelling, which is suitable for cyclic loading, uses only a single damage parameter to describe the stiffness degradation of the concrete. The hydrodynamic and the sediment pressures are included in the analyses. The obtained results show that the proposed damage index faithfully describes the successive brittle failures of the dam which increase with increasing applied ground accelerations. It is found that minor damage can occur for ground accelerations less than 0.3 g, and complete failure can be caused by accelerations greater than 0.45 g.

대청호 저수지 수질해석을 해석을 위한 CE-QUAL-W2 모형의 검보정 (Calibration and Verification of CE-QUAL-W2 Model for Measuring Water Quality in the Daecheong Reservoir)

  • 하성룡;이재일
    • 환경영향평가
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    • 제17권6호
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    • pp.349-356
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    • 2008
  • This paper aims to understand the effects of a turbidity flow intrusion on eutrophication in Daecheong Dam Reservoir. CE-QUAL-W2, a two-dimensional hydrodynamic and water quality model, is applied. The elevation of the reservoir water surface is used to validate the hydrodynamic model parameters and maximum fluctuations in the water surface elevations reaches about 1 m in the reservoir. During the heavy storm season, July, the thermocline submerged to less than 30 m below the surface. The thickness of the thermocline also reduced to 10 to 15 m. While the average TSS in June, the beginning of the monsoon was still low but it peaked in July due to heavy rainfall. Vertical profiles of the TSS regime in July indicated higher concentration in upper water layers and then the regime moves gradually downward in accordance with the time lapse. Due to the dam spillway opening, high concentrations of TSS attributed to storm turbidity ascended to the upper water layer by following the upward current movement and then, the regime precipitated to a layer below 30 to 40 m after September.

금강-보령댐 도수터널 운영에 따른 금강 본류 내 수위 영향 분석 연구 (Impacts on Water Surface Level of the Geum River with the Diversion Tunnel Operation for Low Flow Augmentation of the Boryong Dam)

  • 장석환;오경두;오지환
    • 한국환경과학회지
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    • 제26권9호
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    • pp.1031-1043
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    • 2017
  • Recently severe drought caused the water shortage around the western parts of Chungcheongnamdo province, South Korea. A Diversion tunnel from the Geum river to the Boryong dam, which is the water supply dam for these areas has been proposed to solve this problem. This study examined hydraulic impacts on the Geum river associated with the diversion plan assuming the severe drought condition of 2015 would persist for the simulation period of 2016. The hydraulic simulation model was verified using hydrologic and hydraulic data including hourly discharges of the Geum river and its 8 tributaries, fluctuation of tidal level at the mouth of the river, withdrawals and return flows and operation records of the Geum river barrage since Feb. 1, 2015 through May 31, 2015. For the upstream boundary condition of the Geum river predicted inflow series using the nonlinear regression equation for 2015 discharge data was used. In order to estimate the effects of uncertainty in inflow prediction to the results total four inflow series consisting of upper limit flow, expected flow, lower limit flow and instream flow were used to examine hydraulic impacts of the diversion plan. The simulation showed that in cases of upper limit and expected flows there would be no problem in taking water from the Geum river mouth with a minimum water surface level of EL(+) 1.44 m. Meanwhile, the simulation also showed that in cases of lower limit flow and instream flow there would be some problems not only in taking water for water supply from the mouth of the Geum river but also operating the diversion facility itself with minimum water surface levels of EL(+) 0.94, 0.72, 0.43, and 0.14 m for the lower limit flow without/with diversion and the instream flow without/with diversion, respectively.