• 제목/요약/키워드: daily runoff

검색결과 279건 처리시간 0.027초

분포형 유역 일유출 모형의 개발 및 적용성 검토 (Development of a Grid-based Daily Watershed Runoff Model and the Evaluation of Its Applicability)

  • 홍우용;박근애;정인균;김성준
    • 대한토목학회논문집
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    • 제30권5B호
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    • pp.459-469
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    • 2010
  • 본 연구에서는 GIS 공간자료(수치표고모델, 토지이용도, 토양도)와 Terra MODIS(Moderate Resolution Imaging Spectroradiometer) 위성영상에 의한 식생활력도를 이용하여 유역의 일단위 유출량을 모의하는 격자기반의 분포형 일유출 모형을 개발하고 그 적용성을 평가하였다. 모형은 격자단위로 지표유출, 중간유출 및 기저유출, 증발산량 그리고 토양수분의 시간적 변화와 공간적 분포를 모의할 수 있다. 모형은 크게 유출, 증발산, 토양수분의 3개 주요모듈로 구성하였다. 유출은 강우전의 토양수분을 추적하여 지표하 저류능을 계산하므로서, 총 유출체적에서 각 유출량을 배분하는 감수곡선을 도입하여 모의하도록 하였으며, 증발산은 MODIS 엽면적지수(Leaf Area Index; LAI)를 고려한 Penman-Monteith 증발산량을 산정하도록 하였다. 매일의 토양수분은 전일의 토양수분에서 당일의 유출량과 증발산량을 계산하는 물수지 방정식을 이용하여 추적하도록 하였다. 이 모형에 대한 적용성 평가는 유역면적 930 $km^2$의 용담댐 유역을 대상으로 수행하였다. 공간해상도를 1 km로 맞춘 GIS 입력자료(토지피복도, 토양도, 경계자료 등)와 RS 입력자료(LAI)를 구축하였으며, 2000년부터 2008년까지의 기상자료를 수집하여 IDW 방법으로 공간분포화 하여 모형에 적용하였다. 검보정은 유역 출구 지점의 유출량 자료를 모의치와 비교하여 수행되었고, 보정결과에 따른 모형의 적합성과 상관성을 판단하기 위한 목적함수로는 결정계수($R^2$)와 평균제곱근오차 (RMSE : Root Mean Square Error)를 사용하였으며, 모형의 효율성 검증을 위해 Nash와 Sutcliffe(1970)가 제안한 모형 효율성 계수를 사용하였다. 유출량에 대한 Nash-Sutcliffe 모형효율은 0.78~0.93로 모의치가 실측치의 경향을 잘 표현하는 것으로 나타났다. 유출량 분포도는 강우와 토양에 매우 민감하게 모의 되었다.

중소유역의 일별 용수수급해석을 위한 하천망모형의 개발(I) - 중소유역의 일유출량 추정 - (A Streamflow Network Model for Daily Water Supply and Demands on Small Watershed (1) -Simulating Daily Streamflow from Small Watersheds-)

  • 허유만;박창헌;박승우
    • 한국농공학회지
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    • 제35권1호
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    • pp.40-49
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    • 1993
  • The Objectives of this paper were to develop a modified tank model that is capable of simulating daily streamflow from a small watershed using daily watershed evapotranspiration and to test the applicability of the model to different watersheds. Tank model was restructured to consist of three series of tanks, each of which may mathematically reflect watershed runoff mechanisms from different components of surface runoff, interflow, and baseflow. And pan evaporation was correlated to potential evapotranspiration estimated from a combination method, and was multiplied by monthly crop and landuse coefficients, and watershed storage coefficient to estimate the watershed evapotranspiration losses. Ten watersheds were selected to calibrate model parameters that were defined using an optimization scheme, and the results were correlated with watershed parameters. Simulated daily runoff was compared to the observed ones from the tested watersheds. The simulating results were in good agreement with the observed values when optimal and calibrated parameters were used. Ungaged conditions were also applied to compare simulated values to the observed. And the results were in fair conditions for all the tested watersheds which differ considerably in their sizes, landuse types, and physiological features.

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관개용 저수지의 일별유입량과 방류량의 모의발생(I)-선형 저수지 모형에 의한 유입량의 추정- (Simulating Daily Inflow and Release Rates for Irrigation Reservoirs (1) -Modeling Inflow Rates by A Linear Reservoir Model-)

  • 김현영;박승우
    • 한국농공학회지
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    • 제30권1호
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    • pp.50-62
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    • 1988
  • This study refers to the development of a hydrologic model simulating daily inflow and release rates for irrigation reservoirs. A daily - based model is needed for adequate operation of an irrigation reservoir sufficing the water demand for paddy fields which is closely related to meteorological conditions. Inflow rates to a reservoir need to be accurately described, which may be simulated using a hydrologic model from daily rainfall data. And the objective of this paper is to develop, test, and apply a hydrologic model for daily runoff simmulation. A well - known tank model was selected and modified to simulate daily inflow rates. The model parameters were calibrated using observed runoff data from twelve watersheds, Relationships between the parameters and the watershed characteristics were derived by a multiple regression analysis. The simulation results were in agreement with the data. The inflow model was found to simulate low flow conditions more accurately than high flow conditions, which may be adequate for water resources utilization.

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유역물수지모형(WWASS)에 의한 임의 하천지점에서 일별 유출량의 모의발생 (Daily Runoff Simulation at River Network by the WWASS(Watershed Water balance And Streamflow Simulation) Model)

  • 김현영;황철상;강석만;이광양
    • 한국수자원학회논문집
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    • 제31권4호
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    • pp.503-512
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    • 1998
  • 여러 소하천으로 이루어지는 수계에서 복잡한 물수지 요소가 여러 지점에서 발생하는 하천 말단 특히 감조지역에 수자원 시설물을 설치하고자 할 때 유입량의 추정이 문제가 되며 물수지 요소의 변동에 따라 말단의 유출량이 영향을 받는다. 이러한 문제는 하천의 유입.유출요소의 정형화를 필요로하며 소유역의 일유출량 추정 모형을 필요로 한다. WWASS 모형은 일별 유입량과 펼요수량 추정 모형으로써 DIROM을 사용하고 있고 물수지 요소들을 하천의 조절점(control point)을 중심으로 처리하도록 되어있다. WWASS 모형을 새만금지구 유역에서 보정 과 검정을 거친 후 만경강과 동진강 하구지점에 적용한 결과 바람직한 결과를 얻을 수 있었다.

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탱크모형을 이용한 일별 오염부하량의 산정 (Determination of Daily Pollutant Loadings Using TANK Model)

  • 엄명철;권순국
    • 한국농공학회지
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    • 제38권3호
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    • pp.92-100
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    • 1996
  • In order to control the water quality in rivers or lakes, it is needed to evaluate accurate amount of pollutant loadings from watersheds. The daily pollutant loadings were simulated using the pollutant loading calculation model which was composed of mathematical equations superimposed on the TANK model. The calibration of runoff and pollutant loading parameters were carried out with observed data, using a trial-and-error method. In addition, the proposed model was applied to evaluate its applicability for the representative watershed, the Bokha river watershed, Icheon city, Korea. The parameters of SS and T-P showed large values in the first tank while T-N showed large in the second tank. As a result of simulating the daily pollutant loadings by the pollutant loading calculation model, all of SS, T-N and T-P loadings were increased or decreased according to the amount of runoff discharge. Especially, it was apparent that SS and T-P loadings were significantly influenced by the runoff variation when it was rain. These results could partly explain that SS and T-P would occur mainly from the surface runoff while T-N would occur from both surface and subsurface flow.

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낙동강 유역에 대한 일별 유달부하량 산정모델개발 I. 모델식의 보정 및 검증 (Development of the Estimation Model on Daily Pollutant Loads for the Watersheds in the Nakdong River Basin I. Correction and Verification for the Model)

  • 윤영삼;김문수;유재정;이혜진;이준배;양상용
    • 한국환경과학회지
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    • 제16권2호
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    • pp.203-210
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    • 2007
  • The delivery load data obtained from Nakdong river basin are used for developing the model estimating the daily delivery load on the main side streams of Nakdong River. The developed model assesses the daily contamination loads of the main thirteen side streams that contribute to the main stream of Nakdong river. It is developed that the model using the simplified equation that can estimate the daily delivery loads on the side main streams of Nakdong river for a period of having no data of the water quality and flow. The developed model for estimating the daily delivery loads from the main side streams in Nakdong river basin on each item such as BOD, TN, and TP is expressed as Daily delivery load ($\frac{kg}{day}$) = Production load $(\frac{kg}{day}){\times}(1-{\alpha}){\times}(\frac{daily\;runoff}{average\;runoff\;per\;year}){\gamma}$. The estimated values obtained by using the model are almost fit to the calculated values (real data) that have been acquired from the thirteen main side streams in Nakdong river basin. The correlation coefficient values, R, that indicate the correlation between the estimated and the calculated show over 0.7 that mean the estimated values from the used model are adapted to the real data except TN values of Nam-river, Hwang-river, Gam-river, We-river. Especially, the correlation of TP values between the estimated and the calculated implies quite a creditable data to use.

AnnAGNPS 모형의 강우-유출해석력 평가 (Assessment of AnnAGNPS Model in Prediction of a Rainfall-Runoff Relationship)

  • 최경숙
    • 한국지리정보학회지
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    • 제8권2호
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    • pp.125-135
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    • 2005
  • 비점오염 발생은 강우에 의한 지표면 유출과 밀접한 관련이 있는 관계로 모형을 이용한 비점오염 해석은 먼저 유역의 강우-유출의 명확한 관계해석을 필수조건으로 한다. 본 연구는 비점오염 모의에 많이 사용되고 있는 AnnAGNPS 모형의 다양한 유역특성별 강우-유출해석능력을 평가해 보았다. 결과를 통해 AnnAGNPS 모형은 대유역 모의에 적합하며 소유역 및 강우에 대한 유역의 반응시간이 짧은 불투수층이 많은 유역에 적용하는 것은 적합하지 않은 것으로 드러났다. 특히, AnnAGNPS 모형은 모의에 사용하는 시간간격 이 일단위(daily basis)이므로 하루보다 짧은 지속시간의 복합첨두치(mutiple peak flow)를 가지는 강우사상을 표현하는 기능이 없으며 따라서 첨두유량 예측에 상당한 오차 발생의 원인으로 드러났다. 또한 유출해석에 사용되는 CN방법은 지역적인 특성에 맞게 구축된 CN정보가 없는 관계로 초기치 선택에 신중함이 요구되며, 강우의 분포형과 더불어 반드시 주요 검정대상으로 다루어져야 할 매개변수였다.

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유역별 가용수자원의 추정 연구 (A Study on the Estimation of the Available Water Resources in Korea)

  • 최종근;윤세의;이원환
    • 물과 미래
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    • 제16권1호
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    • pp.49-56
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    • 1983
  • 본 연구는 5대하천유역에서 얻어진 수위일류량곡선을 이용하여 연평균 총유출량을 산정하고 한국본토 부분에 있어서의 유출에 대한 연평균 가용수자원량을 추정제시한 것이다. 본 연구를 통하여 얻어진 성과는 아래와 같다. 1) 조서지역을 제외한 본토내부에서의 가용수자원 총량은 상한치로서 269억톤, 하한치로서는 244억톤으로서 평균 가용수자원 총량은 256억톤으로 추정되었다. 2) 장기유출로 본 5대 하천유역(한강, 금강, 낙동강, 영산강, 섬진강)의 연평균 유출율은 약 58%로 산정되었다. 3) V권역의 연평균유출율을 모노노베(물부)가 제시한 값을 이용하여 80%로 가정할 경우 전국 연평균 유출율은 57%로 추정되었고, V권역을 분석에서 제외할 경우에는 약 56%로 산정되었다. 3) V권역의 연평균유출율을 모노노베(물부)가 제시한 값을 이용하여 80%로 가정할 경우 전국 연평균 유출율은 57%로 추정되었고, V권역을 분석에서 제외할 경우에는 약 56%로 산정되었다.

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농촌유역의 강우-유출분석 (Rainfall-Runoff Analysis of a Rural Watershed)

  • 김지용;박기중;정상옥
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2001년도 학술발표회 발표논문집
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    • pp.93-98
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    • 2001
  • This study was performed to analyse the rainfall and the rainfall-runoff characteristics of a rural watershed. The Sangwha basin($105.9km^{2}$) in the Geum river system was selected for this study. The arithmetic mean method, the Thiessen's weighing method, and the isohyetal method were used to analyse areal rainfall distribution and the Huff's quartile method was used to analyse temporal rainfall distribution. In addition, daily runoff analyses were peformed using the DAWAST and tank model. In the model calibration, the data from June through November, 1999 were used. In the model calibration, the observed runoff depth was 513.7mm and runoff rate was 45.2%, and the DAWAST model simulated runoff depth was 608.6mm and runoff rate was 53.5%, and the tank model runoff depth was 596.5mm and runoff rate was 52.5%, respectively. In the model test, the data from June through November, 2000 were used. In the model test, the observed runoff depth was 1032.3mm and runoff rate was 72.5%, and the DAWAST model simulated runoff depth was 871.6mm and runoff rate was 61.3%, and the tank model runoff depth was 825.4mm and runoff rate was 58%, respectively. The DAWAST and tank model's $R^{2}$ and RMSE were 0.85, 3.61mm, and 0.85, 2.77mm in 1999, and 0.83, 5.73mm, and 0.87, 5.39mm in 2000, respectively. Both models predicted low flow runoff better than flood runoff.

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장단기유출 양용저유 탱크 모델의 개발에 관한 연구 (II) (Studies on the Development of Storage Tank Model for both Long and Short Terms Runoff (II))

  • 이순혁;박명근
    • 한국농공학회지
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    • 제33권2호
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    • pp.51-60
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    • 1991
  • The main objective of this study is to examine the adaptability for the large watershed of the storage tank model which can be applied for the analysis of both long and short terms runoff developed on the basis of hydrologic data for a smaH mountaineous watershed. The results obtained in this study are summarized as follows ; 1. Areal rainfalls of the Dae Chong watershed were calculated by Thiessen method composed of 9 Thiessen networks. 2. Optimal parameters for two types, Model A and Model B of tank models were derived through calibration procedure by standardized Powell method. 3. Monthly simulated flows of Model B are seemed to be closer to the monthly observed than those of Model A during calibration period in the long terms runoff. 4. Relative errors for the simulated flood flows of Model B were apperaed as lower percentage to the observed than those of Model A during calibration period in the short terms runoff. 5. Daily simulated hydrographs of Model B are seemed to be closer to the daily observed than those of Model A during verification period in the long terms runoff. Significance of Model B was highly acknowledged in comparison with Model A in the correlation analysis between annual observed and annual simulated runoff. 6. Reproducibility of simulated flows for Model B is generally seemed to be better than that of Model A during calibration period in the short terms runoff. 7. It can be concluded that reproducibility of Model B is superior to that of Model A in the long and short terms runoff even a large watershed like the result of the small one. 8. It was verified that adaptability for the large watershed of Model B is superior to that of Model A between the two models which were developed by a small watershed characteristics for both long and short terms runoff. 9. Further study for getting a suitable tank model is desirable to be established by the decision, calibration method of initial parameters of tank model and by additional application of another watershed with different watersheds and meterological characteristics.

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