• 제목/요약/키워드: Flood effects analysis

검색결과 183건 처리시간 0.03초

홍수조절댐에서의 배사관 설치에 따른 상류 하천의 하상변동에 관한 수치모의 연구 (Numerical Analysis for Bed Changes in the Upstream Channel due to the Installation of Sediment Release Openings in the Flood Control Dam)

  • 지운;손광익;김문모
    • 한국수자원학회논문집
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    • 제42권4호
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    • pp.319-329
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    • 2009
  • 홍수피해를 경감시키고 홍수조절을 목적으로 계획되는 홍수조절용댐의 경우 홍수 발생 기간 외에는 상류와 하류 하천간의 흐름 차단을 억제하고 상류로부터 유입되는 유사가 댐 상류 부분에 퇴적되는 현상을 방지하기 위해 댐에 상시 개방되어 있는 배사관을 설치하기도 한다. 국내에서는 임진강 유역의 홍수피해 저감을 위해 건설되는 한탄강홍수조절댐에 배사관과 생태통로를 설치하도록 계획되었다. 본 연구에서는 1차원 HEC-6 모형을 이용하여 한탄강홍수조절댐 건설로 인한 댐 상류의 퇴사현상을 댐 건설 전의 현상과 비교 분석하였으며 연평균유량 조건뿐만 아니라 연간 유량변동을 고려한 대표유량수문곡선을 적용하여 퇴사현상을 모의하였다. 수치모의 결과, 댐 건설로 인한 하류단 수위 변화가 발생하더라도 하상변동의 영향은 댐에서 상류 2 km 구간을 넘지 않는 것으로 나타났다. 또한 댐 건설 후 배사관의 설치 유무에 따른 배사관 주변과 댐 상류 하상 변화를 예측하기 위해 2차원 RMA2 및 SED2D 모형을 이용하였으며 한탄강홍수조절용댐의 댐 저부에 설치된 배사관의 배사효과는 저수지 내의 퇴적고를 저감시키는 효과가 있는 것으로 나타났다.

댐운영에 따른 하류하천 유량의 공간적 변동성 평가 (Effect of Dam Operation on the Spatial Variability of Downstream Flow)

  • 이정은;이정우;김철겸;정일문
    • 지질공학
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    • 제33권4호
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    • pp.627-638
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    • 2023
  • 본 연구에서는 김천부항댐이 위치한 감천유역을 대상으로 댐운영에 따른 하류하천 유량의 공간적인 변동성을 평가하고자 하였다. 특히, 다목적댐의 주요기능인 치수적인 측면에서의 홍수저감과 이수적인 측면에서의 갈수기 유량확보 효과를 정량적으로 분석하였다. 대상유역에 대하여 SWAT-K 모델링을 수행하여, 댐 하류하천의 4개 수위관측지점 관측유량과 모의유량을 비교한 결과, R2와 NSE 모두 0.75 이상의 적합도를 확보하였다. 댐의 홍수저감효과의 공간적 분석을 위해 연최대 홍수량을 중심으로 분석한 결과, 4개 지점에서의 홍수저감율은 8.5~25.0%로 나타났다. 갈수기 유량확보 효과에 대해서는 유황곡선을 중심으로 평가하였으며, 특히 평균갈수량의 경우에는 33~198%의 유량증가가 이루어짐을 알 수 있었다.

FLOW-3D를 이용한 우이천의 홍수특성 분석 (Analysis of the flood Characteristics in the Woo-Ee Stream Using FLOW-3D)

  • 윤선권;문영일;김종석;오근택;이수곤
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2007년도 정기총회 및 학술발표대회
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    • pp.603-607
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    • 2007
  • Recently, the frequency of unexpecting heavy rains has been increased due to abnormal climate and extreme rainfall. There was a limit to analyze one dimension or two dimension stream flow of domestic rivers that was applied simple momentum equation and fixed energy conservation. Therefore, hydrodynamics flow analysis in rivers has been needed three dimensional numerical analysis for correct stream flow interpolation. In this study, CFD model on FLOW-3D was applied to stream flow analysis, which solves three dimension RANS(Reynolds Averaged Navier-Stokes Equation) control equation to find out physical behavior and the effect of hydraulic structures. Numerical simulation accomplished those results was compared by using turbulence models such as $k-{\backepsilon}$, RNG $k-{\backepsilon}$ and LES. Those numerical analysis results have been illustrated to bends and junctions by the turbulence energy effects, velocity of flow distributions, water level pressure distributions and eddy flows.

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Quantifying the effects of climate variability and human activities on runoff for Vugia - Thu Bon River Basin in Central of Viet Nam

  • Lan, Pham Thi Huong;Thai, Nguyen Canh;Quang, Tran Viet;Long, Ngo Le
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.233-233
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    • 2015
  • Vu Gia - Thu Bon basin is located in central Vietnam between Truong Son mountain range on the border with Lao in the west and the East Sea in the east. The basin occupies about 10,350 km2 or roughly 90% of the Quang Nam Province and includes Da Nang, a very large city with about 876,000 inhabitants. Total annual rainfall ranges from about 2,000 mm in central and downstream areas to more than 4,000 mm in southern mountainous areas. Rainfall during the monsoon season accounts for 65 to 80% of total annual rainfall. The highest amount of rainfall occurs in October and November which accounts for 40 to 50% of the annual rainfall. Rainfall in the dry season represents about 20 to 35% of the total annual rainfall. The low rainfall season usually occurs from February to April, accounting for only 3 to 5% of the total annual rainfall. The mean annual flow volume in the basin is $19.1{\times}109m 3$. Similar to the distribution of rainfall, annual flows are distinguished by two distinct seasons (the flood season and the low-flow season). The flood season commonly starts in the mid-September and ends in early January. Flows during the flood season account for 62 to 69% of the total annual water volume, while flows in the dry season comprise 22 to 38% of total annual run-off. The water volume gauged in November, the highest flow month, accounts for 26 to 31% of the total annual run-off while the driest period is April with flows of 2 to 3% of the total annual run-off. There are some hydropower projects in the Vu Gia - Thu Bon basin as the cascade of Song Bung 2, Song Bung 4, and Song Bung 5, the A Vuong project currently under construction, the Dak Mi 1 and Dak Mi 4 projects on the Khai tributary, and the Song Con project on the Con River. Both the Khai tributary and the Song Con join the Bung River downstream of SB5, although the Dak Mi 4 project involves an inter-basin diversion to Thu Bon. Much attention has recently been focused on the effects that climate variability and human activities have had on runoff. In this study, data from the Vu Gia - Thu Bon River Basin in the central of Viet Nam were analyzed to investigate changes in annual runoff during the period of 1977-2010. The nonparametric Mann-Kendall test and the Mann-Kendall-Sneyers test were used to identify trend and step change point in the annual runoff. It was found that the basin had a significant increasing trend in annual runoff. The hydrologic sensitivity analysis method was employed to evaluate the effects of climate variability and human activities on mean annual runoff for the human-induced period based on precipitation and potential evapotranspiration. This study quantitatively distinguishes the effects between climate variability and human activities on runoff, which can do duty for a reference for regional water resources assessment and management.

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자연하도 하구부의 방사보에 의한 수리학적특성 해석 (Analysis of Hydraulic Characteristics by Sediment Protection Weir on Natural River Estuary)

  • 안승섭;최윤영
    • 한국산업융합학회 논문집
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    • 제4권1호
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    • pp.51-60
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    • 2001
  • This study examines the effects of removal of the sediment protection weir at Taehwa river mouth on hydraulic and around river environment considering the fact that the effects of the sediment protection weir which is installed to protect water level drop of Ulsan harbor caused by sediments according to flood in Taehwa river, Dong-chun, and so forth may add water quality contamination by flow stagnance in normal and drought period and accumulation of pollutants. The result is as follows. First, it is estimated from the examination of variation characteristics water depth and level for Taehwa river before and after removal of the sediment protection weir that about 0.01m of water depth down according to removal of the sediment protection weir occurs when low flow runs between the sediment protection weir which is located about 2.3km away from the estuary and Samho-gyo which is about 9.0km away from the sediment protection weir, and about 0.01~0.56m(directly upstream point of the sediment protection weir 0.56m, Myongchon-gyo 0.14m, Ulsan-gyo 0.03m, and Taehwa-gyo 0.02m) downs when design flood flows between the sediment protection weir and the upstream of Taehwa-gyo which is 10km away from the sediment protection weir. Therefore, it is thought that variation of hydraulic characteristics of water depth down and so on according to removal of the sediment protection weir is slight because water depth variation is only about 1cm between directly upstream point of the sediment protection weir and Samho-gyo. Next, it is estimated from the examination of variation characteristics of flow velocity for Taehwa river before and after removal of the sediment protection weir that about 0.0lm/s of flow velocity increase occurs between the directly upstream point of the sediment protection weir which is about 2.4km away from the estuary and the directly upstream point of Samho-gyo when low flow runs, and about 0.01~0.44m/s increases between the sediment protection weir and Samho-gyo when design flood flows. Therefore, riverbed erosion by the increased flow velocity is concerned but it is thought that the concern about riverbed erosion is not great because the mean velocity is about 0.07~1.36m/s when low flow runs, and about 1.02~2.41m/s when design flood flows for the sector which experiences the flow velocity variation.

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물리적.개념적 연속 유출모형에 의한 유출해석 (Runoff Analysis on the Physically-Based Conceptual Time-Continuous Runoff Model)

  • 배덕효;조원철
    • 물과 미래
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    • 제28권6호
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    • pp.193-202
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    • 1995
  • 본 연구의 목적은 하천유량에 결정적 영향을 미치는 토양수분 상태의 시간적 변화를 고려할 수 있는 강우-유출 모형을 평창강 유역에 적용하여 홍수예측 모형으로서의 가능성을 검증하는데 있다. 사용된 모형은 Sacramento 토양수분 모형과 비선형 다중저수지 형태의 유역홍수 추적 모형으로 구성된 물리적 개념에 근거를 둔 연속을 모형이다. 모형의 매개변수 추정 및 모형 검증을 위해서 각각 7년, 3년간의 일 강수량 및 증발산 자료를 이용하였다. 모형의 적용 결과, 저유량일 때에는 계산유량이 관측유량보다 다소 적게 계산되었지만, 홍수시를 포함하여 전반적으로 만족할 만한 유출계산(상관계수 0.87)을 할 수 있었다. 또한, 홍수와 가뭄과 같은 극한사상이 발생하였을 때의 강수와 토양습윤 상태가 유출에 미치는 영향을 해석하였다.

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도시하천의 부분복개화에 의한 하천수리특성치의 변화 (Changes of Fluvial Hydraulic Characteristics due to the Semi-Convering Work of Urban Stream)

  • 장인수
    • 한국산업융합학회 논문집
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    • 제2권1호
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    • pp.35-43
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    • 1999
  • The purpose of this study is to derive the optimal methodology estimating the changes of fluvial hydraulic characteristics due to semi-covering work of urban stream. First, after collecting the data of the daily maximum rainfall of Chungju gaging station, the frequency analysis was carried out with frequency factor method, which includes normal, two-parameter and three-parameter lognormal, Gumbel-Chow, pearson type III, log-pearson type III distribution, and the goodness of fit test was executed by $x^2$-test and Kormogorov-Smimov test. Using the SCS method, the effective rainfall was estimated and the peak flow was calculated by the area-routing method. The HEC-2 model was applied to calculate water surface profiles for steady, gradually varied flow at Kyohyun river system in Chungju city. The model was applied to floodplain and riverbed management to evaluate flood way encroachments and to delineate flood hazard by riverside roadway construction. The model also was used to evaluate effects on water surface profiles of river improvement and levees as well as the presence of bridges or other hydraulic structures in the floodplain.

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홍수기 낙동강 하천플륨의 3차원 거동해석 (Three-Dimensional Behavior of Nakdong River Plume during the Flood Period in Summer)

  • 이종섭;윤은찬;백승우;이재철
    • 한국수산과학회지
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    • 제36권5호
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    • pp.549-561
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    • 2003
  • Behavior of the Nakdong River plume was studied by the analysis of the observed CTD data and numerical simulations using three-dimensional Princeton Ocean model (POM) in which the river discharge, tides and winds were considered. During the flood season of summer the 30 psu isohaline expands northward to Daebyeon and southwestward to Samcheonpo. The model results show that the isohalines are approximately parallel to the bottom slope, which suggests the possibility of upwelling induced by the topographic effects. Northwesterly wind expands the river plume to the offshore direction so that the inflow of fresh plume water into Jinhae Bay through the Gaduk Channel is constrained, then the coastal upwelling seems to be caused by the wind-driven current at the southern edge of Gaduk Island. Southwesterly wind expands the river plume toward Daebyeon, and the inflow of fresh water into Jinhae Bay is also constrained.

홍수터에서의 범람 홍수류에 의한 2차원 수치모의 (Two Dimensional Analysis on Inundated Flow in Floodplain)

  • 한건연;정재학;이을래
    • 한국수자원학회논문집
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    • 제33권4호
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    • pp.483-493
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    • 2000
  • 본 연구는 2차원 유한요소모형인 RMA를 이용하여 하도흐름의 홍수터로의 범람현상을 모의하였다. Marsh porosity 기능을 이용하여 계산요소가 젖은 하도에서 마른하도로 점진적으로 변화하는 현상을 가능하게 한다. 젖은/마른하도 계산기능에 대한 적용성을 확인하기 위해서 균일한 사다리꼴 하도구간에 적용하였고 사행하도에서 홍수터를 통한 홍수모의를 실시하였다. 사행하도에 대한 적용결과 홍수터에서의 흐름의 단축현상을 확인할 수 있었고 다양한 사행도와 홍수터 조도에 대한 영향을 평가하였다. 본 모형을 금강 본류부에 적용하였는데 wet/dry 계산은 동일한 유한요소망을 이용하여 다양한 유량조건에서의 모의를 실시하였다.

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XP-SWMM 모형을 적용한 도시지역의 침수해석 (Flood Inundation Analysis using XP-SWMM Model in Urban Area)

  • 이종형;연기석
    • 한국방재학회 논문집
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    • 제8권5호
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    • pp.155-161
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    • 2008
  • 도시유역은 자연하천유역에 비해 다른 유형의 홍수피해를 보여주고 있다. 최근에 불투수면적의 증가로 홍수도달시간의 감소와 높은 첨두유량의 발생을 가져오면서 도시홍수피해의 원인이 되고있다. 본 연구에서는 XP-SWMM모형을 적용하여 침수심, 침수 면적을 시간대별로 침수해석을 수행하였으며, 침수해석시 건물의 영향을 고려하였다. XP-SWMM모형의 보정 및 검증을 위해 두 개의 강우사상(2005.06, 2005.07)을 적용하였고, 하천 외수위의 변하는 HEC-RAS모형을 통해 산정하였다. 모의결과 실제 관측된 침수면적(21.41ha)에 비해 산정된 침수구역의 면적은 23.45%로서 9.5% 과다하게 모의되었다. 또한 XP-SWMM모형의 DTM(DigitalTerrain Model)을 구축하여 주요 시간대별 건물의 영향에 따른 침수범위를 분석하였다.