• Title/Summary/Keyword: WMS (watershed modeling system)

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Analysis of Hydrological Impact for Long-term Land Cover Change using WMS HEC-l Model in Anseong-Cheon Watershed (WMS HEC-1을 이용한 안성천 유역의 경년 수문 변화 분석)

  • Park, Geun-Ae;Kim, Seong-Joon
    • Proceedings of the Korean Society of Agricultural Engineers Conference
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    • 2002.10a
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    • pp.293-296
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    • 2002
  • The purpose of this study is to evaluate the hydrological impact due to temporal land cover change urbanization of Anseong-cheon watershed $(585.09km^2)$. WMS (Watershed Modeling System) HEC-1 was adopted, and burned DEM with $200{\times}200m$ resolution and soil map reclassified by hydrologic soil groups were prepared. Land cover for 1985, 1990, 1995 and 2000 were classified by maximum likelihood method, using Landsat MSS and TM imageries. Calibration and verification of HEC-1 were conducted using 4 storm events. Peak flow at Pyeong taek station increased $25.9m^3/sec$ during the past 15 years due to paddy and forest decrease. Streamflow impact by just paddy area decrease and forest area decrease were also analysed keeping watershed CN values unchanged of the given year, respectively.

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The Developmet and Application of GIS-Based Geomorpho-Hydrological Watershed Model (G2WMS) (GIS기반 지형수문유역모의 모형의 개발 및 적용 연구)

  • Kim, Hong-Tae;Shin, Hyun-Suk
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.1
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    • pp.123-133
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    • 2009
  • In this study, we developed the GIS-based Geomorpho-hydrological Watershed Modeling System($G^{2}WMS$) which could consider both nonlilear rainfall-runoff relationship based on Geomorpho-Climatic Unit Hydrograph(GCUH) as well as watershed system inducing river routing. The developed new model was calibrated at the gaged rainfall events at natural watersheds and previewed to apply at the ungaged mountain basins, such as Sulma basin for small mountain basin and Andong-Dam basin for large scale basin, compared single with partitioned basin in the observed unit hydrographs and rainfall-discharge events. Finally, at the large scale Andong dam basin, we concluded that partitioned basin cases which including th nonlinear GCUH and river routing methods were superior to single basins which including the traditional methods in rainfall-discharge simulation at the mountain basins.

Assessment of hydrological impact by long term land cover change using WMS HEC-1 model in Gyueongan-cheon watershed (WMS HEC-1을 이용한 경안천 유역의 경년 수문변화 분석)

  • Lee, Jun-Woo;Lim, Hyuk-Jin;Lee, Mi-Sun;Kim, Seong-Joon
    • Proceedings of the Korean Society of Agricultural Engineers Conference
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    • 2001.10a
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    • pp.330-334
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    • 2001
  • 1. The purpose of this study is to evaluate the hydrologic impact due to temporal land cover changes of Gyueongan-cheon watershed. 2. WMS(Watershed Modeling System) HEC-1 was adopted and the required data such as DEM(Digital Elevation Model), stream network, soil map were prepared, and land cover map was made by using Landsat TM data. 3. Due to the increase of urban area and paddy field, the runoff ratio increased 5.8% during the past decade.

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Analysis of Runoff in Han Stream through Optimization of Parameter on HEC-1 connected with WMS (WMS와 연계된 HEC-1 모형의 매개변수 최적화를 통한 한천 유역의 유출해석에 관한 연구)

  • Kang, Jeong Hoon;Lee, Eun Tae;Lee, Joo Heon;Park, Sang Chul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.1162-1166
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    • 2004
  • 본 연구에서는 미국의 Environmental Modeling Research Laboratory(EMRL)에서 개발한 지리정보시스템과 수문유출모형이 접목된 WMS(Watershed Modeling System) Ver.6.1 모형을 HEC-1모형과 연계하여 한강수계 안성천의 제1지류인 한천의 유출 해석을 실시하였다. 이를 위해 유역내의 지형특성인자 추출 및 하천망 구성(WMS), 재현기간별 지속시간별 확률강우량 산정(FARD2002), Huff분포법을 이용한 시간분포, ARF(Area Reduction Factor)적용, HEC-1내의 SCS단위도법, Snyder 단위도법, Clark의 유역추적법에 포함된 각각의 매개변수의 최적화를 시도하여 분석하고, 설계 홍수량 산정시 이용될 수 있는 지침 마련을 목적으로 하였다.

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Comparison of flood inundation simulation between one- and two-dimensional numerical models for an emergency action plan of agricultural reservoirs

  • Kim, Jae Young;Jung, Sung Ho;Yeon, Min Ho;Lee, Gi Ha;Lee, Dae Eop
    • Korean Journal of Agricultural Science
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    • v.48 no.3
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    • pp.515-526
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    • 2021
  • The frequency of typhoons and torrential rainfalls has increased due to climate change, and the concurrent risk of breakage of dams and reservoirs has increased due to structural aging. To cope with the risk of dam breakage, a more accurate emergency action plan (EAP) must be established, and more advanced technology must be developed for the prediction of flooding. Hence, the present study proposes a method for establishing a more effective EAP by performing flood and inundation analyses using one- and two-dimensional models. The probable maximum flood (PMF) under the condition of probable maximum precipitation (PMP) was calculated for the target area, namely the Gyeong-cheon reservoir watershed. The breakage scenario of the Gyeong-cheon reservoir was then built up, and breakage simulations were conducted using the dam-break flood forecasting (DAMBRK) model. The results of the outflow analysis at the main locations were used as the basis for the one-dimensional (1D) and two-dimensional (2D) flood inundation analyses using the watershed modeling system (WMS) and the FLUvial Modeling ENgine (FLUMEN), respectively. The maximum inundation area between the Daehari-cheon confluence and the Naeseong-cheon location was compared for each model. The 1D flood inundation analysis gave an area of 21.3 km2, and the 2D flood inundation analysis gave an area of 21.9 km2. Although these results indicate an insignificant difference of 0.6 km2 in the inundation area between the two models, it should be noted that one of the main locations (namely, the Yonggung-myeon Administrative and Welfare Center) was not inundated in the 1D (WMS) model but inundated in the 2D (FLUMEN) model.

Calculation of Runoff in Flood Basin Using GIS (GIS를 활용한 홍수유역의 유출량 산정)

  • 이형석;김인호
    • Spatial Information Research
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    • v.11 no.2
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    • pp.143-153
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    • 2003
  • In order to investigate the effect of a pouring rain that it follows in the typhoon, the effect analysis with actual measurement data of rainfall outflow it follows in flood basin is necessary. Also there is a case that it analyzes with the fact that the rainfall occurs identically in whole basin in case of the rainfall outflow analysis, but the actual rainfall distribution from the basin very will be irregular and the interpretation which it reflects must become accomplished. It created spatial information of terrain, land use and the soil using GIS. It created topographical factor of the subject area and calculated CN(runoff curve number) with WMS(Watershed Modeling System). It calculated runoff using a HEC-1 model and the Rational Method connected at the WMS. By connecting GIS and WMS, it calculated the effect of a pouring rain and runoff from the construction area. Also it will be able to apply with a basic data in more efficient runoff analysis.

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Runoff Analysis of Gagok Stream Basin using WMS Model (WMS모형을 이용한 가곡천유역의 유출해석)

  • Choi, Jong Ho;Jun, Kye Won
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.450-450
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    • 2015
  • 우리나라는 최근 기후변화로 인한 이상기후의 영향으로 태풍 및 국지성 집중호우의 발생빈도가 잦아지고 있으며, 이에 따른 풍수해 피해 양상 또한 과거와 비교되지 않을 만큼 대형화 되고 있다. 본 연구대상지역인 가곡천 유역은 강원도 산지로부터 발원하여 동해안으로 유입되는 산지하천 중 하나로 유로연장이 짧고 경사가 급하여 홍수기시 홍수도달시간이 매우 짧은 특징을 가지고 있어 하류부에서의 피해가 증가하고 있는 실정이다. 실제로 대상하천의 경우 2002년 태풍루사와 2003년 태풍매미 등에 의해 피해가 컸던 것으로 조사되었으며, 이러한 피해를 저감하기 위해서 정확한 유역의 유출해석이 필요하다. 따라서 본 연구에서는 가곡천 유역의 치수대책 수립을 위한 설계홍수량을 산정하기 위해 GIS 수문프로그램인 WMS(Watershed Modeling System)를 이용하여 수문해석에 필요한 수문인자들을 추출하고, WMS에 내장되어 있는 HEC-1 모형을 이용하여 유출해석을 수행하였다. 가곡천 유역에 대한 모형의 적합성 여부를 판별하기 위해 실제측정에 의해서 만들어진 수위-유량관계곡선과의 비교를 통해 모형의 적합성 여부를 검토하였다.

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Effect of Transport Capacity Formula on Spatial Distribution of Soil Erosion

  • Nguyen, Van Linh;Yeon, Minho;Cho, Seongkeun;Lee, Giha
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.150-150
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    • 2021
  • Soil erosion due to climate change is one of the global environmental issues. Especially, Korea is vulnerable to soil erosion as the frequency of extreme rainfall events and rainfall intensity are increasing. Soil erosion causes various problems such as reduced farmlands, deterioration of water quality in rivers, etc. To these severe problems, understanding the process of soil erosion is the first process. Then, it is necessary to quantify and analyze soil ersoion using an erosion model. Soil erosion models are divided into empirical, conceptual, and physics-based models according to the structures and characteristics of models. This study used GSSHA (Gridded Surface Subsurface Hydrologic Analysis), the physics-based erosion model, running on WMS (Watershed Modeling System) to analyze soil erosion vulnerability of the CheonCheon watershed. In addition, we compared the six sediment transport capacity formulas provided in the model and evaluated the equations fir on this study site. Therefore, this result can be as a primary tool for soil conservation management.

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Characteristics of Runoff on Urban Watershed in Jeju island, Korea (제주도 도심하천 유역의 유출특성 해석)

  • Jung, Woo-Yul;Yang, Sung-Kee;Lee, Jun-Ho
    • Journal of Environmental Science International
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    • v.22 no.5
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    • pp.555-562
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    • 2013
  • Jeju Island, the heaviest raining area in Korea, is a volcanic Island located at the southernmost of Korea, but most streams are of the dry due to its hydrological/geological characteristics different from those of inland areas. Therefore, there are limitations in applying the results from the mainland to the studies on stream run-off characteristics analysis and water resource analysis of Jeju Island. In this study, the SWAT(soil & water assessment tool) model is used for the Hwabuk stream watershed located east of the downtown to calculate the long-term stream run-off rate, and WMS(watershed modeling system) and HEC-HMS(hydrologic modeling system) models are used to figure out the stream run-off characteristics due to short-term heavy rainfall. As the result of SWAT modelling for the long-term rainfall-runoff model for Hwabuk stream watershed in 2008, 5.66% of the average precipitation of the entire basin was run off, with 3.47% in 2009, 8.12% in 2010, and root mean square error(RMSE) and determination coefficient($R^2$) was 496.9 and 0.87, respectively, with model efficient(ME) of 0.72. From the results of WMS and HEC-HMS models which are short-term rainfall-runoff models, unless there was a preceding rainfall, the runoff occurred only for rainfall of 40mm or greater, and the run-off duration averaged 10~14 hours.

Analysis of Runoff using WMS in Hoe Stream Basin (WMS 모형을 이용한 회천유역의 유출해석)

  • Jung, Chan-Yong;Kwon, Kyu-Sang;Kim, Sam-Eun;Lim, Hyuk-Jin;Kim, Hyoung-Seop;Jung, Sung-Won
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.1608-1613
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    • 2007
  • 최근들어 수자원 분야에서 GIS(Geographic Information System)의 활용에 대한 많은 연구가 이루어지고 있다. 수자원 관련 분야에 있어서 GIS는 수문현상에 영향을 미치는 기상학적인 요인, 토양, 토지이용도, 배수 유역의 형태 등 수문정보를 획득하기 위한 수단으로 사용될 수 있을 뿐만 아니라, 유역에서의 지형학적, 기후학적 특성을 시간과 인력을 절약하여 정량화할 수 있다는 것이 입증되고 있다. 하천에서의 유출량 추정은 강우, 수위와 같은 수문데이터의 신뢰도에서 많은 문제점이 야기되고 있다. 따라서 모의 입력매개변수의 중요요소인 지형정보의 경우 GIS 기법을 이용할 경우 기존 방법과는 달리 신뢰성 있는 정보를 획득할 수 있으므로 모형의 결과를 개선하는 데 도움이 될 것이다. 본 연구에서는 미국의 Environmental Modeling Research Laboratory(EMRL)에서 개발한 지리정보시스템과 수문유출모형이 접목된 WMS(Watershed Modelling System) 모형을 HEC-1 모형과 연계하여 낙동강수계 제1지류인 회천유역 개진1, 개진2 지점의 유출 해석을 실시하였다. GIS와 결합된 홍수유출모형인 WMS를 이용하여 유역 내의 지형특성인자 및 하천망을 추출하였으며, 유출해석은 WMS에 내재된 HEC-1을 이용하였다. 유효강우량의 산정을 위해 SCS CN 값을 사용하였으며, CN 계산을 위해서는 토지이용도 토양도를 이용하였다. 합성단위도법은 SCS 무차원 단위도법을 사용하여 유출을 모의하였다.

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