• Title/Summary/Keyword: 불투수면 유출수

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A study on Green Roof System and Stormwater Reduction Effectiveness based on SWMM Model (SWMM 모델을 이용한 옥상녹화면에 따른 유출저감효과분석)

  • Kim, Jae Moon;Kim, Sae Bom;Kim, Byung Sung;Park, Kwang Hee;Shin, Hyun Suk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.383-383
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    • 2018
  • 최근 기후변화와 도시화로 인해 국지성 집중호우 및 불투수면적이 증가하고 있는 실정이며, 도시 지역 내의 첨두유량, 도달시간, 지체시간 등과 같은 수문학적 인자가 변화함에 따라 재산피해, 인명피해가 발생하고 있다. 저영향개발(Low Impact Development, LID) 기법은 수리수문학적 및 환경생태학적 문제를 저감하는 방안 중 하나로써 도시지역에서 수환경을 자연상태로 복원하는 대안으로 제시되고 있다. LID 기법 중 하나인 옥상녹화는 도시 내의 불투수면 증가로 인한 초과 지표면유출을 저감시켜 물관리를 하는 기술이다. 본 연구는 경남 양산시 부산대학교 제 2 캠퍼스에 조성된 옥상녹화 장치를 이용하여 정량적으로 유출량을 분석하였다. 비식생구와 식생구를 설치하고 실험의 시나리오는 강우강도를 25, 50, 75, 100 mm/hr로 설정하여 측정된 데이터 값을 바탕으로 SWMM(Storm Water Management Model) 모델링을 수행하였다. 유출량 값은 SWMM 5의 매개변수 추정지원 시스템인 SWMM-SCE를 이용하여 모형을 자동보정하였다. 보정된 모의유량은 실측유량과 0.28~3.81% 만큼의 오차를 보였고 각 시나리오에 따라 검증한 결과 상관계수가 0.82 이상으로서 실측값과 높은 상관성을 나타내었다. 옥상녹화 실험의 경우, 강우강도 75mm/hr일 때 첨두유출저감율과 지연시간은 각각 15.45% 감소, 15초 지연으로 최적의 효율이 나타났으며 강우강도 25mm/hr일 때 첨두유출저감율과 지연시간은 각각 1.36% 감소, 4초 지연으로 최저의 효율이 나타났다. SWMM 모의 결과는 강우강도 75mm/hr일 때 첨두유출저감율과 지연시간은 각각 15.45% 감소, 16초 지연으로 최적의 효율이 나타났으며 강우강도 25mm/hr일 때 첨두유출저감율과 지연시간은 각각 2.73% 감소, 4초 지연으로 최저의 효율이 나타났다.

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Analysis on Building Flood Damage of Pump Installation on Dorim Stream (펌프시설 설치유무에 따른 도림천유역 건물 피해액 분석)

  • Tak, Yong Hun;Park, Mun;Kim, Young;Kang, Boosik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.42-42
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    • 2017
  • 현재 도시지역의 침수피해는 매우 복잡한 형태로 발생하고 있으며, 침수 발생으로 사유재산 및 사회적 피해가 증대되고 있다. 불투수면이 높은 도시의 침수현상은 지표수의 이동, 매설된 관거의 형상과 통수능에 의한 월류가 주된 원인으로 작용한다. 인구와 건물 및 기반시설이 밀집한 도시지역은 침수피해 발생시 막대한 피해를 입을 수 있으며, 발생한 강우와 설치된 우수저감시설 및 내수배제시설에 따라 침수현상이 다르게 나타난다. 이러한 피해를 줄이고 재산을 보호하기 위해 적절한 치수사업이 필요하며, 시설의 도입에 따른 피해액 감소 및 경제성 분석이 우선시 되어 효율성과 타당성을 판단할 수 있어야 한다. 침수에 의한 피해액을 산정하기 위해 정확한 침수예측이 필요하며, 지형, 건물, 도시의 복잡한 도로 등을 잘 반영한 유출해석이 선행되어야 한다. 정밀한 침수해석이 수반되지 않을 경우, 침수예상지역을 다소 과소, 과대하게 나타낼 수 있다. 홍수피해의 경제성을 분석하기 위한 방법에는 다차원 홍수피해 산정방법이 있으며, 경제성 분석은 하천의 정비상태, 하도 및 관거, 제방 및 유수지 등 홍수 방지시설 등 구조적, 비구조적 대책을 모두 대상으로 하여야 하며, 인명과 재산이 집중된 도시의 경우 보다 정확한 피해액을 산정할 필요가 있다. 본 연구에서는 과거 침수피해가 있었던 도림천 유역을 대상으로 펌프시설의 도입에 따른 건물 피해액 분석을 실시하였다. 우수관망과 도시지역의 유출모의에 적합하다고 알려진 SWMM 모형을 활용하여 침수현상을 분석하였으며, 다차원 홍수피해 산정방법을 활용하여 건물 피해와 건물 내용물 자산피해액을 분석하여 시설 도입에 따른 피해액 감소와 경제성을 분석하였다.

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Suggestion of a Decision Support System for Implementing the Water Quality Trading Policy to Developing Urban Areas (개발예정 도시의 수질교환법 적용을 위한 정책결정 시스템 제시)

  • Shin, Yee-sook
    • Ecology and Resilient Infrastructure
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    • v.3 no.1
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    • pp.54-61
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    • 2016
  • There are many pilot programs and projects to implement the water quality trading (WQT) policy. But actual trading is relatively rare. The main reason of the scarce applications of WQT policy is the difficulty in determining the equalities between the trading sites. The uncertainty of the impacts of the nonpoint sources pollutant discharges between up and downstream urban development areas also makes the implementation of the policy harder. The simulated results from the watershed modeling program will be used to calculate the point and nonpoint sources pollutants of the future urban development scenarios. The amount of suspended sediments resulting from the urban developments and rainfall intensities will be used to indicate the environmental impacts of the water body between upstream and downstream. The water quality impacts after development scenarios to the outlet of the watershed were transferred to the trading units between two sites. The recommended trading units can be used as a decision support system for policy makers and stakeholders to carry out better WQT practices.

A Study on the Rainwater Quality Monitoring and the Improvement, Collection and Storage System (빗물 집수 및 저장 시스템 개선과 수질 분석 모니터링)

  • Kim, Chul-Kyung
    • Clean Technology
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    • v.17 no.4
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    • pp.353-362
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    • 2011
  • In our nature, the utilization of rainwater is essential for healthy water recirculation. This is one of the solutions of the increment of impermeability surface according to the development of new cities; this study of the improvement of rainwater quality has been carried on through the improvement of collecting and restoring system of rainwater. The southwestern region of Daejeon City, the rainwater coefficient of run off was 0.40 and this number had computed to 0.59 after the development. After filtration of rainwater, the heavy metal (Cu, As, Cr, Fe, Mn) contents level were lower than underground water. Moreover, collected rainwater showed better quality than underground water in following criteria; hardness, permanganate consumption quality, chloride, evaporation residue, sulfates and nitrate nitrogen. This water quality met the gray water quality standards. The rainwater quality was still suitable to use as bathroom flushing and gardening after 100 days of storage. This study proved that modification (installation of cover with gutter to existing rainwater collection system, proper filtering, and installation of underground storage tank) of collection system could improve quality of water and maintain this approximately 100 days.

Worries and Reality Regarding Porous Asphalt Pavements: Structural Integrity, Flood Mitigation and Non-Point Pollution Reduction (투수성 아스팔트 포장에 대한 우려와 실제: 구조적 적합성, 홍수 완화 그리고 비점오염 저감)

  • Yoo, Inkyoon;Lee, Suhyung;Han, Daeseok;Lee, Sanghyuk
    • Ecology and Resilient Infrastructure
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    • v.3 no.4
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    • pp.272-278
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    • 2016
  • Porous pavements are recommended as a Low-Impact Development (LID) method which is a strategy to develop a water cycle as close to a natural state as possible, and to solve the urban impervious surface problems. Porous pavements can yield a solution if it provides a more permeable surface with extra space to contain extra water from building roofs. But there are few applications in Korea because of a lack of recognition and experience. Highway engineers are mainly concerned about the infiltration of water into pavement structures. They worry about the weakening of the asphalt mixture and subgrade, and freezing during the winter season due to the infiltration of water. Meanwhile, hydrological experts doubt the effects of the amount of water to control during the flooding season, and environmental experts prefer a non-point pollution treatment system established beside highway. In this study, from reviewing the history and the body of literature about porous pavements, conclusions regarding the most advanced technologies were made. First, traditional thickness designs can be used for porous pavement, no extra distresses was found by weakening and freezing during the winter season. Second, hydrological design can be made by controlling the thickness of the pavement and the outlet of water. Third, the treatment efficiency of non-point pollution of porous pavements is not worse than any other method. Importantly, it's a more eco-friendly solution because of its lower requirement for de-icing agents.

Analysis of runoff speed depending on the structure of stormwater pipe networks (우수관망 구조에 따른 유출 속도 분석)

  • Lee, Jinwoo;Chung, Gunhui
    • Journal of Korea Water Resources Association
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    • v.51 no.2
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    • pp.121-129
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    • 2018
  • Rainfall falling in the impervious area of the cities flows over the surface and into the stormwater pipe networks to be discharged from the catchment. Therefore, it is very important to determine the size of stormwater pipes based on the peak discharge to mitigate urban flood. Climate change causes the severe rainfall in the small area, then the peak rainfall can not be discharged due to the capacity of the stormwater pipes and causes the urban flood for the short time periods. To mitigate these type of flood, the large stormwater pipes have to be constructed. However, the economic factor is also very important to design the stormwater pipe networks. In this study, 4 urban catchments were selected from the frequently flooded cities. Rainfall data from Seoul and Busan weather stations were applied to calculate runoff from the catchments using SWMM model. The characteristics of the peak runoff were analyzed using linear regression model and the 95% confidence interval and the coefficient of variation was calculated. The drainage density was calculated and the runoff characteristics were analyzed. As a result, the drainage density were depended on the structure of stormwater pipe network whether the structures are dendritic or looped. As the drainage density become higher, the runoff could be predicted more accurately. it is because the possibility of flooding caused by the capacity of stormwater pipes is decreased when the drainage density is high. It would be very efficient if the structure of stormwater pipe network is considered when the network is designed.

Designing a Decentralized Stormwater Management Corridor for a Flood-Prone Watershed using Surface Runoff Analysis (지표유출수 분석을 통한 상습침수유역의 분산식 우수관리통로 설계)

  • Lee, Seul;Lee, Yumi
    • Journal of the Korean Institute of Landscape Architecture
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    • v.43 no.3
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    • pp.13-26
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    • 2015
  • Many urban areas in Korea suffer from repeated flood damage during intensive rainfall due to an increase in impervious areas caused by rapid urbanization and deteriorating sewage systems. A centralized stormwater management system has caused severe flood damage in an area that has proven unable to accommodate recent climate change and a rise in precipitation. Most flooding prevention projects that have been recently implemented focus on increasing drainage system capacity by expanding the size of sewer pipes and adding pumping stations in downstream areas. However, such measures fail to provide sustainable solutions since they cannot solve fundamental problems to reduce surface runoff caused by urbanization across the watershed. A decentralized stormwater management system is needed that can minimize surface runoff and maximize localized retention capacity, while maintaining the existing drainage systems. This study proposes a stormwater management corridor for the flood-prone watershed in the city of Dongducheon. The corridor would connect the upstream, midstream, and downstream zones using various methods for reducing stormwater runoff. The research analyzed surface runoff patterns generated across the watershed using the Modified Rational Method considering the natural topography, land cover, and soil characteristics of each sub-watershed, as well as the urban fabric and land use. The expected effects of the design were verified by the retainable volume of stormwater runoff as based on the design application. The results suggest that an open space network serve as an urban green infrastructure, potentially expanding the functional and scenic values of the landscape. This method is more sustainable and effective than an engineering-based one, and can be applied to sustainable planning and management in flood-prone urban areas.

Development and effect analysis of Low Impact Development web simulator (저영향개발 웹 시뮬레이터 개발 및 효과 분석)

  • Inkyeong Sim;Junbae Won;Soohyun Kim;Changyeon Won
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.254-254
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    • 2023
  • 도시화로 인한 불투수면 증가에 따른 물 순환 왜곡 현상이 발생하고 있으며, 이에 따라 물관리를 위한 저영향개발 기법이 국내외에서 적극 도입되고 있는 실정이다. 따라서 본 연구에서는 강우입력에 따라 LID 해석이 가능한 저영향개발 디지털트윈 분석 시뮬레이터를 개발하였다. LID DT 분석 모듈은 LID 시설 해석에 특화된 모형으로 시나리오 강우 기반 시뮬레이션 및 실시간 강우량 연동을 통한 모의가 가능하며, LID 시뮬레이션을 위해 개별적으로 활용함과 동시에 실시간 강우량 연계 시뮬레이션이 가능하도록 개발하였다. 유역유출 계산은 SWMM 모형의 비선형 저류방정식을 기반으로 유출해석 및 기본 LID 해석은 EPA SWMM 엔진으로 해석하며 저수지 추적이 요구되는 빗물이용시설의 경우 별도의 모듈을 적용하였으며, SWMM LID 해석 결과의 시설별 상세 결과 표출이 가능하도록 개발하였다. 현재 LID DT 모형의 시범 지구 적용은 세종시 6-4 생활권 해밀마을을 대상으로 하였다. 소유역 24개소, 우수관로 27개소, 소유역 24개소 및 유역면적 51ha로, 총 64개의 LID 시설을 시설형식을 구분하여 소유역별로 적용하였다. LID 시설의 강우 발생일에 대한 첨두유량과 관측 결과를 비교하여 정상 상황과 비정상 상황의 유량 오차 발생 시 점검 경보 알림 기준을 설정하였으며, 이를 통해 LID 시설의 유지보수 정보를 제공할 수 있을 것으로 예상된다. 또한 실시간 강우 모의를 통해 빗물이용시설의 저류조 용량 대비 현재 빗물저류량을 계산하여 빗물이용시설의 빗물저류량에 대한 정보를 제공하여 물부족 발생알림을 제공 가능할 것으로 예상된다. 따라서 LID DT 시뮬레이터에 및 빗물이용시설 운영에 대한 의사결정 정보를 제공할 수 있을 것으로 판단된다.

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Cost-effective assessment of filter media for treating stormwater runoff in LID facilities (비용 효율적 강우유출수 처리를 위한 LID시설의 여재 평가)

  • Lee, Soyoung;Choi, Jiyeon;Hong, Jungsun;Choi, Hyeseon;Kim, Lee-Hyung
    • Journal of Wetlands Research
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    • v.18 no.2
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    • pp.194-200
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    • 2016
  • The impervious surface rate increased by urbanization causes various problems on the environment such as water cycle distortion, heat island effect, and non-point pollutant discharges. The Low Impact Development (LID) techniques are significantly considered as an important tool for stormwater management in urban areas and development projects. The main mechanisms of LID technologies are hydrological and environmental pollution reduction among soils, media, microorganisms, and plants. Especially, the media provides important functions on permeability and retention rate of stormwater runoff in LID facilities. Therefore, this research was performed to assess the pollutant removal efficiency for different types of media such as zeolite, wood chip, bottom ash, and bio-ceramic. All media show high pollutant removal efficiency of more than 60% for particulate materials and heavy metals. Double layered media is more effective in reducing heavy metals by providing diverse sizes of micro-pores and macro-pores compared to the single layered media. The results recommend the use of different sizes of media application is more cost-effective in LID than a single size of media. Furthermore, soluble proportion of total heavy metal in the stormwater is an important component in proper media selection and arrangement.

Hydrologic and Environmental Assessment of an Infiltration Planter for Roof Runoff Use (지붕 빗물이용을 위하여 개발된 침투화분의 환경·수문학적 평가)

  • Moon, So-Yeon;Choi, Ji-Yeon;Hong, Jung-Sun;Yu, Gi-Gyung;Jeon, Je-Chan;Flores, Precious Eureka D.;Kim, Lee-Hyung
    • Journal of Wetlands Research
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    • v.17 no.4
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    • pp.325-331
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    • 2015
  • Due to urbanization and increase in impervious area, changes in natural water circulation system have become a cause of groundwater recharge reduction, streamflow depletion and other hydrological problems. Therefore, this study developed the infiltration planter techniques applied in an LID facility treating roof stormwater runoff such as, performance of small decentralized retention and infiltration through the reproduction of natural water circulation system and use of landscape for cleaning water. Assessment of an infiltration planter was performed through rainfall monitoring to analyze the water balance and pollutant removal efficiency. Hydrologic assessment of an infiltration planter, showed a delay in time of effluent for roof runoff for about 3 hours and on average, 79% of facilities had a runoff reduction through retention and infiltration. Based on the analysis, pollutant removal efficiency generated in the catchment area showed an average of 97% for the particulate matter, 94% for the organic matter and 86-96% and 92-93% for the nutrients and heavy metals were treated, respectively. Comparative results with other LID facilities were made. For this study, facilities compared the SA/CA to high pollutant removal efficiency for the determination to of the effectiveness of the facility when applied in an urban area.