• Title/Summary/Keyword: flash flood

Search Result 131, Processing Time 0.027 seconds

Flood Forecasting Study using Neural Network Theory and Hydraulic Routing (신경망 이론과 수리학적 홍수추적에 의한 홍수예측에 관한 연구)

  • Jee, Hong Kee;Choo, Yeon Moon
    • Journal of Korea Water Resources Association
    • /
    • v.47 no.2
    • /
    • pp.207-221
    • /
    • 2014
  • Recently, due to global warming, climate change has affected short time concentrated local rain and unexpected heavy rain which is increasingly causing life and property damage. Therefore, this paper studies the characteristic of localized heavy rain and flash flood in Nakdong basin study area by applying Data Mining method to predict flood and constructing water level predicting model. For the verification neural network from Data Mining method and hydraulic flood routing was used for flood from July 1989 to September 1999 in Nakdong point and Iseon point was used to compare flood level change between observed water level and SAM (Slope Area Method). In this research, the study area was divided into three cases in which each point's flood discharge, water level was considered to construct the model for hydraulic flood routing and neural network based on artificial intelligence which can be made from simple input data used for comparison analysis and comparison evaluation according to actual water level and from the model.

Flood Alert and Warning Scheme Based on Intensity-Duration-Quantity (IDQ) Curve considering Antecedant Moisture Condition (선행함수지수를 고려한 강우강도-지속시간-홍수량(IDQ) 곡선기반의 홍수예경보기법)

  • Kim, Jin-Gyeom;Kang, Boosik
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.35 no.6
    • /
    • pp.1269-1276
    • /
    • 2015
  • The methodology of utilizing Intensity-Duration-flood Quantity (IDQ) curve for flood alert and warning was introduced and its performance was evaluated. For this purpose the lumped parameter model was calibrated and validated for gauged basin data set and the index precipitation equivalent to alert and warning flood was estimated. The index precipitation and IDQ curves associated by three different Antecedant Moisture Conditions (AMCs) are made provision for various possible flood scenarios. The test basin is Wonju-cheon basin ($94.4km^2$) located in Gangwon province, Korea. The IDQ curves corresponding to alert (50% of design flood level) and warning (70% of design flood level) level was estimated using the Clark unit hydrograph based lumped parameter model. The performance evaluation showed 0.704 of POD (Probability of Detection), 0.136 of FAR (False Alarm Ratio), and 0.633 of CSI (Critical Success Index), which is improved from the result of IDQ with single fixed AMC.

Runoff Characteristics Analysis using GCUH on Ungauged Small Basin (지형기후학적순간단위유량도를 이용한 미계측 소유역의 유출특성 분석)

  • Lee, Sang-Jin;Choi, Hyun;Lee, Bae-Sung;Jeong, Dong-Kug
    • Journal of Korean Society for Geospatial Information Science
    • /
    • v.14 no.2 s.36
    • /
    • pp.15-22
    • /
    • 2006
  • Runoff Characteristics has been Analysis Using geomorphologic Instantaneous Unit Hydrograph(GIUH) and geomorphoclimatic unit hydrograph(GCUH) on an ungaged vary small basin about $5km^2$ scale in Kyungbuk gampo area. First, we estimated hydrology Factor using Geographic Information System(GIS) tool and then, calculated the characteristic velocity using the real rainfall-runoff data. It is compared with several velocities derived from GCUH theory and several other concentration time formulae. Kerby and Braby-Williams seems to be more applicable as characteristic velocity formula. Second, We compared the GCUH peak discharge with the probable flood, also compared the unit hydrograph as like the Clark, the Nakayasu and the S.C.S and GCUH with the observed discharge using the real rainfall events. The comparison results showed that GCUH could be applicable on an ungaged vary small basin. We expected that the result can be used as for estimation of a flash flood standard rainfall as well as emergency management plan.

  • PDF

Flood Runoff Simulation Using GIS-Grid Based K-DRUM for Yongdam-Dam Watershed (GIS격자기반 K-DRUM을 활용한 용담댐유역 홍수유출모의)

  • Park, Jin Hyeog;Hur, Young Teck;Ryoo, Kyong Sik;Lee, Geun Sang
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.29 no.1D
    • /
    • pp.145-151
    • /
    • 2009
  • Recently, the rapid development of GIS technology has made it possible to handle a various data associated with spatially hydrological parameters with their attribute information. Therefore, there has been a shift in focus from lumped runoff models to distributed runoff models, as the latter can consider temporal and spatial variations of discharge. This research is to evaluate the feasibility of GIS based distributed model using radar rainfall which can express temporal and spatial distribution in actual dam watershed during flood runoff period. K-DRUM (K-water hydrologic & hydaulic Distributed flood RUnoff Model) which was developed to calculate flood discharge connected to radar rainfall based on long-term runoff model developed by Kyoto- University DPRI (Disaster Prevention Research Institute), and Yondam-Dam watershed ($930km^2$) was applied as study site. Distributed rainfall according to grid resolution was generated by using preprocess program of radar rainfall, from JIN radar. Also, GIS hydrological parameters were extracted from basic GIS data such as DEM, land cover and soil map, and used as input data of distributed model (K-DRUM). Results of this research can provide a base for building of real-time short-term rainfall runoff forecast system according to flash flood in near future.

Numerical Simulation of Urban Flash Flood Experiments Using Adaptive Mesh Refinement and Cut Cell Method (적응적 메쉬세분화기법과 분할격자기법을 이용한 극한 도시홍수 실험 모의)

  • An, Hyun-Uk;Yu, Soon-Young
    • Journal of Korea Water Resources Association
    • /
    • v.44 no.7
    • /
    • pp.511-522
    • /
    • 2011
  • Two-dimensional shallow water model based on the cut cell and the adaptive mesh refinement techniques is presented in this paper. These two mesh generation methods are combined to facilitate modeling of complex geometries. By using dynamically adaptive mesh, the model can achieve high resolution efficiently at the interface where flow changes rapidly. The HLLC Reimann solver and the MUSCL method are employed to calculate advection fluxes with numerical stability and precision. The model was applied to simulate the extreme urban flooding experiments performed by the IMPACT (Investigation of Extreme Flood Processes and Uncertainty) project. Simulation results were in good agreement with observed data, and transient flows as well as the impact of building structures on flood waves were calculated with accuracy. The cut cell method eased the model sensitivity to refinement. It can be concluded that the model is applicable to the urban flood simulation in case the effects of sewer and stormwater drainage system on flooding are relatively small like the dam brake.

Flood Forecasting and Warning System using Real-Time Hydrologic Observed Data from the Jungnang Stream Basin (실시간 수문관측자료에 의한 돌발 홍수예경보 시스템 -중랑천 유역을 중심으로-)

  • Lee, Jong-Tae;Seo, Kyung-A;Hur, Sung-Chul
    • Journal of Korea Water Resources Association
    • /
    • v.43 no.1
    • /
    • pp.51-65
    • /
    • 2010
  • We suggest a simple and practical flood forecasting and warning system, which can predict change in the water level of a river in a small to medium-size watershed where flash flooding occurs in a short time. We first choose the flood defense target points, through evaluation of the flood risk of dike overflow and lowland inundation. Using data on rainfall, and on the water levels at the observed and prediction points, we investigate the interrelations and derive a regression formula from which we can predict the flood level at the target points. We calculate flood water levels through a calibrated flood simulation model for various rainfall scenarios, to overcome the shortage of real water stage data, and these results as basic population data are used to derive a regression formula. The values calculated from the regression formula are modified by the weather condition factor, and the system can finally predict the flood stages at the target points for every leading time. We also investigate the applicability of the prediction procedure for real flood events of the Jungnang Stream basin, and find the forecasting values to have close agreement with the surveyed data. We therefore expect that this suggested warning scheme could contribute usefully to the setting up of a flood forecasting and warning system for a small to medium-size river basin.

Analysis of Flooded Areas for Cadastral Information-Based Rainfall Frequencies (지적정보 기반의 강우빈도별 침수지역 분석)

  • Min, Kwan-Sik;Lee, Hyung-Seok
    • Journal of the Korean Association of Geographic Information Studies
    • /
    • v.13 no.4
    • /
    • pp.101-110
    • /
    • 2010
  • The increased occurrence of flooding due to typhoons and local rainfall has necessitated damage prevention through the systematic construction of damage history and quantitative analysis of flood prediction data. In this study, we constructed a disaster information map for practical use by combining digital images and continuous cadastral maps of damaged areas using a geographic information system to provide basic data and attribute information. In addition, we predicted the areas at risk of flash floods by calculating the flood capacity of the study area for different rainfall frequencies through flood inundation simulation, which was used to obtain comprehensive disaster information. Further, we calculated the extent of the flooded area and the damage rate for different rainfall frequencies using cadastral information. Flood inundation simulation in the case of heavy rainfall was found to help improve the ability to react to a flood and enhance the efficiency of rescue work by supporting decision-making for disaster management.

An Assessment of Flooding Risk Using Flash Flood Index in North Korea - Focus on Imjin Basin - (돌발홍수 지수를 이용한 북한 홍수 위험도 평가 - 임진강 유역을 중심으로 -)

  • Kwak, Chang Jae;Choi, Woo Jung;Cho, Jae Woong
    • Journal of Korea Water Resources Association
    • /
    • v.48 no.12
    • /
    • pp.1037-1049
    • /
    • 2015
  • The most of natural disasters that occur in North Korea are flood, typhoon and damage from heavy rain. The damage caused by those disasters since the mid-1990s is aggravating North Korea's economic difficulties every year. By recognizing the seriousness of the damages from the floods, the North Korean government has carried out the river maintenance, farmland restoration, land readjustment and afforestation projects since the last-1990s, but it has failed preventing the damages. In order to estimate the degree of flood risk regarding damage from chronic floods that occur inveterately in North Korea, this research conducted an additional simulation for rainfall-runoff analysis to reflect the characteristics of the ungauged area that make foreign countries hard to obtain the hydrological data and do not open the topographical data to public. In addition, this research estimates the degree of flood risk by selecting the factors of the hazard, exposure and vulnerability by following the standards of the Intergovernmental Panel on Climate Change (IPCC).

Development of flash flood forecasting model using method (Nesting 기법을 이용한 돌발홍수 예측모형 개발)

  • Ji, Hee-Sook;Bae, Deg-Hyo
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2012.05a
    • /
    • pp.403-403
    • /
    • 2012
  • 최근 단시간 동안에 특정지역에 집중되는 국지적 호우에 의한 돌발홍수가 빈번히 발생하고 있으며, 이에 따른 위험과 손실이 증가하고 있는 추세이다. 현재 국내에서는 이러한 피해를 최소화하고자 돌발홍수 예측모형을 개발하고 예 경보 시스템을 구축하여 다양한 비구조적 대책을 마련하고 있다. 그러나 활용되는 예측모형의 경우 개념적 유출량인 한계유출량으로부터 돌발홍수능(Flash Flood Guidance, FFG)을 결정하여 예측 강우와 상대적인 대소 비교를 통해 돌발홍수의 발생가능성 유무를 판단하게 되는데, 문제는 산정되는 한계유출량은 개념적이기 때문에 검증이 어렵고 산정방법도 다양하여 불확실성이 높다는 단점이 있다. 이에 본 연구에서는 기존의 돌발홍수 예측 방법이 아닌, 수문모형 Nesting 기법을 이용한 돌발 홍수 예측 방법을 개발하였다. 저해상도의 대유역 기반의 유출량이 큰 영역의 경계값이 되고, 대유역을 이루고 있는 소유역을 고해상도의 작은 영역이라 할 때, 경계값인 대유역의 기반의 유출량을 참고 유출량으로 하여 소유역의 유출을 물리적 혹은 개념적으로 보다 타당하게 모의하는 방법이 수문모형 Nesting 기법이다. 이러한 기법에 필요한 강우-유출 모형으로는 대유역의 경우, SURR 모형(Sejong University Rainfall-Runoff model)을 선택하였으며, 대유역을 이루는 소유역의 유출모의는 물리적 기반의 분포형 모형인 CASC2D 모형을 이용하였다. 또한 실시간 활용을 위해서는 CASC2D 모형의 매개변수를 자동으로 추정하는 기술이 요구되며, 본 연구에서는 매개변수 전역 최적화 방법인 SCE-UA(The Shuffled Complex Evolution, University of Arizona) 기법을 활용하였다. 본 연구에서 사용한 수문모형의 적용성을 평가한 결과 대상유역에 대한 적용성이 높은 것으로 나타났으며, 연계된 두 모형의 유출거동이 유사하게 나타난 것으로 확인되었다. 본 연구에서는 Nesting 기법을 이용하여 0.5m 하천 수위의 상승 여부에 따라 돌발홍수의 발생 가능성을 예측하는 기법을 제안하였으며, 돌발홍수 사례와 일반호우사상으로부터 이 방법의 적용성을 평가하였다. 실제 돌발홍수가 발생한 유역을 선정하고 연계된 두 모형을 대상 유역에 적용한 결과 Nesting 기반의 돌발홍수 예측방법은 기존의 한계유출량 산정 방법에서 반영하지 못한 사상을 적절히 반영한 것으로 나타났다. 본 연구에서 개발한 Nesting 기법을 이용한 돌발홍수 예측모형은 일반적인 강우량 비교의 돌발홍수 예측방법에서 벗어나 새로운 돌발홍수 예측방법을 제안한 측면에서 큰 의미가 있다고 사료되며, 이러한 연구 결과는 실시간 돌발홍수 예측 시스템의 기본 모형으로 활용이 가능할 것으로 판단된다.

  • PDF

Characterization of Flash Flooding in Small Watersheds for Design Rainfalls (설계강우량에 대한 소유역에서의 돌발홍수특성 고찰)

  • Jang, Ho-Yun;Song, Jae-Ha;Choi, Hyun-Il
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2011.05a
    • /
    • pp.430-430
    • /
    • 2011
  • 최근 지구온난화, 엘리뇨 및 라니냐 등 지구환경 변화에 따른 기후변화의 영향으로 짧은 시간에 매우 높은 강도를 가진 이상호우에 의해 많은 인명과 재산피해가 발생하고 있다. 우리나라의 경우에도 1990년대 후반부터 과거와 달리 국지적 집중호우가 빈번히 발생하고 있으며 집중호우에 의한 홍수는 우리나라의 가장 빈번한 자연재해 중 하나가 되었다. 이러한 성격의 홍수는 소유역 규모의 좁은 지역과 급경사지역에서 짧은 지속시간과 집중적인 강우강도에 의해 발생하고, 빠른 유속과 토사를 동반하는 빠른 수문반응으로 홍수에 대비할 시간이 부족한 것이 특징이기 때문에 기존의 홍수예보모형을 이용하여 발생홍수의 특성을 예측하기에는 많은 어려움이 있다. 유출수문곡선의 특성을 분석하여 홍수의 특성을 분석하는 연구는 Kyiamah (1996)가 유출수문곡선의 기초적인 상승곡선, 지체시간, 첨두홍수량을 이용하여 돌발홍수사상에 대한 크기를 산정하였으며, 이를 바탕으로 Bhaskar 등 (2000)은 유출수문곡선의 상승부 기울기, 첨두 홍수량비, 홍수 반응시간을 이용하여 돌발홍수지수(Flash Flood Index)를 산정하고 이 지수에 의해 돌발홍수를 설명하고자 하였다. 국내에서는 정재철 (2000)이 보청천을 대상으로 단 몇 개의 사상만을 대상으로 Bhaskar 등 (2000)이 제시한 돌발홍수지수를 적용한 바가 있다. 그러나, 이들 연구에서는 소수의 수문사상만을 이용하였기 때문에 상대심도를 산정하는데 있어 문제가 있으며 상대심도를 산정하는데 있어 각 심도계수들의 임의적인 도수분포를 이용하였기 때문에 매우 주관적이라고 할 수 있다. 김병식 등 (2008)은 한강유역의 과거 101개의 홍수사상에 대해 돌발홍수의 상대심도를 파악하기 위하여 돌발홍수지수를 산정하고 2006년 7월의 집중호우에 의해 발행한 홍수사상의 돌발홍수 심도를 시간 및 공간적으로 정량화하였다. 이러한 기존의 연구는 홍수심도 산정시에 필요한 유출수문곡선을 실측된 자료를 이용하여 산정하였으나 국내의 소유역의 경우 실측된 유출수문곡선 자료가 그다지 많지 않은 관계로 인해 홍수심도를 산정하는데 많은 어려움을 내포하고 있다. 따라서 본 연구에서는 미계측 소유역중 시범유역을 선정하고 30년 이상 장기간 실측 강우의 기왕최대 시강우량 자료에 대하여 강우-유출모형을 통한 홍수유출수문곡선을 모의한 후, 빈도별 확률강우량에 대한 수문곡선 특성인자들의 비를 무차원 지수화하여 극한홍수사상에 대한 설계강우의 취약성을 평가하기 위한 홍수위험지수 (Flood Hazard Index) 산정방법을 제시하였다.

  • PDF