• 제목/요약/키워드: Flood Hydrograph

검색결과 212건 처리시간 0.033초

영산강 하구둑 실시간 홍수예보 및 관리시스템 개발 (Development of Real-Time Forecasting and Management System for the Youngsan Estuary Dam)

  • 강민구;박승우;허용구;박창언;강문성
    • 한국농공학회:학술대회논문집
    • /
    • 한국농공학회 2002년도 학술발표회 발표논문집
    • /
    • pp.285-288
    • /
    • 2002
  • For real-time flood forecasting and effective control flood at the Youngsan estuary dam, the Flood Forecasting and Control User Interface System II (FFCUS II) has been developed. This paper describes the features and application of FFCUS II. FFCUS II is composed of the database management subsystem, the model subsystem, and the graphic user interface. The database management subsyem collects rainfall data and stream flow data, updates, processes, and searches the data. The model subsystem predicts the inflow hydrograph, the tide, forecasts flood hydrograph, and simulates the release rate from the sluice gates. The graphic user interface subsystem aids the user's decision-making process by displaying the operation results of the database management subsystem and model subsystem.

  • PDF

A STUDY ON THE PARAMETER ESTIMATION OF SNYDER-TYPE SYNTHETIC UNIT-HYDROGRAPH DEVELOPMENT IN KUM RIVER BASIN

  • Jeong, Sang-man;Park, Seok-Chae;Lee, Joo-Heon
    • Water Engineering Research
    • /
    • 제2권4호
    • /
    • pp.219-229
    • /
    • 2001
  • Synthetic unit hydrograph equations for rainfall run-off characteristics analysis and estimation of design flood have long and quite frequently been presented, the Snyder and SCS synthetic unit hydrograph. The major inputs to the Snyder and SCS synthetic unit hydrograph are lag time and peak coefficient. In this study, the methods for estimating lag time and peak coefficient for small watersheds proposed by Zhao and McEnroe(1999) were applied to the Kum river basin in Korea. We investigated lag times of relatively small watersheds in the Kum river basin in Korea. For this investigation the recent rainfall and stream flow data for 10 relatively small watersheds with drainage areas ranging from 134 to 902 square kilometers were gathered and used. 250 flood flow events were identified along the way, and the lag time for the flood events was determined by using the rainfall and stream flow data. Lag time is closely related with the basin characteristics of a given drainage area such as channel length, channel slope, and drainage area. A regression analysis was conducted to relate lag time to the watershed characteristics. The resulting regression model is as shown below: ※ see full text (equations) In the model, Tlag is the lag time in hours, Lc is the length of the main river in kilometers and Se is the equivalent channel slope of the main channel. The coefficient of determinations (r$^2$)expressed in the regression equation is 0.846. The peak coefficient is not correlated significantly with any of the watershed characteristics. We recommend a peak coefficient of 0.60 as input to the Snyder unit-hydrograph model for the ungauged Kum river watersheds

  • PDF

홍수위험지도 작성을 위한 하천 제방 붕괴 유량공식 제안 (Discharge Equation Related to a Levee-Break for a Flood Hazard Map)

  • 이길하;김성욱;최봉혁
    • 지질공학
    • /
    • 제25권4호
    • /
    • pp.623-627
    • /
    • 2015
  • 하천 제방 붕괴로 인한 홍수위험지도를 작성하기 위하여 수치모형을 이용한 잠재적 피해 대상 지역 파악이 선행되어야 한다. 하천제방 붕괴로 인하여 빚어지는 홍수위험지도 작성에서도 흔히 수치모형이 이용되며 붕괴 시 첨두 유량은 결정 인자인 하천의 수량과 제방 붕괴 형성 및 진행에 민감하므로 이런 요소를 포함하는 물리적 모형이 필요하다. 제방 붕괴 메커니즘과 수리학적 현상이 모든 붕괴에 같다고 가정하고 하나의 물리적 제방 붕괴 수치 모형을 구축하였다. 이 연구에서는 하도 추적은 언급하지 않았으며, 단지 제방 붕괴지점에서 수문곡선을 추정하는데 초점을 두어 붕괴 지점의 경계조건을 구축하는데 집중하였다. 여기서 제안된 물리적 모형은 제방 붕괴 형성과정에 필요한 역할과 붕괴를 통한 흐름의 수리학적 설명을 담고 있다.

도시 소유역 배수펌프장 운영개선 방안 연구 (1) - GIS 기반 수문모형에 의한 홍수유출수문곡선의 재현 (Operational Improvement of Small Urban Storm Water Pumping Station (1) - Simulation of Flood Hydrograph using GIS-based Hydrologic Model)

  • 길경익;한종옥;김구현
    • 한국물환경학회지
    • /
    • 제21권6호
    • /
    • pp.682-686
    • /
    • 2005
  • Recently some urban areas have been flooded due to heavy storm rainfalls. Though major causes of these floodings may be attributed to localized heavy rainfalls, other factors are related to urban flooding including deficiency of storm sewer network capacity, change of surface runoff due to covered open channels, and operational problems of storm drainage pump stations. In this study, hydrologic and hydraulic analysis of Sutak basin in Guri city were carried out to evaluate flooding problems occurred during the heavy storm in July, 2001. ArcView, a world most widely used GIS tool, was used to extract required data for the hydrologic analysis including basin characteristics data, concentration times, channel routing data, land use data, soil distribution data and SCS runoff curve number generation from digital maps. HEC-HMS, a GIS-based runoff simulation model, was successfully used to simulate the flood inflow hydrograph to Sutak pumping station.

A Channel Flood Routing by the Implicit Dynamic Wave Model

  • Yoon, Yong-Nam;Chung, Jong-Ho
    • Korean Journal of Hydrosciences
    • /
    • 제2권
    • /
    • pp.69-84
    • /
    • 1991
  • US NWS/NETWORK is applied for the analysis of the flood of July 11-15, 1981 through the Goan-Indogyo reach of the Han River. For the flood hydrography synthesis of the lateral inflows from the major tributaries into the main reach the Cleak method is employed. NETWORK coupled with the Clark method of hydrography synthesis simulated with a fair accuracy the oberved flood hydrograph at the downstream boundary of the routing reach. The dffect of SCS runoff curve number for fributary flood synthesis is evaluated. The characteristics of the station variations and time variations of the flood discharges in the reach is also analyzed.

  • PDF

설계홍수량 산정을 위한 단위유량도의 합성방법 개발 (Development of Syntheic Unit Hydrograph for Estimation of design Flood)

  • 이홍래;이종국;서병하
    • 한국수자원학회:학술대회논문집
    • /
    • 한국수자원학회 1989년도 수공학논총 제31권
    • /
    • pp.17-30
    • /
    • 1989
  • 본 여눅에서는 국내에 어느 정도 축적된 단시간 수문자료를 사용하여, 정확한 유역의 유출현상을 파악하고 그 대상유역의 지형인자와 유출특성을 대표하는 단위 유량도 특성변수와의 관계를 규명하여, 유출수문자료가 없는 대상유역, 즉 미 계측 유역에서 수공구조물의 설계시에 적절한 설계홍수량 산정방법을 제시하여 하천의 효과적인 치수사업을 수행하여 효율적인 수지원관리를 도모할 수 있도록 하였다.

  • PDF

강우-유출 자료에 의한 Clark 모형의 저류상수 결정 (Determination of the Storage Constant for the Clark Model by based on the Observed Rainfall-Runoff Data)

  • 안태진;최광훈
    • 한국수자원학회:학술대회논문집
    • /
    • 한국수자원학회 2007년도 학술발표회 논문집
    • /
    • pp.1454-1458
    • /
    • 2007
  • The determination of feasible design flood is the most important to control flood damage in river management. Model parameters should be calibrated using observed discharge but due to deficiency of observed data the parameters have been adopted by engineer's empirical sense. Storage constant in the Clark unit hydrograph method mainly affects magnitude of peak flood. This study is to estimate the storage constant based on the observed rainfall-runoff data at the three stage stations in the Imjin river basin and the three stage stations in the Ansung river basin. In this study four methods have been proposed to estimate the storage constant from observed rainfall-runoff data. The HEC-HMS model has been adopted to execute the sensitivity of storage constant. A criteria has been proposed to determine storage constant based on the results of the observed hydrograph and the HEC-HMS model.

  • PDF

설계홍수량 산정을 위한 합성단위유량도의 개발 (Development of Syntheic Unit Hydrograph for Estimation of Design Flood)

  • 이홍래;이종국;서병하
    • 물과 미래
    • /
    • 제22권4호
    • /
    • pp.423-433
    • /
    • 1989
  • 본 연구에서는 국내에 어느 정도 축적된 단시간 수문자료를 사용하여, 정확한 유역의 유출현상을 파악하고 그 대상유역의 지형인자와 유출특성을 대표하는 단위 유량도 특성변수와의 관계를 규명하여, 유출수문자료가 없는 대상유역, 즉 미 계측유역에서 수공구조물의 설계시에 적절한 설계홍수량 산정방법을 제시하여 하천의 효과적인 치수사업을 수행하여 효율적인 수자원관리를 도모할 수 있도록 하였다.

  • PDF

홍수위험지도 작성을 위한 댐 붕괴 지점에서의 유량곡선 산정 (Development of a Hydrograph Triggered by Earth-Dam-Break for Compiling a Flood Hazard Map)

  • 이길하;김성욱;유순영;김상현;조진우;김진만
    • 지질공학
    • /
    • 제23권4호
    • /
    • pp.381-387
    • /
    • 2013
  • 홍수위험지도를 작성하기 위하여 수치모형을 이용한 잠재적 피해 대상 지역 파악이 선행되어야 한다. 댐 붕괴로 인하여 빚어지는 홍수위험지도 작성에서도 시나리오 별로 댐 붕괴를 모의하기 위한 댐 붕괴 수치 모의가 필요하다. 댐 붕괴 시 첨두 유량은 결정 인자인 댐 붕괴(breach)나 저수지의 수량과 댐 붕괴 형성 및 진행에 민감하므로 이런 요소를 포함하는 물리적 모형이 필요하다. 댐 붕괴 메커니즘과 수리학적 현상이 모든 댐 붕괴에 같다고 가정하고 하나의 물리적 댐 붕괴 수치 모형을 구축하였다. 댐 붕괴지점에서 수문곡선을 추정하는데 초점을 두어 댐 하류의 하도 추적 시 상류부의 경계조건 역할을 하도록 하는 것이며, 연구에서 하류부의 하도 추적은 다루지 않았다. 물리적 모형은 댐 붕괴 형성과정에 필요한 역할과 댐 붕괴를 통한 흐름의 수리학적 설명을 담고 있다. 2008년 중국의 장지산(Tangjishan) 댐 붕괴 시 관측된 현장 자료를 이용하여 모형의 수행능력을 검정하였다. 모의 결과는 만족할만한 수준의 정확도를 가지는 것으로 나타났으며 결정계수는 0.974, NSC는 0.94, RMSE는 $610m^3/sec$ 정도로 나타났다. 이로 미루어보아 연구에서 구축된 댐 붕괴 모형은 실제 댐 붕괴 관측 자료를 현실적으로 잘 재현해내는 것으로 확인되었으며, 댐 붕괴로 인한 홍수위험지도 구축 시 상류부 경계조건으로서 활용성이 높은 것으로 나타났다.

지상인자에 의한 순간단위도 유도와 유출량 예측 (Derivation of the Instantaneous Unit Hydrograph and Estimation of the Direct Runoff by Using the Geomorphologic Parameters)

  • 천만복;서승덕
    • 한국농공학회지
    • /
    • 제32권3호
    • /
    • pp.87-101
    • /
    • 1990
  • The purpose of this study is to estimate the flood discharge and runoff volume at a stream by using geomorphologic parameters obtained from the topographic maps following the law of stream classification and ordering by Horton and Strahier. The present model is modified from Cheng' s model which derives the geomorphologic instantaneous unit hydrograph. The present model uses the results of Laplace transformation and convolution intergral of probability density function of the travel time at each state. The stream flow velocity parameters are determined as a function of the rainfall intensity, and the effective rainfall is calculated by the SCS method. The total direct runoff volume until the time to peak is estimated by assuming a triangular hydrograph. The model is used to estimate the time to peak, the flood discharge, and the direct runoff at Andong, Imha. Geomchon, and Sunsan basin in the Nakdong River system. The results of the model application are as follows : 1.For each basin, as the rainfall intensity doubles form 1 mm/h to 2 mm/h with the same rainfall duration of 1 hour, the hydrographs show that the runoff volume doubles while the duration of the base flow and the time to peak are the same. This aggrees with the theory of the unit hydrograph. 2.Comparisions of the model predicted and observed values show that small relative errors of 0.44-7.4% of the flood discharge, and 1 hour difference in time to peak except the Geomchon basin which shows 10.32% and 2 hours respectively. 3.When the rainfall intensity is small, the error of flood discharge estimated by using this model is relatively large. The reason of this might be because of introducing the flood velocity concept in the stream flow velocity. 4.Total direct runoff volume until the time to peak estimated by using this model has small relative error comparing with the observed data. 5.The sensitivity analysis of velocity parameters to flood discharge shows that the flood discharge is sensitive to the velocity coefficient while it is insensitive to the ratio of arrival time of moving portion to that of storage portion of a stream and to the ratio of arrival time of stream to that of overland flow.

  • PDF