• Title/Summary/Keyword: Flood Hydrograph

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Study of Design Flood Hydrograph for Seepage Analyses through Levees (하천제방의 침투해석을 위한 무차원 설계홍수파형에 관한 연구)

  • Jeon, Se-Jin;Kwon, Kyung-Jun;Ahn, Won-Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.220-224
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    • 2009
  • 제방을 설계하거나 기존제방의 안정성검토를 위해서는 제방의 침투해석이 필요하며, 외국에서와 같이 대규모하천이 대부분인 곳에서는 댐에서와 같이 정상침투해석을 하고 있으나 우리나라와 일본하천의 경우는 홍수지속시간이 짧아 설계홍수파형을 정상상태로 해석할 경우에는 과대한 외력을 주게되므로 시간에 따른 수위변화를 고려한 비정상 침투해석을 하여야한다. 이 경우 하천수위에 대한 홍수파형이 필요하나 국내에서는 명확한 기준이 없어 설계시 어려움이 많았다. 본 연구에서는 부정류 침투해석에 사용되는 설계홍수파형을 유도하기 위하여 수위자료가 양호한 낙동강 수계 진동 등 5개 수위관측지점의 과거 주요홍수에 대해 지속시간별 홍수위를 조사하여 무차원화시킨 후 통계적 확률적 처리를 통하여 설계홍수파형을 작성하였다. 작성된 홍수파형의 적정성은 과거 발생한 원홍수사상과 금회 유도한 설계홍수파형을 이용하여 침투해석을 시행하고 적정성을 분석하였다. 동수경사법과 한계유속법에서 오차는 각각 진동 0${\sim}$1.0%, 0.9${\sim}$1.1%, 현풍 1.6${\sim}$4.0%, 1.7${\sim}$4.1%, 왜관 0.6${\sim}$3.6%, 0.6${\sim}$3.7%, 낙동 2.0${\sim}$8.1%, 2.0${\sim}$8.1%, 정암 1.2${\sim}$9.8, 1.3${\sim}$9.9%로 나타났다. 상관성 ($R^2$)은 동수경사 0.983${\sim}$0.999, 한계유속 0.983${\sim}$0.999 정도로 매우 상관성이 높게 나타나 실무에 적용이 가능한 것으로 판단된다.

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Hydrological Studies on the Comparison and the Derivation of Unit Hydrography in the small River Systems. (소하천수계의 단위유량도 유도 및 비교에 관한 수문학적 고찰)

  • 이순혁
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.20 no.3
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    • pp.4739-4749
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    • 1978
  • This studies were conducted to derive synthetic unitgraphs and triangular unitgraphs correlated with watershed characteristics which can be used to the estimation and control of flood for the rational development of Agricultural water resources. Derived Synthetic unitgraphs and Triangular unitgraphs can be applied to the ungaged watersheds were compared with average unitgraphs by observed data. Seven small watersheds were selected as studying basins Han, Geum, Nakdong, Yeongsan and Inchon river system. The results summarized for these studies are as follows: 1. Average unitgraphs by observed data and dimensionless unitgraphs for synthesis were derived for all river systems. 2. Peak discharge per unit area of the unitgraph, qp, was derived as qp=10-0.389-0.0424Lg with a high significance. 3. Formulas for the base width of unitgraph of 50 and 75 percent for peak flow for each water systems was adopted as Table 5. 4. The base length of the unitgraph, Tb, in hours in connection with time to peak, Tp, in hours was expressed as Tb =4.3Tp. 5. Peak discharge, Qp, were obtained as Table 6 by the Triangular form to all subwatersheds. 6. Relative errors in the peak discharge of the synthetic unitgraphs showed to be 7.3 percent to the peak of observed average unitgraphs except errors of peak discharge for Yeongsan river system. This indicates that Synthetic unitgraphs for the small watersheds of Han, Geum, Nakdong and Inchon river systems can be applied to the ungaged watersheds. On the other hand, It was confirmed that the accuracy of Instantaneous Unit Hydrograph with only 1.6 percent as relative errors was approaching more closely to the observed average unitgraph than that of synthetic unitgraph with relative errors. 23.9 percent for Yeongsan river system. 7. Errors in the peak discharge of the triangular unitgraph to the observed average unitgraph showed to be 0.6 percent to 7.5 percent which can be regarded as a high precision within the range of 200 to 500$\textrm{km}^2$ in area. On the contrary, application of triangular unitgraph within the range of 200$\textrm{km}^2$ in area has defined as a unsuitable method because of high relative errors, 26.4 percent to 61.6 percent.

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Rainfall-Runoff Analysis by Calculation of the Time Distribution Models for Storms (降雨의 時間 分布模型 算定에 의한 降雨-流出 解析)

  • 민경형;이영대
    • Water for future
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    • v.29 no.6
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    • pp.189-201
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    • 1996
  • The main objective of this study is to determine the time distribution models of rainfall in Korea for estimating design floods and to suggest new runoff model(Geomorphologic Instantaneous Unit Hydrograph; GIUH) in order to be easily use the rainfall-runoff model put rainfall models practice to be suitable for the regional characteristics of hydrologic situation by practicing engineers. As a result, the reappearance of triangular hyetograph and GIUH runoff model showed promising. The historical data from about 13,000 event-rainfalls and 73 rainfall-runoff measuring data during 12 years in International Hydrological Program (IHP) basins have been used to determine the statistical factors of the time distribution for rainfalls by the Yen-Chow, Huff, Pilgrim-Cordery and Mononobe models. The Rational, Kajiyama, Nakayasu and Clark model and GIUH model that this study runoff model were used for the purpose of application limit for basin area against design concept by the estimation of flood runoff and the derivation of empirical equations to estimate the parameters for ungaged basins.

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Estimation of the Stormwater Impoundments Volume Dependent on the Durations of Design Rainfall (계획강우의 지속기간에 따른 저류지용량의 산정)

  • Yun, Yeo-Jin;Lee, Jae-Cheol
    • Journal of Korea Water Resources Association
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    • v.34 no.5
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    • pp.415-426
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    • 2001
  • After Disaster Impact Assessment(DIA) Program was particed, the wide variety of hydrological data are estimated by introducing the concept of critical storm duration to calculate the stormwater impoundments as the alternative of increasing runoff due to many developments. Critical storm duration is varied by a lot of hydraulic structures, drainage characteristics, temporal distribution of design rainfall, return period, and runoff models. In this study the methods of estimating the proper volume to design the stormwater impoundments are proposed to determine the required volume by comparing and analyzing the maximum stormwater impoundments in accordance with the impoundment volume and rainfall duration by using the concept of storage ratio presented in the existing studies. The methods of determining the critical storm duration of design rainfall which cause the maximum load from the runoff hydrograph will be studied as analyzing rainfall-runoff using the various runoff models and observed data.

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A Study on the Variation of Suspended Sediment Concentration in the Reservoir due to a Rainstorm (호우발생시 저수지 유입 부유사농도의 변화특성 연구)

  • Jang, Su-Hyung;Park, Moo-Jong;Yoon, Yong-Nam
    • Journal of Korea Water Resources Association
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    • v.37 no.1
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    • pp.43-54
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    • 2004
  • The objective of this study is to propose reservoir operation method in relation to the suspended sediment concentration due to rainstorms. Present analysis is made for the Tamjin reservoir which is under construction. For the hydrologic computations the Huff rainfall distribution, Clark unit hydrograph method and Puls reservoir routing method are used. The variation of suspended sediment concentration is calculated by 2-dimensional RMA-4 model. As a result of this study, the possible intake time from the reservoir under low frequency flood is estimated and the rainfall-ret urn period - possible intake time relationship is established, which is very important in maintaining the water quality standard when supplying water from the reservoir for different utilizationurn period- possible intake time relationship is established, which is very important in maintaining the water quality standard when supplying water from the reservoir for different utilizations.

Estimation of Flood Discharge on Gam Stream Watershed Using Clark Unit Hydrograph (Clark 단위도법을 이용한 감천 유역의 홍수량 산정)

  • Bok, Jung-Soo;Jung, Dae-Jin;Kim, Yu-Ri;Park, Bong-Jin;Jung, Kwan-Sue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.1915-1919
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    • 2007
  • 하천관리 및 수공구조물의 설계 등을 위한 빈도별 홍수량 산정 시 이용되는 방법에는 Clark 단위도법, Snyder 단위도법, KICT 단위도법 등이 있다. 이 중 대표적인 합성단위도법인 Clark 단위도법은 실무에서 가장 많이 사용되는 방법으로 꼽을 수 있으나, Clark 단위도법 매개변수인 집중시간$(T_c)$과 저류상수(K)를 추정하는 것은 단순하지 않다. Clark 단위도법의 매개변수 추정은 계측 유역인 경우와 미계측 유역인 경우로 나눌 수 있는데 대부분의 경우 미계측 유역의 도달시간 및 저류상수를 추정하는 방법으로 홍수량을 산정하고 있는 실정이다. 본 연구에서는 감천유역을 대상유역으로 선정하였으며, 김천수위표 지점을 유출지점으로 선정하여 홍수량을 산정하였다. 호우사상은 김천수위국의 수위-유량 곡선식으로 유출량의 검정이 가능한 년도를 고려하여 1998${\sim}$2005년 사이의 호우사상 중 분석이 가능한 것으로 판단되는 부항2와 김천 강우관측소의 시강우 자료를 선정하였다. 선정된 호우사상은 1999년, 2002년, 2004년에 대한 총 6개의 시우량 자료로 WAMIS(국가수자원종합정보시스템)와 한강홍수통제소(www.hrfco.go.kr)의 자료실에서 제공하는 한국수문조사연보 자료를 이용하였다. 선정된 호우사상과 WMS모형을 이용하여 산정된 유역면적 및 강우관측소 별 Thiessen 가중계수를 이용하여 HEC-1모형의 최적화기법으로 Clark 단위도법의 집중시간$(T_c)$과 저류상수(K)를 산정하였으며, 계측유역의 매개변수를 산정하는 방법 중 저류방정식을 이용하는 방법을 이용하여 저류상수를 산정하여 비교하였다. 집중시간의 경우 1999년과 2002년에 비해 2004년의 결과값이 작게 산정되었으며, 저류상수의 경우 2004년의 결과값이 크게 산정되었다. 그러나, 저류방정식을 이용하여 저류상수를 결정하는 방법으로 산정한 저류상수는 비교적 일관성 있게 산정되었다.

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Rainfall-Runoff Characteristics in a Jeju Stream considering Antecedent Precipitation (선행강우를 고려한 제주하천 유출특성 분석)

  • Yang, Sung-Kee;Kim, Dong-Su;Jung, Woo-Yul
    • Journal of Environmental Science International
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    • v.23 no.4
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    • pp.553-560
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    • 2014
  • The rainfall-runoff characteristics in Jeju Island significantly differ from those in inland, due to highly permeable geologic features driven by volcanic island. Streams are usually sustained in the dry conditions and thereby the rainfall-runoff characteristics changes in terms of initiating stream discharge and its types, depending highly on the antecedent precipitation. Among various the rainfall-runoff characteristics, lag time mainly used for flood warning system in river and direct runoff ratio for determining water budget to estimate groundwater recharge quantity are practically crucial. They are expected to vary accordingly with the given antecedent precipitation. This study assessed the lag time in the measured hydrograph and direct runoff ratio, which are especially in the upstream watershed having the outlet as $2^{nd}$ Dongsan bridge of Han stream, Jeju, based upon several typhoon events such as Khanun, Bolaven, Tembin, Sanba as well as a specific heavy rainfall event in August 23, 2012. As results, considering that the lag time changed a bit over the rainfall events, the averaged lag time without antecedent precipitation was around 1.5 hour, but it became increased with antecedent precipitation. Though the direct run-off ratio showed similar percentages (i.e., 23%)without antecedent precipitation, it was substantially increased up to around 45% when antecedent precipitation existed. In addition, the direct run-off ration without antecedent precipitation was also very high (43.8%), especially when there was extremely heavy rainfall event in the more than five hundreds return period such as typhoon Sanba.

Application of GIS for Runoff Simulation in Ungaged Basin(I): Selection of Soil Map and Landuse Map (미계측 유역의 유출모의를 위한 지리정보시스템의 응용(I) : 토양도 및 토지이용도의 선정)

  • Kim, Gyeong-Tak;Sim, Myeong-Pil
    • Journal of Korea Water Resources Association
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    • v.32 no.2
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    • pp.163-176
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    • 1999
  • Hydrology-based topographical informations generated by GIS techniques could be changed according to the selection of base map, algorithm of extraction, and so on. The purpose of this paper is to investigate the variation of SCS CN extracted by GIS technique and to propose the effective strategy for applying GIS to the rainfall-runoff simulation in ungaged basin. For experimental implementation, GIS spatial data, such as reconnaissance soil map, detailed interpretative soil map, landuse planning map and remotely sensed data(Landsat TM), were collected and generated to calculate the amount of effective rainfall in Pyungchang river basin. In applying SCS Runoff Curve Number to the test basin, the hydrological attribute data were analyzed. In addition, the characteristics of runoff responses according to the selection of GIS spatial data for SCS CN were reviewed. This study shows the applicability of GIS techniques to runoff simulation in ungaged basin by comparing with the measured flood hydrograph. It has been found that the detained interpretative soil map and remote sensing data are appropriate for calculating of SCS CN.

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Analysis of Urban Flood Damage Using SWMM5 and FLUMEN Model of Sadang Area in Korea

  • Li, Heng;Kim, Yeonsu;Lee, Seungsoo;Song, Miyeon;Jung, Kwansue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.396-396
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    • 2015
  • Frequent urban floods affect the human safety and economic properties due to a lack of the capacity of drainage system and the increased frequency of torrential rainfall. The drainage system has played an important role in flooding control, so it is necessary to establish the effective countermeasures considering the connection between drainage system and surface flow. To consider the connection, we selected SWMM5 model for analyzing transportation capacity of drainage system and FLUMEN model for calculating inundation depth and time variation of inundation area. First, Thiessen method is used to delineate the sub-catchments effectively base on drainage network data in SWMM5. Then, the output data of SWMM5, hydrograph of each manhole, were used to simulate FLUMEN to obtain inundation depth and time variation of inundation area. The proposed method is applied to Sadang area for the event occurred in $27^{th}$ of July, 2011. A total of 11 manholes, we could check the overflow from the manholes during that event as a result of the SWMM5 simulation. After that, FLUMEN was utilized to simulate overland flow using the overflow discharge to calculate inundation depth and area on ground surface. The simulated results showed reasonable agreements with observed data. Through the simulations, we confirmed that the main reason of the inundation was the insufficient transportation capacities of drainage system. Therefore cooperation of both models can be used for not only estimating inundation damages in urban areas but also for providing the theoretical supports of the urban network reconstruction. As a future works, it is recommended to decide optimized pipe diameters for efficient urban inundation simulations.

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Case Study: Groundwater Recharge Hydrograph in Pyeongchang River (평창강 지하수 함양곡선 연구)

  • Kwak, Jaewon
    • Journal of Wetlands Research
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    • v.23 no.2
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    • pp.173-182
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    • 2021
  • It is important to extract and assess low-flow recession characteristics for water resources management in the upper reaches of a stream. It is difficult to express the groundwater flow recession characteristics for streamflow synthetically. The linear recession model has been widely used by baseflow recession analysis for reason of simplicity and convenience, but recent studies show that nonlinear recession models fit well, and the relationship between the reservoir storage of shallow unconfined aquifers and the groundwater discharge was to be identified as nonlinear in the literature based on the analysis of numerous streamflow recession curves. The objective of the study is to decode these nonlinear characteristics, including evaporation loss, storage, and recharge of groundwater using streamflow. By analyzing the observed time series of streamflow from the study area, which is the Pyeongchang River basin in Korea, the main components of the underlying groundwater balance, namely, discharge, evaporation loss, storage, and recharge, can be identified and quantified. As a result of the study, depletion of groundwater by evapotranspiration losses through the water uptake of tree roots was found to bias the recession curves and the estimated reservoir parameters. The seasonality of both rainfall and potential evaporation, analysis of the recession curves, stratified according to time of the year, allowed the quantification of evapotranspiration loss as a function of a calendar month and stored groundwater storage.