• Title/Summary/Keyword: EPA-SWMM

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Design Practice of Bio-Retention for SS management at Industrial Area (공업지역에서의 SS관리를 위한 생태저류지 설계방안)

  • Choe, BoGyeong;Kim, Sangdan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.446-446
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    • 2015
  • 본 연구에서는 공업지역의 비점오염저감시설을 설계하는 방안이 제안된다. 처리대상구역의 SS 배출부하량은 최근 국립환경과학원에서 제안하고 있는 원단위를 기반으로 산출된다. SWMM을 이용하여 처리대상구역의 SS 배출부하량을 모의한 뒤, 비점저감시설로서 생태저류지를 설치하여 설계용량에 따른 비점저감효과가 정량화된다. 다양한 모의결과를 바탕으로 생태저류지 설계용량에 따른 SS의 삭감대상부하비가 유도되며, EPA 기준에 따른 생태저류지의 SS 저감효율이 산정된다.

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Estimating the Return Flow of Irrigation Water for Paddies Using Hydrology-Hydraulic Modeling (수리·수문해석 모델을 활용한 농업용수 회귀수량 추정)

  • Shin, Ji-Hyeon;Nam, Won-Ho;Yoon, Dong-Hyun;Yang, Mi-Hye;Jung, In-Kyun;Lee, Kwang-Ya
    • Journal of The Korean Society of Agricultural Engineers
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    • v.65 no.6
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    • pp.1-13
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    • 2023
  • Irrigation return flow plays an important role in river flow forecasting, basin water supply planning, and determining irrigation water use. Therefore, accurate calculation of irrigation return flow rate is essential for the rational use and management of water resources. In this study, EPA-SWMM (Environmental Protection Agency-Storm Water Management Model) modeling was used to analyze the irrigation return flow and return flow rate of each intake work using irrigation canal network. As a result of the EPA-SWMM, we tried to estimate the quick return flow and delayed return flow using the water supply, paddy field, drainage, infiltration, precipitation, and evapotranspiration. We selected 9 districts, including pumping stations and weirs, to reflect various characteristics of irrigation water, focusing on the four major rivers (Hangang, Geumgang, Nakdonggang, Yeongsangang, and Seomjingang). We analyzed the irrigation period from May 1, 2021 to September 10, 2021. As a result of estimating the irrigation return flow rate, it varied from approximately 44 to 56%. In the case of the Gokseong Guseong area with the highest return flow rate, it was estimated that the quick return flow was 4,677 103 m3 and the delayed return flow was 1,473 103 m3 , with a quick return flow rate of 42.6% and a delayed return flow rate of 13.4%.

Flood analysis for agriculture area using SWMM model: case study on Sindae drainage basin

  • Inhyeok Song;Hyunuk An;Mikyoung Choi;Heesung Lim
    • Korean Journal of Agricultural Science
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    • v.50 no.4
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    • pp.799-808
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    • 2023
  • Globally, abnormal climate phenomena have led to an increase in rainfall intensity, consequently causing a rise in flooding-related damages. Agricultural areas, in particular, experience significant annual losses every year due to a lack of research on flooding in these regions. This study presents a comprehensive analysis of the flood event that occurred on July 16, 2017, in the agricultural area situated in Sindaedong, Heungdeok-gu, Cheongju-si. To achieve this, the EPA (United States Environmental Protection Agency) Storm Water Management Model (SWMM) was employed to generate runoff data by rainfall information. The produced runoff data facilitated the identification of flood occurrence points, and the analysis results exhibited a strong correlation with inundation trace maps provided by the Ministry of the Interior and Safety (MOIS). The detailed output of the SWMM model enabled the extraction of time-specific runoff information at each inundation point, allowing for a detailed understanding of the inundation status in the agricultural area over different time frames. This research underscores the significance of utilizing the SWMM model to simulate inundation in agricultural areas, thereby validating the efficacy of flood alerts and risk management plans. In particular, the integration of rainfall data and the SWMM model in flood prediction methodologies is expected to enhance the formulation of preventative measures and response strategies against flood damages in agricultural areas.

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

  • Lee, Jong-Hyeong;Yeon, Kee-Seuk
    • Journal of the Korean Society of Hazard Mitigation
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    • v.8 no.5
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    • pp.155-161
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    • 2008
  • The flood damage shows different types in natural river watershed and in urban drainage watershed. In recent, increasing of the impervious area gives rise to short concentration time and high peak discharge comparing with natural watershed and it is a cause of urban flood damage. In this paper, we use a XP-SWMM model developed based on EPA-SWMM version for analyzing the inundation area, inundation depth and inundation area considering building effect. The two events(2005.06, 2005.07) has been used for the validation of model. HEC-RAS model has been applied for simulation of changing water level, and the results has been used for calculating area of the inundation. The observed inundation area(21.41 ha) in August, 1998 was in good agreement with the simulated value(23.45 ha) of XPSWMM model. An influence of inundation area considering building effects has been analized by the DTM of XP-SWMM model.

Analysis of Water Cycle Effect by Plan of LID-decentralized Rainwater Management Using SWMM-LID Model in a Low-carbon Green Village (SWMM-LID를 이용한 저탄소 녹색마을의 LID-분산형 빗물관리 계획에 따른 물순환 효과 분석)

  • Lee, Jung-Min;Hyun, Kyoung-Hak;Lee, Yun-Sang;Kim, Jung-Gon;Park, Yong-Boo;Choi, Jong-Soo
    • Land and Housing Review
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    • v.2 no.4
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    • pp.503-507
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    • 2011
  • There was a plan to develop a low-carbon green village(approximately $400,000m^2$) in A city, a new town. Restoration of water cycle is essential for creation of the low-carbon green village. Therefore, installation plan of LID-decentralized rainwater management facilities for natural water cycle was established for creation of the low-carbon green village. Analyses on effect of the water cycle were performed in conditions of before, after developing the low-carbon green village and after installing the LID facilities(rain garden, constructed wetland, rainwater harvesting facility, etc.) using SWMM-LID model developed by EPA. Due to the characteristic of permeable area before development and significant green spaces after development, installation plan of LID facilities to restore the water cycle did not show an obvious effect. However, potential of the hydrological cycle could be seen by the installation of the LID facilities.

Application of SWMM for Management of the Non-point Source in Urban Area -Case Study on the Pohang City- (도시지역 비점오염원 관리를 위한 SWMM의 적용 -포항시를 대상으로-)

  • Lee, Jae-Yong;Jang, Seong-Ho;Park, Jin-Sik
    • Journal of Environmental Health Sciences
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    • v.34 no.3
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    • pp.247-254
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    • 2008
  • Non-point source pollution that originates from surface applied chemicals in either liquid or solid form is a part of urban activities and it appears in the surface runoff caused by rainfall. This study investigates the characteristics of non point source pollution in relation to storm events and the first washing effect in the Study area, which is comprised of different land use types. Then, a Best Management Practices (BMP) model, for urban areas, is applied with the Storm water Management Model (SWMM) Windows Interface which was developed by the EPA in the USA. During the storm event analysis of the hydrographic and pollutographic data showed that the peak of pollutants concentration was within the peak flow, 30 to 60 minute into the storm event in the Study area. The results of simulation using SWMM Windows Interface, Structure Techniques as applied in the study were highly efficient for removal of pollutants. Predicted removal efficiency was 26.0% for SS, 22.1 for BOD, 24.1% for COD, 20.6% for T-N, and 21.6% for T-P, respectively.

Analysis of Flow Reduction for improving Urban Water Cycle Using SWMM-LID Model (SWMM-LID모델을 이용하여 도시 물순환 개선을 위한 유량 저감 효과 분석)

  • Lee, Tae Woo;Woo, Won Hee;Choi, Gye-woon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.217-217
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    • 2017
  • 물 순환이란 물이 지표면으로부터 증발하거나 바다로부터 증발하여 습한 공기가 기단을 형성한 후 적합한 조건이 형성되면 강수를 초래하는 과정이라고 볼 수 있다. 여기서 강수는 여러 경로 즉, 증발산, 지표흐름, 침투, 침루 등을 통해 다시 순환과정을 거친다. 최근 도시화로 인한 불투수면적의 증가로 기후변화, 홍수지체시간 감소, 첨두 및 유출총량의 증가, 침투능 및 증발산량의 감소 등 자연하천의 유출특성과는 다른 유출특성이 나타나며, 물 순환 체계가 왜곡되어 지하수위는 낮아지고, 하천의 유량은 감소되는 등 하천의 정상적인 기능이 저하되고 있다. 이에 우리나라에서는 환경부 및 국토교통부 등 정부기관과 지방자치단체에서 법과 조례를 제정하여 저영향개발기법 (LID, Low Impact Development)을 적용하도록 권고하고 있으며 신도시 개발사업 시 왜곡된 도시의 물 순환체계를 개선하기 위하여 저영향개발기법을 적용하고 있다. 저영향개발 기법의 정량적인 효과를 검증하기 위해서는 미환경청 (U.S. EPA., United States Environmental Protection Agency)에서 개발한 SWMM모델을 이용하여야 한다. 본 연구에서는 도시화로 인해 왜곡된 물순환체계 개선을 위하여 다양하게 설계된 저영향개발기법의 정량적인 효율을 SWMM 모델을 통해 산정하고, 장기적인 측면에서 물순환 회복에 적합한 저영향개발기법의 배치 최적화를 제안하고자 한다.

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Assessment of Flood Flow Conveyance for Urban Stream Using XP-SWMM (XP-SWMM을 이용한 도시하천에서의 홍수소통능력 평가)

  • Hong, Jun-Bum;Kim, Byung-Sik;Seoh, Byung-Ha;Kim, Hung-Soo
    • Journal of Korea Water Resources Association
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    • v.39 no.2 s.163
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    • pp.139-150
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    • 2006
  • In recent, increasing of the impervious area gives rise to short concentration time and high peak discharge comparing with natural watershed and it is a cause of urban flood damage. Therefore, we have performed for structural and non-structural plans to reduce the damage from inundation. The Gulpo-cheon basin had been frequently inundated and damaged due to the water level of Han river. So, the Gulpo-cheon floodway was constructed with 20 meters width for flood control in the basin but it was not enough for our expectation and now we have a plan to expand the floodway to 80 meters. We use a XP-SWMM model developed based on EPA-SWMM version for analyzing the capacity of flood conveyance by the expansion of Gulpo-cheon floodway with the same 100 years return period design storm and the same tidal conditions of the Yellow sea. The flood conveyance after the expansion of floodway becomes three times comparing it with before the expansion. Also we simulate the flood discharge at the diversion point of Gulpo-cheon for the expanded condition of floodway and know that the discharge of about 300 m3/sec is flowing backward to the expanded floodway. Therefore we may need some kinds of hydraulic structures to prevent the back water.

Influence of drainage density on rainfall-runoff in urban area (도시유역의 배수 밀도가 강우-유출에 미치는 영향 분석)

  • Lee, Jinwoo;Chung, Gunhui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.379-379
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    • 2018
  • 기후변화와 지구온난화로 인하여 전 세계적으로 폭우발생 빈도 및 강도가 증가하고 있다. 특히 유역 차원에서 도시화와 산업 개발로 인한 불투수면적 증가는 내수침수 증가로 이어지고 있다. 불투수면적이 높고 인구와 건물이 밀집되어있는 도시유역에서의 내수침수는 막대한 재산피해와 인명피해를 야기한다. 도시유역의 불투수층에 내린 강우는 지표면을 따라 흐르다가 대부분 우수관으로 유입되어 유역에서 배출된다. 그러므로 도시 우수관의 설계빈도를 결정하고 설계홍수량을 결정하는 일은 도시 홍수 저감을 위한 구조적인 대책 중 가장 우선적으로 고려되어야 하고, 또 가장 중요한 대책이기도 하다. 본 연구에서는 과거 홍수피해가 빈번히 발생했던 도시유역들 중 유역면적과 우수관망의 구조가 다른 7개의 도시를 선정하여 다양한 강우사상에 따른 유출해석을 실시하였다. 서울과 부산 기상관측소에서 관측된 1975년부터 2015년까지의 강우자료에 대한 EPA-SWMM 모형에서의 유출해석 결과 첨두강우량의 변화에 따른 첨두유출량의 변화를 선형회귀모형으로 분석하였다. 회귀모형의 결정계수와 95% 신뢰구간, 변동계수를 비교하였고, 수계밀도개념을 적용하여 첨두유출량의 변화를 해석한 결과, 우수관망이 조밀하게 건설되어 배수밀도가 높을수록 증가된 첨두강우량에 따라 함께 증가하는 첨두유출량의 예측이 상대적으로 정확하게 가능함을 확인하였다. 우수관의 구조적인 특성에 따른 유출 응답 속도를 고려하여 우수관을 설계한다면, 보다 효율적인 우수관 설계가 가능할 것으로 판단된다.

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Estimation of stormwater interception ratio for evaluating LID facilities performance in Korea

  • Choi, Jeonghyeon;Lee, Okjeong;Lee, Jeonghoon;Kim, Sangdan
    • Membrane and Water Treatment
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    • v.10 no.1
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    • pp.19-28
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    • 2019
  • To minimize the impact of urbanization, accurate performance evaluation of Low Impact Development (LID) facilities is needed. In Korea, the method designed to evaluate large-scale non-point pollution reduction facilities is being applied to LID facilities. However, it has been pointed out that this method is not suitable for evaluating the performance of relatively small-scale installed LID facilities. In this study, a new design formula was proposed based on the ratio of LID facility area and contributing drainage area, for estimating the Stormwater Interception Ratio (SIR) for LID facilities. The SIR was estimated for bio-retentions, infiltration trenches and vegetative swales, which are typical LID facilities, under various conditions through long-term stormwater simulation using the LID module of EPA SWMM. Based on the results of these numerical experiments, the new SIR formula for each LID facility was derived. The sensitivity of the proposed SIR formula to local rainfall properties and design variables is analysed. In addition, the SIR formula was compared with the existing design formula, the Rainfall Interception Ratio (RIR).