• Title/Summary/Keyword: SSARR

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Runoff Characteristics using RRFS on Geum River Basin (RRFS에 의한 금강유역의 유출특성)

  • Maeng, Seung-Jin;Lee, Hyeon-Gyu;Hwang, Man-Ha;Koh, Ick-Hwan
    • Proceedings of the Korea Contents Association Conference
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    • 2006.11a
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    • pp.408-412
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    • 2006
  • Growing needs for efficient management of water resources urge integrated management of whole basin. As one of the tools for supporting above tasks, this study aims to indicate a hydrologic model that can simulate the streamflow discharges at some control points located both upper and down stream of dams. For the development and utilization of non analysis model, relevant basin information including historical precipitation and river water stage data, geophysical basin characteristics, and water intake and consumptions needs to be collected and stored into the hydrologic database of Integrated Real-Time Water Information System. The well-known SSARR model was selected for basis of continuous daily runoff model for forecasting short and long-term national river flows in this paper.

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Daily Runoff Simulation and Analysis Using Rainfall-Runoff Model on Nakdong River (강우-유출모형에 의한 낙동강수계 일유출모의와 분석)

  • Maeng Sung Jin;Lee Soon Hyuk;Ryoo Kyoung Sik;Song Gi Heon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2005.05b
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    • pp.619-622
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    • 2005
  • 적용대상 유역은 낙동강수계로 하였으며 소유역 분할은 총 25개로 하였으며, 강우관측소의 선정과 Thiessen 계수의 산정은 최근에 한국수자원공사에서 새로 추가한 강우관측소를 위주로 대상 연도별로 달리하여 강우관측소를 선정하였다. 강우자료의 결측치는 RDS 방법을 사용하여 보완하였다. 대상연도별 소유역별로 일간 유역 평균 강우량을 산정하였다. 적용 모형의 선정은 한국수자원공사 실무부서에서의 적용사례가 빈번한 SSARR 모형을 최종적으로 선정하였다. SSARR 모형의 입력자료를 물리적 매개변수, 수문기상 매개변수 및 내부처리 매개변수로 구분하여 구축하였고 매개변수의 민감도분석과 함께 모형의 보정을 실시하였다. 민감도 분석 결과, 유역유출과 관련된 매개변수에서는 고수시와 저수시의 경우 지표수와 복류수의 분리하는 매개변수에서 민감도가 크게 나타났다. 저수시의 경우 지하수 중 회귀지하수가 차지하는 비율이 크게 나타났고, 지표수, 복류수, 지하수 및 회귀지하수의 저류시간에서 비교적 큰 민감도를 나타내었다. 1983년부터 2003년까지 21개년에 걸쳐 25개 소유역별로 일평균 자연유출량을 산정하여 이를 이용한 반순, 순, 월 및 연평균 자연유출량을 산정하였다.

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Analysis of Simulated Long-term Runoff Effects due to Various Small Scale Irrigation Facilities (장기유출모의시 유역내 소규모 수리시설물의 영향)

  • Ryoo, Kyong-Sik;Hwang, Man-Ha;Lee, Sang-Jin;Sung, Young-Do
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1334-1338
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    • 2008
  • 최근 전 세계적으로 효율적인 유역내 수자원을 관리하기 위한 목적에서 하천 및 유역의 장기유출분석에 관한 많은 연구가 이루어지고 있는데 이러한 장기유출은 단기유출과 달리 인위적인 요소에 의해 많은 영향을 받는다. 인위적인 요소 중에 가장 대표적인 것이 저수지와 같은 저류시설물이다. 따라서 강우-유출모형을 통한 장기유출량 모의시에 이러한 인위적인 저류시설물의 영향을 모두 시스템화하여 유출모형에 반영하는 것은 바람직하나 현실적으로 매우 어려운 실정이다. 따라서 본 연구는 소규모 수리시설물이 장기유출에 끼치는 영향에 대해 시 공간적으로 상세히 분석하고 또한 분석된 결과를 토대로 장기유출 모형에 소규모 수리 시설물의 영향을 반영할 수 있도록 모형을 재구성함으로서 유역의 장기유출에 대한 모의결과의 신뢰도를 증진시키는 것이 본 연구의 목적이다. 본 연구에서는 금강유역의 소규모 수리시설물 현황을 파악하고 각 수리시설물별로 하천유량에 끼치는 영향을 분석한 후, 수리시설물의 영향을 고려할 수 있도록 SSARR모형을 구축하였다. 수리시설물에 의한 영향평가를 실시한 결과, 공간적으로는 저수지가 많이 분포한 소유역에서, 시기적으로는 강우가 풍부했던 2003년을 제외한 2/4분기에서 에러발생빈도가 크게 나타났다. 따라서 본 연구에서는 수리시설물의 영향평가를 토대로 유출량과 수리시설물의 상관식을 유도하였으며 이를 이용한 주요지점 유출량을 모의하였다. 그 결과 용담댐, 수통, 호탄, 옥천 및 대청댐지점의 모의유량이 상대적으로 수리시설물을 고려하지 않은 경우보다 에러와 오차가 크게 감소하였다.

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Impact of Climate Change on Runoff Analysis in the Geum River Basin (금강 유역에서의 기후변화에 대한 유출 영향 분석)

  • Ahn, Jung-Min;Jung, Kang-Young;Kim, Gyeonghoon;Kwon, Heongak;Yang, Duk-Seok;Shin, Dongseok
    • Journal of Environmental Science International
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    • v.26 no.5
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    • pp.549-561
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    • 2017
  • Recently IPCC (International Panel on Climate Change, 2007) pointed out that global warming is a certain ongoing process on the earth, due to which water resources management is becoming one of the most difficult tasks with the frequent occurrences of extreme floods and droughts. In this study we made runoff predictions for several control points in the Geum River by using the watershed runoff model, SSARR (Streamflow Synthesis and Reservoir Regulation Model), with daily RCP 4.5 and RCP 8.5 scenarios for 100 year from 1st Jan 2006 to 31st Dec 2100 at the resolution of 1 km given by Climate Change Information Center. As a result of, the Geum River Basin is predicted to be a constant flow increases, and it showed a variation in the water circulation system. Thus, it was found that the different seasonality occurred.

Optimal Water Allocation Using Streamflow Network Model and Global Optimization Method (하천망 모형과 전역최적화기법을 이용한 저수지 용수의 최적 배분)

  • Kang, Min Goo;Park, Seung Woo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.292-297
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    • 2004
  • 본 연구에서는 단일목적 저수지와 다목적 댐의 최적운영을 위하여 전역최적해를 탐색하는 SCE-UA법을 사용하는 비선형계획법을 적용한 최적화 모형을 구성하고 과거 운영자료를 사용하여 모형의 적용성을 검토하고 분석하였다. 또한, 다목적댐의 운영수위 상승으로 인하여 발생하는 추가용수를 댐하류로 추가적으로 공급함에 따른 댐운영상의 문제점과 해결책을 제시했다. 관개용 단일 목적 저수지의 유입량은 하천망 모형인 SSARR 모형을 이용하여 추정하였다. 관개용 단일 목적저수지의 용수배분을 최적화한 결과, 실측치와 최적방류량간의 상대오차가 $-2.6\~10.5\%$ 범위를 나타냈으며, 비교적 실측방류량과 유사한 형태로 용수를 공급하는 길과를 나타냈다. 다목적 저수지의 최적운영을 위해 발전량, 저수량 및 필요수량의 관계를 목적함수로하는 최적화 모형을 구성하여 섬진강댐의 최적운영에 적용하였다. 섬진강댐의 댐하류 방류량 증가에 따른 운영상의 문제점을 해결하기 위하여 댐하류 유지용수량을 0.17, 0.50, 0.70, 1.0, 1.5, $3.0m^3/sec$ 방류하는 경우로 구분하여 최적운영한 길과, 댐하류 유지용수량이 $1.0m^3/sec$ 이하인 경우에 발전량이 실적평균발전량에 근접한 결과를 나타냈으며, 용수공급량도 계획공급량인 377.4 백만 $m^3$ 보다 $28.9\~100.7$ 백만 $m^3$ 만큼 많은 양을 공급하는 결과를 나타냈다.

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Development of a Stream Discharge Estimation Program (자연하천 유량산정 프로그램 개발)

  • Lee Sang Jin;Hwang Man Ha;Lee Bae Sung;Ko Ick Hwan
    • Journal of The Korean Society of Agricultural Engineers
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    • v.48 no.1
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    • pp.27-38
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    • 2006
  • In this study, we developed a program to estimate discharge efficiently considering major hydraulic characteristic including water level, river bed, water slope and roughness coefficient in a natural river. Stream discharge was measured at Gongju gauge station located in the down stream of the Daechung Dam during normal and dry seasons from 2003 to 2004. The developed model was compared with the results from the existing rating curve at T/M gage stations, and was used for runoff analyses. Evaluating the developed river discharge estimation program, it was applied during 1983-2004 that base flow separation method and RRFS (Rainfall Runoff Forecasting System) which is based on SSARR (Streamflow Synthesis And Resevoir Regulation). The result presents the stage-discharge curve creator range at the Gong-ju is overestimated by approximately $10-20\%$, especially at the low stage. It is attributed to the hydraulic characteristics at the study. The discharge simulated by the RRFS and base flow separation, which is calibrated using the measurement at the early spring and late fall season during relatively d]v season, shows the least errors. The coefficient of roughness at Gongju station varied with the high and low water level.

A Study of Progressive Parameter Calibrations for Rainfall-Runoff Models (강우-유출모형을 위한 매개변수 순차 보정기법 연구)

  • Kwak, Jae-Won;Kim, Duk-Gil;Hong, Il-Pyo;Kim, Hung-Soo
    • Journal of Wetlands Research
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    • v.11 no.2
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    • pp.107-121
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    • 2009
  • Many rainfall-runoff models have been used for the flood forecasting. However, the determination of rainfall-runoff model parameters is very difficult. In this study, we investigated the efficiency of flood forecasting models by studying the optimization techniques for parameter calibration of SFM, Tank, and SSARR models. We analyzed the correlations between parameters in optimization techniques, then classified the parameters into parameter groups. For this we applied the sequential calibration method through the sensitivity analysis. As the results of the analysis, the parameter groups clibration method showed better result for peak flow and clibtation time.

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Long Term Runoff Simulation for Water Balance at Daecheong Basin (대청유역 물수지 분석을 위한 장기 유출모의)

  • Lee, Sang-Jin;Kim, Joo-Cheol;Noh, Joon-Woo
    • Journal of Environmental Science International
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    • v.19 no.10
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    • pp.1211-1217
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    • 2010
  • For an accurate rainfall-runoff simulation in the river basin, it is important to consider not only evaluation of runoff model but also accurate runoff component. In this study long-term runoffs were simulated by means of watershed runoff model and the amounts of runoff components such as upstream inflow, surface runoff, return flow and dam release were evaluated based on the concept of water budget. SSARR model was applied to Daecheong basin, the upstream region of Geum river basin, and in turn the monthly runoff discharges of main control points in the basin were analyzed. In addition, for the purpose of providing the basic quantified water resources data the conceptual runoff amounts were estimated with water budget analysis and the reliability of the observations and the monthly runoff characteristics were investigated in depth. The yearly runoff ratios were also estimated and compared with the observations. From the results of the main control points, Yongdam, Hotan, Okcheon and Daecheong, the yearly runoff ratios of those points are consistent well with data reported previously.

Estimation of Mega Flood Using Mega Rainfall Scenario (거대강우 시나리오를 이용한 거대홍수량 산정)

  • Han, Daegun;Kim, Deokhwan;Kim, Jungwook;Jung, Jeawon;Lee, Jongso;Kim, Hung Soo
    • Journal of Wetlands Research
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    • v.21 no.spc
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    • pp.90-97
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    • 2019
  • In recent years, flood due to the consecutive storm events have been occurred and property damage and casualties are in increasing trend. This study calls the consecutively occurred storm events as a mega rainfall scenario and the discharge by the scenario is defined as a mega flood discharge. A mega rainfall scenario was created on the assumption that 100-year frequency rainfall events were consecutively occurred in the Gyeongancheon stream basin. The SSARR (Streamflow Synthesis and Reservoir Regulation) model was used to estimate the mega flood discharge using the scenario in the basin. In addition, in order to perform more reasonable runoff analysis, the parameters were estimated using the SCE_UA algorithm. Also, the calibration and verification were performed using the objective functions of the weighted sum of squared of residual(WSSR), which is advantageous for the peak discharge simulation and sum of squared of residual(SSR). As a result, the mega flood discharge due to the continuous occurrence of 100-year frequency rainfall events in the Gyeongan Stream Basin was estimated to be 4,802㎥/s, and the flood discharge due to the 100-year frequency single rainfall event estimated by "the Master Plan for the Gyeongancheon Stream Improvement" (2011) was 3,810㎥/s. Therefore, the mega flood discharge was found to increase about 992㎥/s more than the single flood event. The results of this study can be used as a basic data for Comprehensive Flood Control Plan of the Gyeongan Stream basin.