• 제목/요약/키워드: rainfall-runoff modeling

검색결과 157건 처리시간 0.027초

분포형 강우-유출 모형의 매개변수 불확실성에 대한 시.공간적 유역 응답 (Catchment Responses in Time and Space to Parameter Uncertainty in Distributed Rainfall-Runoff Modeling)

  • 이기하;타카라 카오루;타치카와 야수토;사야마 타카히로
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.2215-2219
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    • 2009
  • For model calibration in rainfall-runoff modeling, streamflow data at a specific outlet is obviously required but is not sufficient to identify parameters of a model since numerous parameter combinations can result in very similar model performance measures (i.e. objective functions) and indistinguishable simulated hydrographs. This phenomenon has been called 'equifinality' due to inherent parameter uncertainty involved in rainfall-runoff modeling. This study aims to investigate catchment responses in time and space to various uncertain parameter sets in distributed rainfall-runoff modeling. Seven plausible (or behavioral) parameter sets, which guarantee identically-good model performances, were sampled using deterministic and stochastic optimization methods entitled SCE and SCEM, respectively. Then, we applied them to a computational tracer method linked with a distributed rainfall-runoff model in order to trace and visualize potential origins of streamflow at a catchment outlet. The results showed that all hydrograph simulations based on the plausible parameter sets were performed equally well while internal catchment responses to them showed totally different aspects; different parameter values led to different distributions with respect to the streamflow origins in space and time despite identical simulated hydrographs. Additional information provided by the computational tracer method may be utilized as a complementary constraint for filtering out non-physical parameter set(s) (or reducing parameter uncertainty) in distributed rainfall-runoff modeling.

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HWSD와 정밀토양도를 이용한 유출해석시 토양 매개변수 특성 비교 평가 (Soil Related Parameters Assessment Comparing Runoff Analysis using Harmonized World Soil Database (HWSD) and Detailed Soil Map)

  • 최윤석;정영훈;김주훈;김경탁
    • 한국농공학회논문집
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    • 제58권4호
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    • pp.57-66
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    • 2016
  • Harmonized World Soil Database (HWSD) including the global soil information has been implemented to the runoff analysis in many watersheds of the world. However, its accuracy can be a critical issue in the modeling because of the limitation the low resolution reflecting the physical properties of soil in a watershed. Accordingly, this study attempted to assess the effect of HWSD in modeling by comparing parameters of the rainfall-runoff model using HWSD with the detailed soil map. For this, Grid based Rainfall-runoff Model (GRM) was employed in the Hyangseok watershed. The results showed that both of two soil maps in the rainfall-runoff model are able to well capture the observed runoff. However, compared with the detailed soil map, HWSD produced more uncertainty in the GRM parameters related to soil depth and hydraulic conductivity during the calibrations than the detailed soil map. Therefore, the uncertainty from the limited information on soil texture in HWSD should be considered for better calibration of a rainfall-runoff model.

지형공간 특성자료를 이용한 하천유역의 강우-유출해석 (Rainfall-Runoff Analysis of River Basin Using Spatial Data)

  • 안승섭;이증석;도준현
    • 한국환경과학회지
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    • 제12권9호
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    • pp.949-955
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    • 2003
  • The subject basin of the research was the basin of Yeongcheon Dam located in the upper reaches of the Kumho River. The parameters of the model were derived from the results of abstracting topological properties out of rainfall-runoff observation data about heavy rains and Digital Elevation Modeling(DEM) materials. This research aimed at suggesting the applicability of the CELLMOD Model, a distribution-type model, in interpreting runoff based on the topological properties of a river basin, by carrying out runoff interpretation far heavy rains using the model. To examine the applicability of the model, the calculated peaking characteristics in the hydrograph was analyzed in comparison with observed values and interpretation results by the Clark Model. According to the result of analysis using the CELLMOD Model proposed in the present research for interpreting the rainfall-runoff process, the model reduced the physical uncertainty in the rainfall-runoff process, and consequently, generated improved results in forecasting river runoff. Therefore it was concluded that the algorithm is appropriate for interpreting rainfall-runoff in river basins. However, to enhance accuracy in interpreting rainfall-runoff it is necessary to supplement heavy rain patterns in subject basins and to subdivide a basin into minor basins for analysis. In addition, it is necessary to apply the model to basins that have sufficient observation data, and to identify the correlation between model parameters and the basin characteristics(channel characteristics).

객체지향형 수문 모델링 시스템을 이용한 금강유역 분포형 강우-유출 시스템의 개발 (Development of a Distributed Rainfall-Runoff System for the Guem River Basin Using an Object-oriented Hydrological Modeling System)

  • 이기하;타카라 카오루;정관수;김정엽;전자훈
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.149-153
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    • 2009
  • Physics-based distributed rainfall-runoff models are now commonly used in a variety of hydrologic applications such as to estimate flooding, water pollutant transport, sedimentation yield and so on. Moreover, it is not surprising that GIS has become an integral part of hydrologic research since this technology offers abundant information about spatial heterogeneity for both model parameters and input data that control hydrological processes. This study presents the development of a distributed rainfall-runoff prediction system for the Guem river basin ($9,835km^2$) using an Object-oriented Hydrological Modeling System (OHyMoS). We developed three types of element modules: Slope Runoff Module (SRM), Channel Routing Module (CRM), and Dam Reservoir Module (DRM) and then incorporated them systemically into a catchment modeling system under the OHyMoS. The study basin delineated by the 250m DEM (resampled from SRTM90) was divided into 14 midsize catchments and 80 sub-catchments where correspond to the WAMIS digital map. Each sub-catchment was represented by rectangular slope and channel components; water flows among these components were simulated by both SRM and CRM. In addition, outflows of two multi-purpose dams: Yongdam and Daechung dams were calculated by DRM reflecting decision makers' opinions. Therefore, the Guem river basin rainfall-runoff modeling system can provide not only each sub-catchment outflow but also dam inand outflow at one hour (or less) time step such that users can obtain comprehensive hydrological information readily for the effective and efficient flood control during a flood season.

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MIKE SWMM 모형을 이용한 도시유역 유출분석에 관한 연구 (Runoff Analysis of Urban Watershed using MIKE SWMM Model)

  • 김종석;안재현;오태석;문영일
    • 한국수자원학회논문집
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    • 제38권11호
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    • pp.907-916
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    • 2005
  • 도시유역의 유출분석을 위하여 국내에서 많이 사용하고 있는 모형들로는 ILLVDAS, SWMM이 대표적이라고 할 수 있다. 그러나 국내의 대부분의 도시하천의 경우 합류식의 배수계통을 가지고 있어, 홍수시에 하수관거용량을 초과하는 우수량은 하천을 통해 배수가 되고 있다. 이러한 배수계통을 갖는 하천에 대하여 대상유역의 배수관망 자료 부족과 Modeling의 어려움으로 인해 도시유출모형이 아닌 HEC-HMS 모형과 같은 유역추적법을 통해 유출분석이 이루어지고 있다. 또한 기존 논문에서 제시한 도시유출모형에 하도추적을 결합한 강우-유출 모의는 정확성 결여 및 번거로운 단점이 있다. 따라서 본 논문에서는 보다 안정적인 해석 모형인 MIKE SWMM 모형을 사용하여 과거 침수자료와 DEM 자료 및 수치 배수관망 자료를 통한 유역 및 배수관망 자료를 구축하고 유역에 대해서는 Runoff Block을 사용하고, 하수관거와 본류에 대해서는 Dynamic 방정식을 이용한 Extran Block을 적용하여 유출분석을 실시하고 그 결과를 기존의 방법들과 비교하여 각각의 장단점 및 적용성을 밝히고 개선방향등을 제시하고자 하였다.

공간 분포된 강우를 이용한 유출 해석 (Runoff Analysis using Spatially Distributed Rainfall Data)

  • 이종형;윤석환
    • 한국농공학회논문집
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    • 제47권6호
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    • pp.3-14
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    • 2005
  • Accurate estimation of the spatial distribution of rainfall is critical to the successful modeling of hydrologic processes. The objective of this study is to evaluate the applicability of spatially distributed rainfall data. Spatially distributed rainfall was calculated using Kriging method and Thiessen method. The application of spatially distributed rainfall was appreciated to the runoff response from the watershed. The results showed that for each method the coefficient of determination for observed hydrograph was $0.92\~0.95$ and root mean square error was $9.78\~10.89$ CMS. Ordinary Kriging method showed more exact results than Simple Kriging, Universal Kriging and Thiessen method, based on comparison of observed and simulated hydrograph. The coefncient of determination for the observed peak flow was 0.9991 and runoff volume was 0.9982. The accuracy of rainfall-runoff prediction depends on the extent of spatial rainfall variability.

호우 방향성에 의한 유역 유출응답 특성 평가 (Evaluating characteristics of runoff responses by rainfall direction)

  • 박창열;유철상
    • 한국수자원학회논문집
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    • 제50권5호
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    • pp.347-358
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    • 2017
  • 본 연구에서는 호우 방향성에 의한 유역 유출응답 특성을 살펴보았다. 이를 위해 호우와 하천망의 방향적 특성을 확률밀도함수로 정량화하였고, 각 방향성 함수를 회선적분하여 호우 방향성의 고려 유무에 따른 유출응답 특성을 비교하였다. 그 결과, 호우 방향성을 고려한 유출모의 결과는 호우 방향성을 고려하지 않은 경우에 비해 관측 유출자료와 더욱 유사함을 알 수 있었다. 이러한 결과는 호우 방향성을 고려한 유역 반응함수에 의해 유출모의 결과가 보다 개선될 수 있음을 나타낸다. 따라서 본 연구성과는 호우 방향성에 따른 유역 반응함수의 비선형성을 고려함으로써 유출모의의 불확실성을 줄이는데 기여할 수 있을 것으로 기대된다.

댐 하류 지점에 대한 분포형 모형의 적용성 평가 (Evaluation of the Applicability of a Distributed Model at the Downstream of Dam)

  • 최윤석;김경탁;심명필
    • 한국수자원학회논문집
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    • 제42권9호
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    • pp.703-713
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    • 2009
  • 유역에서의 댐은 이수와 치수 측면에서 매우 큰 역할을 담당하고 있으며, 특히 집중호우 기간 동안의 댐 방류는 강우에 의해서 발생되는 유출과 더불어 댐 하류의 홍수조절에 직접적인 영향을 미치고 있다. 본 연구에서는 댐 방류와 강우에 의한 유출의 영향을 동시에 받는 댐 하류 지점에 대한 유출모의를 위해서 HyGIS (Hydro Geographic Information System) 환경에서 운영되는 분포형 강우-유출 모형인 GRM (Grid based Rainfall-runoff Model)을 적용하고 이에 대한 적용성을 평가하고자 한다. 대상 유역은 한강 수계의 여주 수위관측소 상류로 선정하였으며, 충주 조정지댐과 횡성댐의 방류량 및 강우의 영향을 반영하여 유출모의를 수행하고, 이를 여주 수위관측소에 대해서 검증 하였다. 모형의 적용결과 모의된 유출 수문곡선은 관측 수문곡선을 잘 재현하였으며, 이를 통해서 GRM 모형은 댐방류와 강우가 유역유출에 미치는 영향을 적절히 모의할 수 있는 것으로 나타났다.

SWAT 모형을 이용한 대유역 강우-유출해석: 메콩강 유역을 중심으로 (Large Scale Rainfall-runoff Analysis Using SWAT Model: Case Study: Mekong River Basin)

  • 이대업;유완식;이기하
    • 한국농공학회논문집
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    • 제60권1호
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    • pp.47-57
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    • 2018
  • This study implemented the rainfall-runoff analysis of the Mekong River basin using the SWAT (Soil and Water Assessment Tool). The runoff analysis was simulated for 2000~2007, and 11 parameters were calibrated using the SUFI-2 (Sequential Uncertainty Fitting-version 2) algorithm of SWAT-CUP (Calibration and Uncertainty Program). As a result of analyzing optimal parameters and sensitivity analysis for 6 cases, the parameter ALPHA_BF was found to be the most sensitive. The reproducibility of the rainfall-runoff results decreased with increasing number of stations used for parameter calibration. The rainfall-runoff simulation results of Case 6 showed that the RMSE of Nong Khai and Kratie stations were 0.97 and 0.9, respectively, and the runoff patterns were relatively accurately simulated. The runoff patterns of Mukdahan and Khong Chaim stations were underestimated during the flood season from 2004 to 2005 but it was acceptable in terms of the overall runoff pattern. These results suggest that the combination of SWAT and SWAT-CUP models is applicable to very large watersheds such as the Mekong for rainfall-runoff simulation, but further studies are needed to reduce the range of modeling uncertainty.

Assessing Unit Hydrograph Parameters and Peak Runoff Responses from Storm Rainfall Events: A Case Study in Hancheon Basin of Jeju Island

  • Kar, Kanak Kanti;Yang, Sung-Kee;Lee, Jun-Ho
    • 한국환경과학회지
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    • 제24권4호
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    • pp.437-447
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    • 2015
  • Estimation of runoff peak is needed to assess water availability, in order to support the multifaceted water uses and functions, hence to underscore the modalities for efficient water utilization. The magnitude of storm rainfall acts as a primary input for basin level runoff computation. The rainfall-runoff linkage plays a pivotal role in water resource system management and feasibility level planning for resource distribution. Considering this importance, a case study has been carried out in the Hancheon basin of Jeju Island where distinctive hydrological characteristics are investigated for continuous storm rainfall and high permeable geological features. The study aims to estimate unit hydrograph parameters, peak runoff and peak time of storm rainfalls based on Clark unit hydrograph method. For analyzing observed runoff, five storm rainfall events were selected randomly from recent years' rainfall and HEC-hydrologic modeling system (HMS) model was used for rainfall-runoff data processing. The simulation results showed that the peak runoff varies from 164 to 548 m3/sec and peak time (onset) varies from 8 to 27 hours. A comprehensive relationship between Clark unit hydrograph parameters (time of concentration and storage coefficient) has also been derived in this study. The optimized values of the two parameters were verified by the analysis of variance (ANOVA) and runoff comparison performance were analyzed by root mean square error (RMSE) and Nash-Sutcliffe efficiency (NSE) estimation. After statistical analysis of the Clark parameters significance level was found in 5% and runoff performances were found as 3.97 RMSE and 0.99 NSE, respectively. The calibration and validation results indicated strong coherence of unit hydrograph model responses to the actual situation of historical storm runoff events.