• Title/Summary/Keyword: Inundation area

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Optmized Design for Flood Mitigation at Sea Side Urban Basin (해안 도시유역의 수재해 저감설계 최적화 기법 연구)

  • Kim, Won Bum;Kim, Min Hyung;Son, kwang Ik;Jung, Woo Chang
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.267-267
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    • 2016
  • Extreme events, such as Winnie(1987), Rusa(2002), Maemi(2003) at sea-side urban area, resulted not only economic losses but also life losses. The Korean sea-side characterisitcs are so complicated thar the prediction of sea level rise makes difficult. Geomophologically, Korean pennisula sits on the rim of the Pacific mantle so the sea level is sensitive to the surges due to earth quake, typoon and abnormal climate changes. These environmetns require closer investigation for the preparing the inundatioin due to the sea level rise with customized prediction for local basin. The goal of this research is provide the information of inundation risk so the sea side urban basin could be more safe from the natural water disastesr.

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Inundation Analysis in Urban Area Considered Head Loss Coefficients of Curved Pipes (만곡부 관거의 손실 계수를 고려한 도시 지역의 침수 해석)

  • Won, Changyeon;Park, Jongpyo;Jun, Hwan Don
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.201-201
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    • 2017
  • 서울시 효자배수분구(광화문 지역)는 2010년, 2011년 호우로 인해 침수 피해가 많이 발생했던 지역으로 당시 주요 침수피해 원인은 광화문 사거리 및 경복궁역 인근에 위치하고 있는 굴곡 관로의 손실수두 증가(유입, 만곡, 마찰손실 등), 지하매설물로 인한 통수단면 감소 등으로 조사되었다. 따라서 대상지역의 침수 원인을 정확히 분석하기 위해서는 관거의 만곡, 급 확대 및 급 축소에 따른 손실계수의 적용이 요구된다. 손실계수는 유입부, 만곡부에 대한 계산식을 이용하여 산정하고 모형에 적용하였으며 적정 손실계수 값을 얻기 위해 손실계수에 대한 민감도 분석을 수행하였다. 모의 검토 대상기간은 우수관거내 수심 측정자료가 존재하는 4개의 이벤트를 선정하였으며 같은기간에 해당하는 AWS 매분단위 강우자료를 취득하여 모의에 적용하였다. 또한, 적정 손실계수를 선정하기 위해 관측치와 모의치의 적합도를 평가하였으며, 평가지표는 자료 개수에 관계없이 절대적으로 평가할 수 있는 NSE(Nash-Sutcliffe Efficiency)를 사용하였다. 손실계수 적용 여부에 따른 분석결과 손실계수를 적용한 모의치가 관측치의 오차가 미적용한 모의치보다 적합도의 평가지표가 우수하게 분석되었다. 손실계수 민감도 분석 결과는 경험식에 의해 산정된 손실계수를 적용한 Case3의 NSE가 가장 우수하게 분석되었다. 이와같이 도시 지역의 침수분석에 있어 우수관거에 대한 손실계수 적용으로 분석모형의 정밀도를 높일 수 있는 것으로 판단된다.

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A Study on the prediction method of flooded area in rural watershed using runoff characteristics and inundation DB (농촌유역에 대한 SWMM모형의 유출특성과 침수DB를 이용한 침수면적 예측방법에 관한 연구)

  • Hwang, Sung-Hwan;Chun, Soo-Bin;Choi, Ji-Hyeok;Moon, Young-Il
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.31-31
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    • 2018
  • 본 연구는 내수침수에 의한 침수면적 예측을 위하여 1차원 유출모형의 유출특성을 이용하여 침수면적 예측방법의 최적화이다. 2017년 강우의 초기강우와 첨두강우 특성을 적용한 경우에 정확한 침수면적 추정이 가능한 것을 확인한 바가 있다. 이러한, 결과에 추가적으로 SWMM 모형의 유출결과 자료의 특성인자를 이용하여 침수DB를 선택한 경우에 침수면적 예측 정확도를 분석하였다. 강우지속시간 및 강우량의 변화에 따른 유출결과의 변화를 분석하여 강우특성에 따른 SWMM 모형의 노드별 유출결과의 특성인자 변화를 분석하여 침수DB에서 실제 침수면적 선정방법을 정리하였다. 정리된 방법을 이용하여 유출결과 자료 특성인자를 이용한 최적의 침수DB 선정방법을 돌출하였다. 강우 특성 인자에서 침수DB를 선정하는 방법과 비교하여 강우유출모형의 모의결과를 이용한 경우에 약 6,000여개 노드를 기준으로 5~10분의 모의시간이 추가적으로 소요되어 실시간 침수 DB 선정에는 어렵지만, 준실시간 실제 유출량을 고려한 침수DB 선정이 가능할 것이다. 따라서, 강우특성 도출에 따라 1차적으로 침수DB를 선정하고, 강우유출모형의 유출 특성에 따라서 2차적으로 침수DB를 선정한다면, 예경보 시스템에서 대응시간 확보와 예측 정확도 유지에 긍정적인 방안으로 도입될 수 있을 것이다. 침수DB 구축은 많은 침수면적 산정연구에 이용하였던 TUFLOW 모형을 이용하여 침수DB를 구축하였다. SWMM 모형을 이용하여 강우유출을 모의하고, 침수면적을 TUFLOW를 이용하여 구축한 다양한 호우사상에 대한 침수DB를 이용하여 준실시간 침수면적 예측하는 방법은 향후, 예경보 시스템 구축에 이바지 할 수 있을 것입니다.

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Analysis of Inundation Area in Namgang According to Flood Return Period Using HEC-geoRAS (HEC-geoRAS를 이용한 빈도 별 홍수에 따른 남강 침수면적 분석)

  • Lee, Sun Mi;Kim, Jin Hyuck;Park, Inhwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.239-239
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    • 2022
  • 기후변화로 인한 홍수패턴 변화로 인해 침수피해 발생 빈도가 증가하고 있다. 특히 2020년에는 기록적인 장기간 폭우로 인해 댐 하류 지역의 수몰피해가 발생한 바 있다. 예상을 벗어난 이상 홍수 발생 시 댐 방류로 인한 하류 지역 피해예측 및 주민 안전을 위해 침수범위를 예측하고 대응하는 것이 필요하다. 남강댐은 인공방수로 운영을 통해 홍수량을 가화천과 분담하는 운영방식을 이용하고 있으나 댐 직하류에는 진주시가 위치하여 홍수방류에 따른 지역 침수구간을 예측하는 것이 중요하다. 따라서 본 연구에서는 재현기간 별 남강댐 홍수 방류량에 대해 남강댐하류~낙동강 합류부 구간의 홍수위 변화 분석 및 침수면적 계산을 수행했다. HEC-RAS를 이용한 남강 본류 수리해석을 위해 2013년 하천기본계획 단면을 이용하였으며, HEC-geoRAS를 이용한 침수면적 계산을 위해 2020년 수치지형도를 이용했다. HEC-RAS 모의를 위한 상류 경계조건은 남강댐 홍수 방류량을 적용하였으며, 하류 경계조건은 빈도 별 홍수위를 적용한 정상상태 모의를 수행했다. 빈도 별 남강댐 홍수 방류량은 남강댐 상류로 유입되는 빈도 별 홍수량에서 남강댐 저류 가능 홍수량을 제외한 유량을 방류하는 시나리오를 가정하여 결정했다. 50년, 80년, 100년, 200년 빈도 홍수량에 대한 홍수위 모의 결과, 우안 지역은 제방고를 초과하는 홍수위가 발생하지 않은 반면 좌안에서는 농경지를 중심으로 하천범람이 발생했다. 특히 80년 빈도 이상 홍수량에 대해 범람지점이 50년 빈도 홍수량에 비해 2배 이상 증가했다. 또한 침수면적을 계산한 결과, 만곡부와 지류 합류부 주변에서 주로 침수가 발생함을 확인할 수 있었다. 빈도 별 침수면적을 비교해보면 50년 빈도의 침수면적을 기준으로 80년, 100년, 200년 빈도에서 각각 9.4%, 18.7%, 53.1% 증가한 침수면적을 나타냈다.

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Analysis of inundation and rainfall-runoff in mountainous small catchment using the MIKE model - Focusing on the Var river in France - (MIKE 모델을 이용한 산지소유역 강우유출 및 침수 분석 - 프랑스 Var river 유역을 중심으로 -)

  • Lee, Suwon;Jang, Dongwoo;Jung, Seungkwon
    • Journal of Korea Water Resources Association
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    • v.56 no.1
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    • pp.53-62
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    • 2023
  • Recently, due to the influence of climate change, the occurrence of damage to heavy rain is increasing around the world, and the frequency of heavy rain with a large amount of rain in a short period of time is also increasing. Heavy rains generate a large amount of outflow in a short time, causing flooding in the downstream part of the mountainous area before joining the small and medium-sized rivers. In order to reduce damage to downstream areas caused by flooding, it is very important to calculate the outflow of mountainous areas due to torrential rains. However, the sewage network flooding analysis, which is currently conducting the most analysis in Korea, uses the time and area method using the existing data rather than calculating the rainfall outflow in the mountainous area, which is difficult to determine that the soil characteristics of the region are accurately applied. Therefore, if the rainfall is analyzed for mountainous areas that can cause flooding in the downstream area in a short period of time due to large outflows, the accuracy of the analysis of flooding characteristics that can occur in the downstream area can be improved and used as data for evacuating residents and calculating the extent of damage. In order to calculate the rainfall outflow in the mountainous area, the rainfall outflow in the mountainous area was calculated using MIKE SHE among the MIKE series, and the flooding analysis in the downstream area was conducted through MIKE 21 FM (Flood model). Through this study, it was possible to confirm the amount of outflow and the time to reach downstream in the event of rainfall in the mountainous area, and the results of this analysis can be used to protect human and material resources through pre-evacuation in the downstream area in the future.

The Study on the Flora and Vegetation of Salt Marshes of Dongjin-river Estuary in Jeonbuk (전북 동진강 하구역 일대의 염습지 식물상 및 식생에 관한 연구)

  • Kim Chang-Hwan;Lee Kyeong-Bo;Kim Jae-Duk;Cho Tae-Dong;Kim Mun-Suk
    • Journal of Environmental Science International
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    • v.14 no.9
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    • pp.817-825
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    • 2005
  • The purpose of this study was to research about salt marsh flora and vegetation in the Dongjin-river estuary area where has a project for Sea Man Geum Reclaimed Land so that we can foster foundation on restoration of an ecological habitat, development of applicable plant and establishment of a conservation policy after deceloping the reclaimed land for salt marsh vegetation which has great value ecologically. In conclusion, we was distributed that there are 7 families 21 genera, 25 species, 2 varieties of vascular plant at the Dongjin-river estuary area which have 27 taxa in total and are $0.64\%$ among 4,191 of korean vascular plant. There are also 2 family, 2 genus, 2 species of a naturalized plant which are $1.1\%$ of indicator of a naturalized plant salt marsh vegetation of the downstream are very much affected by the time of inundation, tidal water so that a low degree of salt marsh has frequent flooding by sea water and has a pure group of Suaeda japonica. A Phragmites communis, Carex scabrifolia are distributed mainly around a waterway of salt marsh and Zoysia sinica, Atriplex subcordata, Phragmites communis are living in stock as forming into patch around medium salt marsh. Suaeda asparagoides, Phacelurus latifolius are living around a little high ground and a Phragmites communis is a behind vegetation of Phacelurus latifolius and a part of the Phragmites communis are living along with waterway in a salt marsh as a community. By the 2-M method twelve plant communities were recognized ; Suaeda japonica. Carex scabrifolia, Zoysia sinica, Artemisia scoparia, Phacelurus latifolius, Phragmites communis, Suaeda maritima, Suaeda japonica-Atriplex gmelini, Phragmites communis-Suaeda japonica, Suaeda japonica-Salicornia herbacea, Salicornia herbacea-Suaeda aspar-agoides and Scirpus planiculmis community. The actual vegetation map was constructed on the grounds of the communities classified and other data.

Gold-Silver Mineralization in the Kwangyang-Seungju Area (광양-승주지역 금은광상의 광화작용)

  • Lee, Chang Shin;Kim, Yong Jun;Park, Cheon Yong;Ko, Chin Surk
    • Economic and Environmental Geology
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    • v.26 no.2
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    • pp.145-154
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    • 1993
  • Gold-silver deposits in the Kwangyang-Seungju area are emplaced along $N4^{\circ}{\sim}10^{\circ}W$ to $N40^{\circ}{\sim}60^{\circ}W$ trending fissures and fault in Pre-cambrian Jirisan gneiss complex or Cretaceous diorite. Mineral constituents of the ore from above deposits are composed mainly of pyrite, arsenopyrite, pyrrhotite, magnetite, sphalerite, chalcopyrite, galena and minor amount of electrum, tetrahedrite, miargyrite, stannite, covellite and goethite. The gangue minerals are predominantly quartz and calcite. Gold minerals consist mostly of electrum with a 56.19~79.24 wt% Au and closely associated with pyrite, chalcopyrite, miargyrite and galena. K-Ar analysis of the altered sericite from the Beonjeong mine yielded a date of $94.2{\pm}2.4\;Ma$ (Lee, 1992). This indicates a likely genetic tie between ore mineralization and intrusion of the middle Cretaceous diorite ($108{\pm}4\;Ma$). The ${\delta}^{34}S$ values ranged from +1.0 to 8.3‰ with an average of +4.4‰ suggest that the sulfur in the sulfides may be magmatic origin. The temperatures of mineralization by the sulfur isotopic composition with coexisting pyrite-galena and pyrite-chalcopyrite from Beonjeong and Jeungheung mines were $343^{\circ}C$ and $375^{\circ}C$ respectively. This temperature is in reasonable agreement with the homogenization temperature of primary fluid inclusion quartz ($330^{\circ}C$ to $390^{\circ}C$; Park.1989). Four samples of quartz from ore veins have ${\delta}^{18}O$ values of +6.9~+10.6‰ (mean=8.9‰) and three whole rock samples have ${\delta}^{18}O$ values of +7.4~+10.2‰ with an average of 7.4‰. These values are similar with those of the Cretaceous Bulgugsa granite in South Korea (mean=8.3‰; Kim et al. 1991). The calculated ${\delta}^{18}O_{water}$ in the ore-forming fluid using fractionation factors of Bulgugsa et al. (1973) range from -1.3 to -2.3‰. These values suggest that the fluid was dominated by progressive meteoric water inundation through mineralization.

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A Study on the Generation of DEM for Flood Inundation Simulation using NGIS Digital Topographic Maps (NGIS 수치지형도를 이용한 효율적인 홍수범람모의용 지형자료 구축에 관한 연구)

  • Kwon, Oh-Jun;Kim, Kye-Hyun
    • Journal of Korean Society for Geospatial Information Science
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    • v.14 no.1 s.35
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    • pp.49-55
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    • 2006
  • Nowadays, flood hazard maps have been generated to minimize the damages from the flooding. To generate such flood hazard maps, LiDAR data can be used as data source with higher data accuracy. LiDAR data, however, requires relatively higher cost and longer processing time. In this background, this study proposed DEM generation using NGIS digital topographic maps. For that, breaklines were processed to count directions of water flows. In addition, the river profile data, unique data source to represent real topography of the river area, were integrated to the breaklines to generate DEM. City of Kuri in Kyunggi Province was selected for this study and 1:1,000 and 1:5,000 topographic maps were integrated to process breaklines and river profile data were also linked to generate DEM. The generated DEM showed relatively lower vertical accuracy from mixing 1:1,000 and 1:5,000 topographic maps since 1:1,000 topographic maps were not available for some portion of the area. However, the DEM generated demonstrated reasonable accuracy and resolution for flood map generation as well as higher cost saving effects. On the contrary, for more efficient utilization of NGIS topographic maps, periodic map updating needs to be made including technical consideration in building breaklines and applying interpolation methods.

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Application and Comparison of Dynamic Artificial Neural Networks for Urban Inundation Analysis (도시침수 해석을 위한 동적 인공신경망의 적용 및 비교)

  • Kim, Hyun Il;Keum, Ho Jun;Han, Kun Yeun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.38 no.5
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    • pp.671-683
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    • 2018
  • The flood damage caused by heavy rains in urban watershed is increasing, and, as evidenced by many previous studies, urban flooding usually exceeds the water capacity of drainage networks. The flood on the area which considerably urbanized and densely populated cause serious social and economic damage. To solve this problem, deterministic and probabilistic studies have been conducted for the prediction flooding in urban areas. However, it is insufficient to obtain lead times and to derive the prediction results for the flood volume in a short period of time. In this study, IDNN, TDNN and NARX were compared for real-time flood prediction based on urban runoff analysis to present the optimal real-time urban flood prediction technique. As a result of the flood prediction with rainfall event of 2010 and 2011 in Gangnam area, the Nash efficiency coefficient of the input delay artificial neural network, the time delay neural network and nonlinear autoregressive network with exogenous inputs are 0.86, 0.92, 0.99 and 0.53, 0.41, 0.98 respectively. Comparing with the result of the error analysis on the predicted result, it is revealed that the use of nonlinear autoregressive network with exogenous inputs must be appropriate for the establishment of urban flood response system in the future.

Experimental study of the air emission effect in the tangential and the multi-stage spiral inlet (접선식 유입구와 다단식 나선 유입구의 공기 배출 효과에 관한 실험적 연구)

  • Seong, Hoje;Rhee, Dong Sop;Park, Inhwan
    • Journal of Korea Water Resources Association
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    • v.52 no.4
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    • pp.235-243
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    • 2019
  • Recently, urban inundation was frequently occurred due to the intensive rainfall exceeding marginal capacity of the flood control facility. Furthermore, needs for the underground storage facilities to mitigate urban flood are increasing according to rapidly accelerating urbanization. Thus, in this study, drainage efficiency in drain tunnel connecting to underground storage was investigated from the air-core measurements in the drop shaft against two types of inlet structure. In case of the spiral inlet, the multi-stage structure is introduced at the bottom of the inlet to improve the vortex induction effect at low inflow discharge (multi-stage spiral inlet). The average cross-sectional area of the air-core in the multi-stage spiral inlet is 10% larger than the tangential inlet, and show the highly air emission effect and the highly inflow efficiency at the high inflow discharge. In case of the tangential inlets, the air emission effect decreased after exceeding the maximum inflow discharge, which is required to maintain the inherent performance of the tangential inlet. From the measurements, the empirical formula for the cross-sectional area of the air-core according to locations inside the drop shaft was proposed in order to provide the experimental data available for the inlet model used in experiments.