• 제목/요약/키워드: urban drainage system

검색결과 145건 처리시간 0.026초

RCP 8.5 시나리오와 연동한 저관리형 옥상녹화시스템의 수해방재 성능에 대한 전산모의 연구 (A Study for the Computer Simulation on the Flood Prevention Function of the Extensive Green Roof in Connection with RCP 8.5 Scenarios)

  • 김태한;박상연;박은희;장성완
    • 한국환경복원기술학회지
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    • 제17권3호
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    • pp.1-11
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    • 2014
  • Recently, major cities in Korea are suffering from frequent urban flooding caused by heavy rainfall. Such urban flooding mainly occurs due to the limited design capacity of the current drainage network, which increases the vulnerability of the cities to cope with intense precipitation events brought about by climate change. In other words, it can be interpreted that runoff exceeding the design capacity of the drainage network and increased impervious surfaces in the urban cities can overburden the current drainage system and cause floods. The study presents the green roof as a sustainable solution for this issue, and suggests the pre-design using the LID controls model in SWMM to establish more specific flood prevention system. In order to conduct the computer simulation in connection with Korean climate, the study used the measured precipitation data from Cheonan Station of Korea Meteorological Administration (KMA) and the forecasted precipitation data from RCP 8.5 scenario. As a result, Extensive Green Roof System reduced the peak runoff by 53.5% with the past storm events and by 54.9% with the future storm events. The runoff efficiency was decreased to 4% and 7%. This results can be understood that Extensive Green Roof System works effectively in reducing the peak runoff instead of reducing the total stormwater runoff.

도시유역 CSOs 처리를 위한 저류형시스템 설계용량 산정 (Estimation of Storage Capacity for CSOs Storage System in Urban Area)

  • 조덕준;이정호;김명수;김중훈;박무종
    • 한국물환경학회지
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    • 제23권4호
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    • pp.490-497
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    • 2007
  • A Combined sewer overflows (CSOs) are themselves a significant source of water pollution. Therefore, the control of urban drainage for CSOs reduction and receiving water quality protection is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as stormwater detention storage is highly dependant on the temporal variability of storage capacity available (which is influenced by the duration of interevent dry periods) as well as the infiltration capacity of soil and recovery of depression storage. As a result, a continuous approach is required to adequately size such facilities. This study for the continuous long-term analysis of urban drainage system used analytical probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model have evolved that offer much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics of the subject area using analytical probabilistic model. This study presented the average annual COSs and number of COSs when the interceptor capacity is in the range $3{\times}DWF$ (dry weather flow). Also, calculated the average annual mass of pollutant lost in CSOs using Event Mean Concentration. Finally, this study presented a decision of storage volume for CSOs reduction and water quality protection.

부압을 이용한 배수시스템의 비정상상태 유동특성해석 (Study on the unsteady characteristics of depressurized drainage system)

  • 이길석;이진호
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회B
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    • pp.2682-2687
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    • 2008
  • Depressurized drainage systems have been used for more than 30 years and are becoming a common part of urban drainage infrastructures. The hydraulic principles governing the operation of the depressurized drainage systems were studied in this paper and particularly, focused on the analysis of unsteady characteristics of the two-phase flow. A definition of the filling ratio was outlined and types of flow pattern were classified according to the filling ratio. Experiments were conducted to investigate the main features of pressure fluctuation. All results were found to depend on the filling ratio of the upstream pipe flow as well as the upstream Froude number.

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도시유역 내배수시설 유지관리시스템 (Maintenance Management System for Urban Drainage System)

  • 이정호;주진걸;김응석;박무종;김중훈
    • 한국방재학회 논문집
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    • 제8권5호
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    • pp.119-128
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    • 2008
  • 최근 국내에서는 도시지역 내배수시스템에 대한 문제점들을 개선하기 위하여 정비사업이 활발히 이루어지고 있으나 시설물에 대한 자료의 구축이 부족하며 정비사업을 시행함에 있어서 체계적인 정비사업 시행 및 관리가 미흡한 실정이다. 본 연구에서는 내배수시설에 대한 자료의 효율적 저장과 합리적 관리를 목적으로 하는 도시유역 내배수시설 유지관리시스템을 구축하였다. 이 시스템은 수리 수문 해석 모듈을 이용하여 통수능 검토에 따른 우수배제 목적의 합리적 근거를 마련하고 우수토실에서의 합류식 하수관거 월류수의 발생량을 추정하며, 현재 표본지역의 중요지점에서만 관측되는 불명수에 대하여 관거별로 불명수를 배분하여 관거별 노후도를 평가하는 I/I분석 및 노후도 평가 모듈, 개량사업의 최적 우선순위의 결정 및 합리적인 의사 결정을 위하여 수리 수문 해석 모듈과 노후도 평가모듈이 연계된 최적 개 보수 우선순위 모델을 구축함으로써 최적개량 의사결정이 가능한 종합적 연계시스템을 구축하였다. 또한 이 시스템은 사용자 화면 구성 형태로 개발되었다.

도시배수체계와 연계한 내수침수모형의 개발 및 검증 (Development and Verification of Inundation Modeling with Urban Flooding Caused by the Surcharge of Storm Sewers)

  • 김지성;한건연;이창희
    • 한국수자원학회논문집
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    • 제39권12호
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    • pp.1013-1022
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    • 2006
  • 도시지역에의 내수침수는 주로 우수관로 배수체계의 통수능력 부족으로 발생된다. 따라서 지금까지의 도시침수에 대한 국내외 연구가 우수관로해석에 국한되어왔다. 하지만 우수관로시스템 해석을 통해서 배수능이 부족한 관거를 찾는 것만으로 침수방지대책을 세우는 것은 매우 근사적이고 비합리적인 대안을 제시할 수밖에 없는 실정이다. 본 연구에서는 도시침수양상에 대한 정확하고 합리적인 해를 도출하기 위하여 ILLUDAS를 이용한 관로시스템 해석과 2차원 지표류 계산모형을 연계한 침수해석 모형을 개발하였고, 2001년 7월 서울지역의 집중호우 사상에 대한 적용결과로 해석결과를 검증하였다. 표고차가 적은 도시유역에서 침수모의를 위해서는 2차원적 홍수전파양상을 반드시 고려해야 침수범위, 침수위 등에 대한 정확한 해석이 가능할 것으로 판단된다. 본 연구결과는 도시 홍수 예경보와 침수지도 작성 등의 도시치수 및 방재계획 수립에 실제적으로 응용될 수 있을 것으로 기대된다.

Utilization of the Outflowing Groundwater Resources in an Underpass Structure

  • Jin, Kyu-Nam;Park, Jae-Hyeon;Lee, Jung-Min;Lee, Sang-Ho
    • Environmental Engineering Research
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    • 제18권3호
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    • pp.117-121
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    • 2013
  • For underpasses in Yeongjong Sky City business district, the guided drainage system, as a buoyancy prevention system has been designed, and is under construction. This paper investigates the safety of the guided drainage system for underpass structures being constructed in Yeongjong Sky City business district. This paper also calculates the amount of outflowing groundwater generated by the guided drainage system, and proposes alternative usages of the water. In order to investigate safety and field applicability of the guided drainage system for underpasses, characteristics of the surface flow for the area of interest have been analyzed, and the flow change of groundwater following the underpass structure construction has been evaluated using the 3-dimensional groundwater program MODFLOW. The influence of ground water on safety of the underpass structures has been calculated by FLAC2D analysis. For alternative usages for the outflowing groundwater generated by the guided drainage system, utilization methods of the outflowing groundwater in national and international resources have been researched. The amount of an outflowing groundwater to be generated in the area of interest has been analyzed, and efficient potential usages of this groundwater have been researched. When guided drainage technique is applied, the change in flow of groundwater must be evaluated and considered as safety factor relating to the buoyancy of the structure. As a result, safety factor demonstrated more than 1.2, meaning that the underpass structure is safe. The amount of subsoil drain generated by the guided drainage system was also analyzed. The quality and amount of water satisfied the standards and volume requirements, so as to make it applicable for a number of uses, such as X, Y, and Z, and should prove to be a valuable resource as the circumstances of the neighboring area change over time. These resources can be used as basic data for future urban water circulation studies, as well as generating research of alternative water usages.

과부하 사각형 맨홀의 배수능력 증대에 관한 실험적 연구 (An Experimental Study for Drainage Capacity Increment at Surcharged Square Manholes)

  • 김정수;송주일;윤세의
    • 상하수도학회지
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    • 제22권6호
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    • pp.619-625
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    • 2008
  • Urban sewer systems are designed to operate in open-channel flow regime and energy loss at square manholes is usually not significant. However, the energy loss at surcharged manholes is considered as one of the major causes of inundation in urban area. Therefore, it is necessary to analyze the head loss associated with manholes, especially in surcharged flow. Hydraulic experimental apparatus which can change the manhole inner profile(CASE I, II, III, and IV) and the invert types(CASE A, B, C) were installed for this study. The experimental discharge was $16{\ell}/sec$. As the ratio of b/D(manhole width/inflow pipe diameter) increases, head loss coefficient increases due to strong horizontal swirl motion. The head loss coefficients for CASE I, II, III, and IV were 0.46, 0.38, 0.28 and 0.37, respectively. Side covers increase considerably drainage capacity at surcharged square manhole when the ratio of d/D(side cover diameter/inflow pipe diameter) was 1.0. The head loss coefficients for CASE A, B, and C were 0.45, 0.37, and 0.30, respectively. Accordingly, U-invert is the most effective for energy loss reduction at surcharged square manhole. This head loss coefficients could be available to evaluate the urban sewer system with surcharged flow.

터널 배수처리 및 시설개선방안에 관한 연구 (A Case study on the Improvement of Tunnel Drainage systems)

  • 유상건;박태순;이준석
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2001년도 추계학술대회 논문집
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    • pp.398-403
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    • 2001
  • Since the urban subway is normally constructed under the groundwater level, the drainage system will be one of the most important factors during maintenance period. Therefore, to investigate suitability of the design approach and the construction specification, the inflow and the contents of the groundwater in the Route 5 of Seoul subway system are analysed. From these, the possibility of the design improvement and the economy of the maintenance cost are proposed.

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