• 제목/요약/키워드: Watershed Modeling System

검색결과 144건 처리시간 0.028초

불확실성을 고려한 통합유역모델링 (Integrated Watershed Modeling Under Uncertainty)

  • 함종화;윤춘경;다니엘 라욱스
    • 한국농공학회논문집
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    • 제49권4호
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    • pp.13-22
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    • 2007
  • The uncertainty in water quality model predictions is inevitably high due to natural stochasticity, model uncertainty, and parameter uncertainty. An integrated modeling system under uncertainty was described and demonstrated for use in watershed management and receiving-water quality prediction. A watershed model (HSPF), a receiving water quality model (WASP), and a wetland model (NPS-WET) were incorporated into an integrated modeling system (modified-BASINS) and applied to the Hwaseong Reservoir watershed. Reservoir water quality was predicted using the calibrated integrated modeling system, and the deterministic integrated modeling output was useful for estimating mean water quality given future watershed conditions and assessing the spatial distribution of pollutant loads. A Monte Carlo simulation was used to investigate the effect of various uncertainties on output prediction. Without pollution control measures in the watershed, the concentrations of total nitrogen (T-N) and total phosphorous (T-P) in the Hwaseong Reservoir, considering uncertainty, would be less than about 4.8 and 0.26 mg 4.8 and 0.26 mg $L^{-1}$, respectively, with 95% confidence. The effects of two watershed management practices, a wastewater treatment plant (WWTP) and a constructed wetland (WETLAND), were evaluated. The combined scenario (WWTP + WETLAND) was the most effective at improving reservoir water quality, bringing concentrations of T-N and T-P in the Hwaseong Reservoir to less than 3.54 and 0.15 mg ${L^{-1}$, 26.7 and 42.9% improvements, respectively, with 95% confidence. Overall, the Monte Carlo simulation in the integrated modeling system was practical for estimating uncertainty and reliable in water quality prediction. The approach described here may allow decisions to be made based on probability and level of risk, and its application is recommended.

통합 물환경 관리를 위한 개방형 모델링 플랫폼 고찰 (A Review of Open Modeling Platform Towards Integrated Water Environmental Management)

  • 이성학;신창민;이용석;조재필
    • 한국물환경학회지
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    • 제36권6호
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    • pp.636-650
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    • 2020
  • A modeling system that can consider the overall water environment and be used to integrate hydrology, water quality, and aquatic ecosystem on a watershed scale is essential to support decision-making in integrated water resources management (IWRM). In adapting imported models for evaluating the unique water environment in Korea, a platform perspective is becoming increasingly important. In this study, a modeling platform is defined as an ecosystem that continuously grows and provides sustainable values through voluntary participation- and interaction-of all stakeholders- not only experts related to model development, but also model users and decision-makers. We assessed the conceptual values provided by the IWRM modeling platform in terms of openness, transparency, scalability, and sustainability. I We also reviewed the technical aspects of functional and spatial integrations in terms of socio-economic factors and user-centered multi-scale climate-forecast information. Based on those conceptual and technical aspects, we evaluated potential modeling platforms such as Source, FREEWAT, Object Modeling System (OMS), OpenMI, Community Surface-Dynamics Modeling System (CSDMS), and HydroShare. Among them, CSDMS most closely approached the values suggested in model development and offered a basic standard for easy integration of existing models using different program languages. HydroShare showed potential for sharing modeling results with the transparency expected by model user-s. Therefore, we believe that can be used as a reference in development of a modeling platform appropriate for managing the unique integrated water environment in Korea.

금호강 유역의 수문환경에 대한 도시화의 영향: 모형 연구 (Impact of Urbanization on Hydrology of Geumho River Watershed: A Model Study)

  • 김재철;이지호;유철상;김상단
    • 한국물환경학회지
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    • 제23권4호
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    • pp.535-542
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    • 2007
  • The Geumho river watershed located in the middle of the Nakdong river has been threatened by high population growth and urbanization. Of concern specifically is the potential impact of future developments in the watershed on the reduction of base flow and the consequent risk of degradation of ecological habitats in Geumho river. Anticipated increase in imperviousness, on the other hand, is expected to elevate flood risk and the associated environmental damage. A watershed hydrology based modeling study is initiated in this study to assist in planning for sustainable future development in the Geumho river watershed. The Soil and Water Assessment Tool (SWAT) is selected to model the impact of urbanization in the Geumho river watershed on the hydrologic response thereof. The modeling results show that in general the likelihood that the watershed will experience high and low stream flows will increase in view of the urbanization so far achieved.

유역유출 변화에 따른 도암댐 저수지 수질 영향 예측 (Prediction of Water Quality Effect of Watershed Runoff Change in Doam Reservoir)

  • 노희진;김정민;김영도;강부식
    • 대한토목학회논문집
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    • 제33권3호
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    • pp.975-985
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    • 2013
  • 본 연구에서는 도암댐 유역을 대상으로 유역모형과 호소 및 하천모형의 연계를 통해 통합모델링시스템을 구축하였다. 국내 기후 특성상 하절기에 집중되는 강우로 인해 댐의 건설은 홍수조절, 용수확보 및 전력생산 등의 목적에 있어서 불가피하다. 특히 이러한 목적의 댐 형태가 하천과 하천 사이에 위치할 경우에는 연계된 구간을 하나의 유역으로 보고 이를 통합적으로 모의 및 관리 할 수 있는 시스템이 필요하다. 본 연구에서는 도암댐 유역을 대상으로 유역모형인 SWAT 모형을 구축하고 저수지 및 하천의 수리 및 수질 모의를 위해 EFDC-WASP 모형을 구축하였다. 또한 현재 도암댐 상부에서 시범가동 중인 수질개선장치 효율이 반영된 시나리오를 모의하여 통합모델링시스템의 적용성을 검토하였다.

시스템 다이내믹스를 이용한 하수재이용 유역의 일유출량 모의 (Modeling Daily Streamflow in Wastewater Reused Watersheds Using System Dynamics)

  • 정한석;성충현;박승우
    • 한국농공학회논문집
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    • 제56권6호
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    • pp.45-53
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    • 2014
  • This study presents a system dynamics modeling approach to simulate daily streamflow in a watershed including wastewater treatment plant which contributes to irrigation water supply. The conceptual system dynamics model considering the complex and dynamic hydrological processes in the watershed was developed. The model was calibrated and validated each for two years based on observed flow data. Model performances in terms of $E_{NS}$, RSR, PBIAS, and $R^2$ were 0.64, 0.60, -3.6 %, and 0.64 for calibration period, and 0.66, 0.58, -2.6 %, and 0.66 for validation period, respectively, showing an applicability on generating the daily streamflow. System dynamics modeling approach could help better understand the hydrological behavior of the watershed being reused wastewater for agriculture, by providing graphical dynamics of the hydrological processes as well as conventional rainfall-runoff model results.

수문모형(HMS)과 GIS자료를 이용한 오원천 유역의 유출량 산정에 관한 연구 (A Study on the Calculation of Runoff Discharge in the Ohown river Basin Using the GIS Data and Hydrology Model)

  • 김운중;정남선;김경수
    • 지질공학
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    • 제10권3호
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    • pp.263-272
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    • 2000
  • 본 연구의 목적은 GlS와 수문모형(HIS)을 이용하여 오원천 유역에서 강우와 유출량의 관계를 산정하기 위함이다. 본 연구에서 유역인자와 지형인자는 GIS를 이용하여 DEM으로부터 추출하였으며, 그 외의 자료들은 1:50,000 지형도를 이용하여 추출하였다. 수문모형에서 이용되는 변수인 유역면적(A), 유로연장, SCS CN 값 등은 대상유역에서 GIS을 이용하여 추출하였으며, 추출된 변수들을 수문모형에 적용하여 강우-유출량의 관계를 모의하는데 이용하였다. 그리고 계산된 유출량과 관측 유량을 이용하여 매개변수를 최적화하였다. 그리고 모의된 매개변수를 토대로 수문모형에 적용하여 강우-유출량 관계를 확정하였다. 그 결과 수문모형은 강우-유출량의 관계를 성공적으로 모의하였다.

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비점원오염 저감효과 분석을 위한 시단위 SWAT 유역 모델링 (Hourly SWAT Watershed Modeling for Analyzing Reduction Effect of Nonpoint Source Pollution Discharge Loads)

  • 장선숙;안소라;최중대;김성준
    • 한국농공학회논문집
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    • 제57권1호
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    • pp.89-97
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    • 2015
  • This study is to assess the effect of non-point source pollution discharge loads between tillage and no-tillage applications for upland crop areas using SWAT (Soil and Water Assessment Tool) watershed modeling. For Byulmi-cheon small rural catchment ($1.17km^2$) located in upstream of Gyeongan-cheon watershed, the rainfall, discharge and stream water quality have been monitored in the catchment outlet since 2011. The SWAT model was calibrated and validated in hourly basis using 19 rainfall events during 2011-2013. The average Nash-Sutcliffe model efficiency and $R^2$ (determination coefficient) for streamflow were 0.67 and 0.79 respectively. Using the 10 % surface runoff reduction from experiment results for no-tillage condition in field plots of 3 % and 8 % slopes under sesami cultivation, the soil saturated hydraulic conductivity for upland crop areas was adjusted from 0.001 mm/hr to 0.0025 mm/hr in average. Under the condition, the catchment sediment, T-N (total nitrogen, TN), and T-P (total phosphorus, TP) discharge loads were reduced by 6.9 %, 7.4 %, and 7.7 % respectively.

COMFARM을 이용한 농업용저수지 유역 수문 모델링 (Hydrologic Modeling for Agricultural Reservoir Watersheds Using the COMFARM)

  • 송정헌;박지훈;김계웅;류정훈;전상민;김진택;장태일;송인홍;강문성
    • 한국농공학회논문집
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    • 제58권3호
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    • pp.71-80
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    • 2016
  • The component-based modeling framework for agricultural water-resources management (COMFARM) is a user-friendly, highly interoperable, lightweight modeling framework that supports the development of watershed-specific domain components. The objective of this study was to evaluate the suitability of the COMFARM for the design and creation of a component-based modeling system of agricultural reservoir watersheds. A case study that focused on a particular modeling system was conducted on a watershed that includes the Daehwa and Dangwol serial irrigation reservoirs. The hydrologic modeling system for the study area was constructed with linkable components, including the modified Tank, an agricultural water supply and drainage model, and a reservoir water balance model. The model parameters were each calibrated for two years, based on observed reservoir water levels. The simulated results were in good agreement with the observed data. In addition, the applicability of the COMFARM was evaluated for regions where reservoir outflows, including not only spillway release but also return flow by irrigation water supply, substantially affect the downstream river discharge. The COMFARM could help to develop effective water-management measures by allowing the construction of a modeling system and evaluation of multiple operational scenarios customized for a specific watershed.

경안천 유역에 대한 MIKE SHE모형의 적용 (Application of MIKE SHE Modeling System to the Gyeongancheon Watershed)

  • 임상준;김현준;장철희
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.463-466
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    • 2003
  • The physically based distributed modelling system, MIKE SHE, has been applied to the upper sub-watershed of the Gyeongancheon watershed. A horizontal grid square was constructed to represent the spatial variations in watershed characteristics, landuse, soil, and rainfall distributions. The hydraulic model MIKE 11 was also coupled with the MIKE SHE to simulate river flow in the main and tributaries of Gyeongancheon. The simulated daily stream flow at the outlet of the watershed was compared to the observed data for the period of 1988 to 1991. The results demonstrated the applicability of a comprehensive hydrological modelling system as management tool for watershed and floodplain.

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Predicting the likelihood of impaired stream segments using Geographic Information System on Abandoned Mine Land in Gangwon Province

  • Lee, Ju-Young;Yang, Jung-Suk;Choi, Jae-Young
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2007년도 학술발표회 논문집
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    • pp.1081-1083
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    • 2007
  • The study in river basin has been performed for the identify water quality impaired stream segments, to create a priority ranking of those segments, and to calculate the heavy metal ion distribution for each impaired segment based on chemical and physical water quality standards. Two methods for modeling the potential area-specific heavy metal distribution are pursued in this study. First, a novel approach focuses on distance. Heavy metal distribution can be associated with a particular small geographic area. Based on the derived estimates an distribution map can be generated. Second, the approach is used the near watershed by means of kriging interpolation algorithm. These approaches provide an alternative distribution mapping of the area. The exposure estimates from both of these modeling methods are then compared with other environmental monitoring data. A GIS-based model will be used to mimic the hierarchical stream structure and processes found in natural watershed. Specifically, the relationship between landscape variables and reach scale habitat conditions most influential found in the Abandoned mine will be explored.

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