• 제목/요약/키워드: sewer

검색결과 713건 처리시간 0.028초

청천시 오수량을 고려한 합류식 하수도 소류력 설계법과 이를 활용한 하수관거 개보수방안 (A combined sewer design method using tractive force considering wastewater flow on non-rainy days and its application for improvement methods of sewer)

  • 지현욱;유성수;송호면;강정희
    • 상하수도학회지
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    • 제34권3호
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    • pp.211-220
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    • 2020
  • When domestic sewage and rainwater runoff are discharged into a single sewer pipe, it is called a "combined sewer system." The sewage design standards in Korea specify the flow velocity based only on the volume of rainfall; therefore, sedimentation occurs on non-rainy days owing to the reduced flow rate and velocity. This sedimentation reduces the discharge capacity, causes unpleasant odors, and exacerbates the problem of combined sewer overflow concentration. To address this problem, the amount of sewage on non-rainy days, not just the volume of rainfall, should also be considered. There are various theories on sedimentation in sewer movement. This study introduces a self-cleansing velocity based on tractive force theory. By applying a self-cleansing velocity equivalent to the critical shear stress of a sand particle, sedimentation can be reduced on non-rainy days. The amount of sewage changes according to the water use pattern of citizens. The design hourly maximum wastewater flow was considered as a representative value, and the velocity of this flow should be more than the self-cleansing velocity. This design method requires a steeper gradient than existing design criteria. Therefore, the existing sewer pipelines need to be improved and repaired accordingly. In this study, five types of improvement and repair methods that can maximize the use of existing pipelines and minimize the depth of excavation are proposed. The key technologies utilized are trenchless sewer rehabilitation and complex cross-section pipes. Trenchless sewer rehabilitation is a popular sewage repair method. However, it is complex because the cross-section pipes do not have a universal design and require continuous research and development. In an old metropolis with a combined sewer system, it is difficult to carry out excavation work; hence, the methods presented in this study may be useful in the future.

분산형 저류시설-하수관망 네트워크 시스템의 입자군집최적화 기반 모델 예측 제어 (Model Predictive Control for Distributed Storage Facilities and Sewer Network Systems via PSO)

  • 백현욱;류재나;김태형;오재일
    • 한국지능시스템학회논문지
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    • 제22권6호
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    • pp.722-728
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    • 2012
  • 도심지역의 하수관거 시스템은 우수 수용능력 및 하수 월류 발생 등의 시스템의 한계점을 가지고 있어, 강우시 우수 유출수로 인한 침수저감과 더불어 도시비점오염원의 저감에 모두 대응할 수 있는 저류시설의 도입이 주목받고 시작하였다. 최근 환경부에서는 방재적 우수관리와 더불어 합류식 하수관거 월류수, 분류식 우수관거 유출수 처리를 포함하는 다기능 저류시설을 "하수저류시설"이라 통칭하고, 이의 도입을 적극 추진하고 있는 실정이다. 반면 대규모 단일 저류시설 설치의 경우에는 공간 확보의 문제가 발생할 수 있으며, 이에 대안으로는 중 소규모의 분산형 저류시설 설치 및 운영을 들 수 있다. 본 연구에서는 분산형 저류시설-하수관망 네트워크 시스템의 최적 운용을 위한 모델 예측 제어기법을 제안한다. 이를 위해 첫째로 네트워크 시스템의 각 구성 요소의 수리모델을 제시함으로써 보다 정밀한 하수관망 네트워크의 거동을 모사하고자 한다. 둘째로 제안된 모델을 기반으로 현재의 강우 유입량을 고려하여 각 저류조의 수위, 하수관로의 유입/유출량을 예측하여, 입자군집 최적화 알고리즘을 이용한 모델 예측 제어기법을 바탕으로 주어진 제약조건을 만족하며 상황을 바탕으로 제안된 제어기법의 사용여부에 따른 효과를 비교 분석하고, 이의 타당성을 검증하고자 한다.

하수관망 내 모니터링 지점 선정 기법 (Method to Determinate Monitoring Points in Sewer Networks)

  • 이정호;전환돈;박무종
    • 한국방재학회 논문집
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    • 제11권3호
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    • pp.229-235
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    • 2011
  • 하수관거시스템(sewer system)의 효율적인 관리를 위해서는 관거 내의 유량, 수질, 불명수 및 CSOs (Combined Sewer Overflows) 등에 대한 지속적인 모니터링이 필요하며, 따라서 하수관망에서의 모니터링은 하천 방재 측면에서 매우 중요한 요소이다. 그런데, 하나의 유역 하수관거시스템에서 모든 지점에 대한 모니터링은 예산의 제약으로 인하여 불가능하다. 따라서 모니터링 지점들은 주어진 예산 내에서 최대의 효율적인 자료의 획득이 가능한 지점들로서 선정되어야 한다. 그럼에도 불구하고 모니터링 지점의 선정에 대한 명확한 기준 및 선정된 모니터링 지점에서 획득된 자료에 대한 정량화된 평가 방법에 관한 연구는 미흡한 실정이다. 본 연구에서는 이러한 문제점을 해결하고 수질 자료의 효율적인 모니터링을 위하여 하수관거시스템 내에서 수질 측정지점의 선정에 대하여 유전자알고리즘을 이용한 최적화 방법을 제시하였다. 제시된 수질측정지점 선정 모형은 엔트로피 방법을 이용하여 지점별 획득 자료에 대하여 정량적으로 평가하며, 수질측정지점의 선정에 따른 수집 자료에 대한 총 엔트로피의 최대화를 목적함수로 한다. 여기서 수집 자료들에 대한 엔트로피 평가는 자료의 변동 특성을 반영하며, 자료의 획득 가능한 범위를 의미한다. 이때 수질의 측정은 유량의 관측과 동일한 지점에서 이루어져야 하므로, 수질측정지점 선정에 대한 제약 조건은 주어진 예산에 따른 유량계 설치 가능 개수로서 이루어졌다.

GIS 기반의 SWMM 모형을 이용한 하수도시스템 선정에 따른 도시하천 수질개선효과의 정량적 분석 (Analysis of the Effects of Sewer System on Urban Stream using SWMM based on GIS)

  • 장주형;박해식;박청길
    • 한국물환경학회지
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    • 제22권6호
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    • pp.982-990
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    • 2006
  • Generally CSOs (Combined Sewer Overflows) are regarded as one of the most serious nonpoint pollution source in the urban watershed, Particularly, the water quality of the Oncheon stream is seriously affected by CSOs because the capacity of interception sewer system connected to the Suyoung wastewater treatment plant is too small to intercept most storm water discharges. The objective of this study is to evaluate the effect of nonpoint source on an urban stream with regards to combined sewer system and separate sewer system using GIS (Geographic Information System) and SWMM (Storm Water Management Model), and to provide an insight for the management of urban stream water quality. In order to consider the effect of CSOs on the receiving water quality, the flow divider element in SWMM was applied. The model calibration and verification were performed by the measured data of quantity and quality on the Oncheon stream. The quantity data acquired from the Suyoung wastewater treatment plant were also used for this procedure. In case of separate sewer system, the modeling results showed the increased tendency in streamflow compared with the combined system in dry weather, In addition, the water quality is remarkably improved in rainfall events at the separate condition. The results imply that the construction of separate sewer system should be taken into first consideration to restore the quality and quantity of water in urban streams.

강우시 합류식 하수관거의 월류수 차집용량 산정을 위한 유출특성 분석 (Analysis of Storm Water Run-off Characteristics to Evaluate the Intercepted Volume of CSOs during Wet Weather)

  • 최성현;최승철;김병욱;임재명
    • 상하수도학회지
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    • 제18권3호
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    • pp.320-330
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    • 2004
  • Most of domestic city is served combined sewer system among various sewer system like as separate sanitary, combined sewer system and storm sewers. During the wet weather, sewer and rainfall have been overflowed because it is over capacity of the combined sewer system; that is called combined sewer overflows(CSOs) This research was carried out to investigate runoff characteristics of combined sewer and to evaluate the effective CSOs volume in Hong-Chun gun. During wet weather, SS load of first rainfall at H-1, H-2, and H-3 were 600kg/event, 370kg/event, and 289kg/event, respectively. 55 load of second rainfall were 216kg/event, 113kg/event, and 37.2kg/event. When the first rainfall, event mean concentrations(EMCs) at each site were 702mg/L, 816mgjL and 861.5mg/L. The second rainfall's event mean concentrations(EMCs) were 99.9gm/L, 161.9mg/L, 103.6mg/L. Rrst flush coefficient b at each site were 0.237,0.166, and 0.151. When the first rainfall, the flow containing 80% of pollutant mass of CSOs at each site were 0.55, 0.23, 0.48 in first rainfall, respectively. The case of second rainfall were 0.79, 0.83, 0.81. Most of all, characteristics of rainfall like as analysis of first-flush, CSOs volume, pollutant loadings is investigated to decide intercepted volume for control of CSOs.

Control of the Sediment in a Combined Sewer Using a Separation Wall

  • Lim, Bong Su;Kwon, Chung Jin;Kim, Do Young;Lee, Kuang Chun
    • Environmental Engineering Research
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    • 제18권2호
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    • pp.71-75
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    • 2013
  • This study is to evaluate the effects of the separation wall on the sediment quality and quantity in a combined sewer, by surveying the sewer overflow and sediments during a rainfall. Since the separation wall installed in the combined sewer separates the rainfall and the sewage, the flow rate of the sewage is increased, and the amount of the sediment deposited on the sewer is decreased. One sampling point was the outfall of Daesacheon with a separation wall, and the other was the outfall of Gwaryecheon without a separation wall, in Daejeon metropolitan city. The maximum control of the biochemical oxygen demand (BOD) overflow load was more than 38% in the Daesacheon point with the separation wall, during a rainfall of 0.11 mm/hr. The maximum control of the BOD overflow load was 24% in Gwaryecheon without a separation wall, during a rainfall of 1.0 mm/hr. According to the survey results of the sediment in the sewer, the discharged sediment deposited on the sewer in Gwaryecheon point was about 23% to 28% of the total suspended solid during the rainfall. In addition, the average velocity of sewage in the presence of sediment was about 0.30 m/s, and if the separation wall is installed, it was expected to be about 1.01 m/s, that is 3.4 times more than the same conditions, resulting in the reduction of the sediment deposit.

분류식 하수관로에서 유입수 표준매뉴얼 산정방법의 보수적 수정 결과 (Conservative Adjustment of the Standard Calculation Method of Inflow Water Into a Separated Sewer System)

  • 추민경;배효관
    • 한국물환경학회지
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    • 제36권5호
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    • pp.423-430
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    • 2020
  • To improve the low treatment efficiency of sewage treatment plants, the separated sewer system must be maintained to provide an adequate flow rate and quality of the sewage under the effect of inflow. In this study, data from five locations of Namsuk, Dukgok1, Dukgok2, Kanggu, and Opo were used to conservatively calculate the inflow water volume. The sewer flow and rainfall data were collected in 2017. The factors in the standard method used to calculate the inflow of the combined sewer pipes including "rainy days", "rainfall impact period", and "period for basal sewer" were defined as 3 mm/day, continuous rain for two days, and two weeks prior to the inflow generation, respectively. "Rainy days", "rainfall impact period", and "period for basal sewer" were conservatively adjusted to 5 mm/day, continuous rain for five days, and three weeks prior to the inflow generation, respectively. As a results of the adjustment, the linearity (r2) was improved except for in Dukgok1. This implies that the conservative adjustment made in this study could improve the management quality of sewer pipes. Also, the linear correlation coefficient (ai) between inflow and rainfall showed a large difference between the target locations, which can be another monitoring factor affecting the quality of sewer pipes. To improve the correlation based on the individual characteristics of the locations in Korea, the automatic algorithm for the inflow calculation should be developed by innovative intellectual technologies for application to the entire national area.

강우특성별 최적 우수관망에서의 유출 변화 분석 (Analysis of flow change in optimal sewer networks for rainfall characteristics)

  • 이정호
    • 한국산학기술학회논문지
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    • 제12권4호
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    • pp.1976-1981
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    • 2011
  • 본 연구에서는 도시유역 우수관거 시스템의 근본적인 목적인 내수침수 방재 효과를 최대화하기 위하여 첨두유출량 최소화를 목적으로 하여 개발된 우수관망 최적설계 모형(이정호, 2010)[1]을 이용하여 실제 도시유역에 대하여 다양한 인공적인 강우 사상들을 적용하여 실제 강우 발생 시 첨두유출량 저감의 효과가 발생할 수 있을 것인가에 대하여 분석하였다. 분석에 적용된 강우사상은 첫째, 설계빈도에 해당하는 강우사상에 대하여 강우의 첨두치가 일정한 시간 간격을 두고 연속되어 발생하는 강우사상들에 대하여 모의하였다. 둘째, 일정한 강도의 강우가 연속적으로 발생하는 연속강우사상에 대하여 모의하였다. 분석 결과 강우의 첨두치가 연속되는 경우 또는 일정한 강도의 연속강우에 대해서도 최적 우수관망에서 첨두유출량이 저감되는 것으로 분석되었으며, 이것은 최적화된 우수관망이 시스템 내의 지체 현상에 따른 첨두유출량 감소가 아닌 관망 전체에서의 유입량의 적정 분배에 따른 것임을 나타낸다.

폴리에틸렌 하수관 연결용 전기발포융착 이음관에 관한 연구 (A Study of Electro-foaming Fusion Wrap for Polyethylene Sewer Pipe)

  • 계형산;주경훈
    • 상하수도학회지
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    • 제26권3호
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    • pp.343-354
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    • 2012
  • A electro-foaming fusion wrap fitting for polyethylene sewer pipe was built and foaming mechanism has been studied. A foaming sheet, supporting sheet and clamping band is assembled into a all-in-one structured electro-foaming fusion wrap fitting. To specify foaming and fusion of electro-foaming fusion wrap for PE sewer pipe, series of fusion tests were performed in various conditions. A parallel plate compression test up to 50 % of inner diameter deflection has been performed to check integrity of fusion quality and it was found that there were no visible signs of crack in wrapped area of fitting. Also air tightness test based on KS M 3511-2 has been performed to evaluate perfectness of wrap fusion quality and we found there were no pressure drop up to 10 times higher value than KS standard regulation.

기상, 유출, 하수관로 유동 모형과 ArcView를 결합한 하수도 시설 관리 시스템의 개발 및 적용

  • 김준현;한영한;박형춘;한미덕
    • 한국GIS학회:학술대회논문집
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    • 한국GIS학회 1999년도 추계학술대회 발표요약문
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    • pp.26-29
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    • 1999
  • An integrated sewer management system was developed for the analysis of sewer flow and for optimal operation of sewer works using ArcView and SWMM. SWMM and ArcView were dynamically linked together using Avenue in order to construct user-friendly management system. The developed system was applied to a residential area in Choonchun city to verify its utilities. All the relevant field data were analyzed on the basis of developed system, and the modeling of sewer flow was implemented using MET, RUNOFF, TRANSPORT in SWMM. As this system can provide comprehensive prediction of flow and pollution profiles, it could serve as a tool not only for optimal management, but also for decision support system to examine the efficiency of planning and implementation of sewer projects.

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