• 제목/요약/키워드: Andong Dam Watershed

검색결과 28건 처리시간 0.027초

안동댐과 임하댐 유역에서 퇴적물 특성 및 오염도의 시·공간적 변화 (Spatial and Temporal Variation of Characteristics and Pollution Assessment of Sediment in the Watersheds of Andong-Dam and Imha-Dam, Korea)

  • 김신;정현기;김형근;김주언;박수정;김용석;양득석
    • 한국환경과학회지
    • /
    • 제28권12호
    • /
    • pp.1085-1099
    • /
    • 2019
  • We investigated the spatial and temporal variation in characteristics and pollution assessment of sediments in the watersheds of Andong-Dam and Imha-Dam, in Korea. Surface sediments were collected from six sites once a year for three years (2015-2017), and analyzed for organic matter (water content, IL, COD, TOC, TN, and TP), grain size, and concentration of trace metals (Al, Li, Zn, Cr, Pb, Cu, Ni, and As). Organic matter generally tended to increase, and was higher in the Andong watershed compare to Imha watershed. Surface sediments were mainly composed of silt. Coarse sediments were mainly distributed at the site adjacent to Andong-Dam, and showed fining after coarsening. Fine sediment were mainly distributed at the site adjacent to Imha-Dam, and were gradually coarsening. Concentration of trace metals generally tended to increase, and was higher for sites in watershed of Andong watershed (PLI > 1) than for sites in Imha watershed (PLI < 1). Trace metals in the study area were considered to be affected by fine sediment (silt), and contamination of trace metals was somewhat affected by Pb, and greatly affected by Zn and As.

수문기상 관측정보를 활용한 안동댐 유역 기후권역 구분 및 분석 (Analyzing Climate Zones Using Hydro-Meteorological Observation Data in Andong Dam Watershed, South Korea)

  • 김세진;임철희;임윤진;문주연;송철호;이우균
    • 한국기후변화학회지
    • /
    • 제7권3호
    • /
    • pp.269-282
    • /
    • 2016
  • Watershed area can be submerged due to constructions and management of dams, and these change can impact not only on ecosystem and environment of river basin area but also on local climate. This study is conducted to construct and classify climate zones of Andong Dam watershed where the area is submerged due to the construction of the dam. By applying Principal Components Analysis (PCA) and Getis-Ord $Gi^*$ statistics, three climate zones were classified for the result. Each zone was then analyzed and validated with climatic and geological features including topography, land cover, and forest type map. As a result of the analysis, there was a difference in temperature, elevation, precipitation and tree species distribution among the zones. Also, an analysis of land cover map showed that there were more agricultural land near Andong Reservoir. This study on the climatic classification is considered to be useful as the basis for decision-making or policy enforcement regarding ecosystem, environmental management or climate change response.

GIS에 의한 댐 유역 수질오염사고 평가 (The Assessment of Water Pollution Accident on Dam Watershed using GIS)

  • 명광현;정종철
    • 환경영향평가
    • /
    • 제20권4호
    • /
    • pp.489-496
    • /
    • 2011
  • The water pollution such as oil spill from stream and river because of car accidents have been frequent cases in the watershed of Dam. However we don't have any simulation methods about flow modeling on the watershed and stream tree. In this study aims to analyze water pollution accidents area on impact range for ANDONG-Dam. The focused watershed and the risk range of path analysis model was designed by GIS database. The frequency of transportation accidents which may occur from road accidents in the level of quantitative and qualitative analysis to map flow analysis using ArcHydro Model and Open Geospatial Consortium(OGC) API. and the path way from the accident point to the reservoir stayed on the path was simulated. The area of risk accessment index was displayed with cell and grid of dam area.

Analysis of Korean TMLD Design Flow Variation due to Large Dam Effluents and Water Use Scenarios

  • Shin, Hyun-Suk;Kang, Doo-Kee;Kim, Sang-Dan
    • 한국수자원학회:학술대회논문집
    • /
    • 한국수자원학회 2007년도 학술발표회 논문집
    • /
    • pp.74-83
    • /
    • 2007
  • The goal of this study is to establish an integrated watershed hydrologic model for the whole Nakdong River basin whose area is an approximately 24,000 km2. Including a number of watershed elements such as rainfall, runoff, water use, and so on, the proposed model is based on SWAT model, and is used to improve the flow duration curve estimation of ungauged watersheds for Korean Total Maximum Daily Load (TMDL). The model is also used to recognize quantitatively the river flow variation due to water use elements and large dam effluents in the whole watershed. The established combined watershed hydrologic model, SWAT-Nakdong, is used to evaluate the quantified influences of artificial water balance elements, such as a dam and water use in the watershed. We apply two water balance scenarios in this study: the dam scenario considering effluent conditions of 4 large multi-purpose dams, Andong dam, Imha dam, Namgang dam, and Habcheon dam, and the water use scenario considering a water use for stream line and the effluent from a treatment plant. The two scenarios are used to investigate the impacts on TMDL design flow and flow duration of particular locations in Nakdong River main stream. The results from this study will provide the basic guideline for the natural flow restoration in Nakdong River.

  • PDF

Characteristics of Andong Dam Inflow during Non-rainfall Season

  • Park, Gey-Hwan;Park, Ki-Bum;Chang, In-Soo
    • 한국환경과학회지
    • /
    • 제27권10호
    • /
    • pp.845-851
    • /
    • 2018
  • In this study, the runoff characteristics of the non-rainfall period were examined using daily rainfall data from 1977 to 2017 and the data of runoff into the dam. Results showed that, the mean runoff decreases with longer non-rainfall periods in the Andong dam basin. The correlation coefficient between non-rainfall days and average runoff reaches 0.85. The results of the analysis of the runoff characteristics during the non-rainfall period, based on the preceding rainfall of Andong dam are as follows. The runoff characteristics of the entire non-rainfall period, shows that, for a rainfall of 1.0 mm or less, the runoff height was larger than the rainfall size and the base runoff larger. The correlation between the antecedent rainfall and runoff height was reached as high as 0.9864 in the 30 ~ 50 mm interval of the antecedent rainfall period, and this is the interval where the linearity of rainfall and runoff was at its maximum in the Andong dam basin. The correlation between the antecedent rainfall and the runoff height reached 0.92 for rainfalls of 100.0 mm. However, for rainfalls of 100.0 mm greater, the correlation between the antecedent rainfall and runoff height during the rainfall period was 0.64, which is relatively small. In this study, we investigated the runoff characteristics of the rainfall period in the Andong dam watershed. As a result, it was confirmed that the mean runoff decreased with rainfall duration. The linearity was found to be weak for rainfall events greater than 100.0 mm. The results of this study can be used as data for water balance analysis and for formulating a water supply plan to establish water resource management of Andong dam.

임하댐 유역의 유사 거동 모의를 위한 SWAT 모델의 적용성 평가 (Evaluation of SWAT Applicability to Simulation of Sediment Behaviois at the Imha-Dam Watershed)

  • 박윤식;김종건;박준호;전지홍;최동혁;김태동;최중대;안재훈;김기성;임경재
    • 한국물환경학회지
    • /
    • 제23권4호
    • /
    • pp.467-473
    • /
    • 2007
  • Although the dominant land use at the Imha-dam watershed is forest areas, soil erosion has been increasing because of intensive agricultural activities performed at the fields located along the stream for easy-access to water supply and relatively favorable topography. In addition, steep topography at the Imha-dam watershed is also contributing increased soil erosion and sediment loads. At the Imha-dam watershed, outflow has increased sharply by the typhoons Rusa and Maemi in 2002, 2003 respectively. In this study, the Soil and Water Assessment Tool (SWAT) model was evaluated for simulation of flow and sediment behaviors with long-term temporal and spatial conditions. The precipitation data from eight precipitation observatories, located at Ilwol, Subi and etc., were used. There was no significant difference in monthly rainfall for 8 locations. However, there was slight differences in rainfall amounts and patterns in 2003 and 2004. The topographical map at 1:5000 scale from the National Geographic Information Institute was used to define watershed boundaries, the detailed soil map at 1:25,000 scale from the National Institute of Highland Agriculture and the land cover data from the Korea Institute of Water and Environment were used to simulate the hydrologic response and soil erosion and sediment behaviors. To evaluate hydrologic component of the SWAT model, calibration was performed for the period from Jan. 2002 to Dec. 2003, and validation for Jan. 2004 to Apr. 2005. The $R^2$ value and El value were 0.93 and 0.90 respectively for calibration period, and the $R^2$ value and El value for validation were 0.73 and 0.68 respectively. The $R^2$ value and El value of sediment yield data with the calibrated parameters was 0.89 and 0.84 respectively. The comparisons with the measured data showed that the SWAT model is applicable to simulate hydrology and sediment behaviors at Imha dam watershed. With proper representation of the Best Management Practices (BM Ps) in the SWAT model, the SWAT can be used for pre-evaluation of the cost-effective and sustainable soil erosion BMPs to solve sediment issues at the Imha-dam watershed. In Korea, the Universal Soil Loss Equation (USLE) has been used to estimate the soil loss for over 30 years. However, there are limitations in the field scale mdel, USLE when applied for watershed. Also, the soil loss changes temporarily and spatially, for example, the Imha-dam watershed. Thus, the SW AT model, capable of simulating hydrologic and soil erosion/sediment behaviors temporarily and spatially at watershed scale, should be used to solve the muddy water issues at the Imha-dam watershed to establish more effective muddy water reduction countermeasure.

댐의 홍수조절에 대한 공간적 영향 분석 (Spatial Influences of Flood Controls in Dam Operations)

  • 정용;김남원
    • 대한토목학회논문집
    • /
    • 제38권3호
    • /
    • pp.407-415
    • /
    • 2018
  • 본 연구는 댐의 시간당 홍수유출자료와 강우-유출모형의 모의를 통해 댐의 홍수조절에 대한 역할과 댐 상류 및 하류의 공간적인 영향에 대해 분석하였다. 이를 위한 연구지역으로 안동댐과 임하댐의 영향을 받는 낙동강 상류유역을 선정하였으며 1997년부터 2010년까지의 홍수사상 31개를 분석하였다. 댐의 홍수저감율(Flood Reduction Rate: FRR) 분석은 홍수규모가 커질수록 댐의 방류가 커져 댐의 홍수저감율이 작아질 것으로 예상하였으나 몇몇 사상을 제외하고 예상과 다른 결과를 보였다. 홍수크기와 홍수저감율의 관계성은 유출총량(Volume)이 첨두 유출량(Peak discharge)보다 잘 나타내었다. 선정 유역에서 가장 거리가 있는 성주수위관측소에서의 두 댐 영향은 댐상류 유역면적이 크고 홍수저감율이 큰 안동댐이 평균적으로 7% 크게 영향을 미쳤다. 성주수위관측소가 포함하는 유역을 기준으로 유역면적의 비와 홍수저감율의 비를 비교하면 댐의 홍수저감율은 면적의 비보다 대부분 작게 나타나는 것을 보였다. 댐의 홍수저감율의 영향은 댐이 포함하는 유역면적의 8.5배에 해당하는 유역면적에서 홍수저감율이 10% 이하로 떨어지는 것으로 분석되었으며 이는 남한강유역의 결과(7배)보다 크게 나타난 것이다.

GIS기반 지형수문유역모의 모형의 개발 및 적용 연구 (The Developmet and Application of GIS-Based Geomorpho-Hydrological Watershed Model (G2WMS))

  • 김홍태;신현석
    • 한국방재학회 논문집
    • /
    • 제9권1호
    • /
    • pp.123-133
    • /
    • 2009
  • 본 연구는 비선형 단위도인 지형형태-기후학적 단위도(GCUH)와 하도추적을 포함한 GIS기반 지형수문유역모의 모형 ($G^{2}WMS$)을 개발하고 실강우사상과 계측 산악유역에 적용함으로써 미계측 산악유역의 적용가능성을 검토하는 것이다. 대상유역을 소유역은 설마천, 중유역은 안동댐 유역으로 선정하여 실측단위도 비교, 실측홍수사상 비교를 단일유역과 분할유역으로 구분하여 검정 및 분석에 이용하였다. 결과적으로, 중유역 안동댐은 비선형 GCUH기법과 하도추적이 적용된 분할유역이 선형 전통적기법만 적용된 단일유역보다 산악유역 강우-유출 특성을 잘 반영함을 확인하였다.

토양수분 저류 기반의 간결한 준분포형 수문분할모형 개발 (Development of Parsimonious Semi-Distributed Hydrologic Partitioning Model Based on Soil Moisture Storages)

  • 최정현;김령은;김상단
    • 한국물환경학회지
    • /
    • 제36권3호
    • /
    • pp.229-244
    • /
    • 2020
  • Hydrologic models, as a useful tool for understanding the hydrologic phenomena in the watershed, have become more complex with the increase of computer performance. The hydrologic model, with complex configurations and powerful performance, facilitates a broader understanding of the effects of climate and soil in hydrologic partitioning. However, the more complex the model is, the more effort and time is required to drive the model, and the more parameters it uses, the less accessible to the user and less applicable to the ungauged watershed. Rather, a parsimonious hydrologic model may be effective in hydrologic modeling of the ungauged watershed. Thus, a semi-distributed hydrologic partitioning model was developed with minimal composition and number of parameters to improve applicability. In this study, the validity and performance of the proposed model were confirmed by applying it to the Namgang Dam, Andong Dam, Hapcheon Dam, and Milyang Dam watersheds among the Nakdong River watersheds. From the results of the application, it was confirmed that despite the simple model structure, the hydrologic partitioning process of the watershed can be modeled relatively well through three vertical layers comprising the surface layer, the soil layer, and the aquifer. Additionally, discussions were conducted on antecedent soil moisture conditions widely applied to stormwater estimation using the soil moisture data simulated by the proposed model.

치수능력 증대에 따른 저수지시스템 분석 (Analysis of Small reservoir system by Flood control ability augmentation)

  • 박기범;이순탁
    • 한국환경과학회지
    • /
    • 제14권11호
    • /
    • pp.995-1004
    • /
    • 2005
  • As a research establish reservoir safety operation for small dam systems. This study presents hydrologic analysis conducted in the Duckdong and Bomun dam watershed based on various rainfall data and increase inflow. Especially the Duckdong dam without flood control feature are widely exposed to the risk of flooding, thus it is constructed emergency gate at present. In this study reservoir routing program was simulation for basin runoff estimating using HEC-HMS model, the model simulation the reservoir condition of emergency Sate with and without. At the reservoir analysis results is the Duckdong dam average storage decrease $20\%$ with emergency gate than without emergency gate. Also, the Bomun dam is not affected by the Duckdong flood control augmentation.