• 제목/요약/키워드: Critical sewer

검색결과 13건 처리시간 0.009초

하수도 시설 관리 시스템의 개발 및 적용 (Development and Application of Sewer Facility Management System)

  • 김준현;한영한
    • 산업기술연구
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    • 제19권
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    • pp.279-285
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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 RUNOFF, EXTRAN, TRANSPORT in SWMM. This system is now in the process of connection to the management system of watershed and surface environment in order to develope an integrated environmental management system. Futhermore, this system will be a critical part of overall control system of sewer works including sewer line and wastewater treatment plant. 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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우수관거 설계를 위한 계획강우의 임계지속기간 -서울 지역을 중심으로- (Critical Duration of Design Rainfall for the Design of Storm Sewer in Seoul)

  • 이재준;이정식;전병호;이종태
    • 물과 미래
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    • 제26권2호
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    • pp.49-57
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    • 1993
  • 본 연구는 하수관거 설계시, 계획강우의 임계지속기간을 결정하기 위한 것으로서, 지속기간내의 시간적 강우분포형은 Huff의 4분위법에 의하였으며, 20분~240분의 9개의 지속기간을 10년 빈도강우에 대하여 검토하였다. 본 연구에서는 서울시 관내의 18개 유수지 배수구역을 대상으로 해석을 시도하였으며, 유출해석을 위하여 ILLUDAS 모형을 이용하였다. 하수관거의 설계수문량 기준이 되는 첨두유출량을 최대로 발생시키는 계획강우의 임계지속기간은 대체로 30,60분으로 판단되었다. 계획강우의 시간적 분포형별로 임계지속기간을 설정할 수 있도록 첨두유량-유역면적-임계지속기간의 관계도를 제시하였다.

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웹 기반의 공간정보예측시스템을 이용한 통합적 하수도 관리 시스템의 개발 및 적용 (An Integrated Sewer Management System using Web Based Predictive Spatial Information System)

  • 김준현;한영한
    • 환경영향평가
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    • 제10권1호
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    • pp.73-83
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    • 2001
  • Web based integrated sewer management system was developed for the analysis of sewer flow and for the optimal operation of sewer works using ArcView and SWMM. SWMM and ArcView were dynamically linked together using Avenue in order to construct user-friendly information management system. The developed system was applied to the residential area in Choonchun city to verify its utilities. All the relevant field data were analyzed on the basis of the developed system, and the modeling of sewer flow was implemented using RUNOFF, EXTRAN, TRANSPORT in SWMM. This system is now in the process of connection to the management system of stormwater, surface and subsurface environment in order to develop an integrated environmental management system. Futhermore, this system will be a critical part of overall control system of sewer works including sewer network and wastewater treatment plant. As this system can provide comprehensive prediction of flow and pollution profiles, it could serve as a tool not only for the optimal management, but also for the decision support system to examine the efficiency of planning and implementation of sewer projects.

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전산모형과 지리정보시스템을 결합한 Web 기반의 유역 및 하수도 관리시스템의 개발 (Development of Web based Watershed and Sewer Management System using Computational Model and GIS)

  • 김준현;박형춘;한영한
    • 산업기술연구
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    • 제20권A호
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    • pp.63-71
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    • 2000
  • A web based watershed and sewer management system was developed for the analysis of stormwater runoff and sewer flow, and for optimal operation of sewer works using ArcView and SWMM. SWMM and ArcView were dynamically linked together using Avenue and Visual Basic in order to construct user-friendly management system. The developed system was applied to Choonchun city to verify its utilities. All the relevant field data were analyzed on the basis of developed system, and the modeling of runoff and sewer flow was implemented using RUNOFF and TRANSPORT blocks in SWMM. This system was connected to the management system of surface and subsurface environment management system in order to develop an integrated environmental management system. Futhermore, this system will be a critical part of overall control system of sewer works including sewer line and wastewater treatment plant. As this system can provide comprehensive prediction of flow and pollution profiles and analytical tool equipped with Web-GIS, it could serve widely 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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우리나라 하수도시설의 첨두부하율 영향요소 분석 (Analysis of Factors Affecting Peak Loading Coefficient of Sewer Works in Korea)

  • 현인환;이영호
    • 상하수도학회지
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    • 제25권6호
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    • pp.877-884
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    • 2011
  • Although peak loading coefficient is one of critical design factors for sewer works, its detailed affecting factors were not analyzed because of limited data availability. This study analyzed the affecting factors on peak loading coefficient with plenty data obtained from several newly constructed sewer works. Simple and multiple regression analysis methods were adopted to analyze the relationships of each variable with or without data filtering. Drainage population, drainage area, population density, and daily sewage flow per person showed very weak relationships under diverse characteristics of cities. However, daily sewage flow per person showed stronger relationships with peak loading when daily sewage flow per person was splitted into two ranges. Population density (i.e., drainage population divided by drainage area) and daily sewage flow per person considerably were related with peak loading coefficient when daily sewage flow per person is less than about 400 Lpcd.

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.

위험도 기반의 하수관로 CCTV 조사 우선순위 결정 연구 (Sewer CCTV Inspection Prioritization Based on Risk Assessment)

  • 손주영;이재현;오재일
    • 대한토목학회논문집
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    • 제37권3호
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    • pp.585-592
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    • 2017
  • 도심 내 매설된 대다수의 하수관로는 노후가 심각하게 진행되어 파손의 가능성이 높다. 또한, 도시개발의 집중도가 높아 인구밀도나 통행량이 많으므로 하수관로가 붕괴되면 사회 경제적으로 막대한 피해를 입게 된다. 따라서 관로 파손에 의한 사고를 예방하기 위해 사전적인 유지관리가 필요하며, 한정된 재원의 효율적인 활용을 위해 파손의 가능성과 피해의 규모를 동시에 고려한 위험도 기반의 우선순위 결정방안이 제시되어야 한다. 본 연구에서는, 다양한 해외 연구사례를 검토하여 위험도 기반의 하수관로의 조사 우선순위 결정 방법을 도출하였고 도심지 배수분구에 적용 검토하였다. 우선, 서울시 하수관로 GIS DB를 통해 확보 가능한 영향인자를 도출하고, 각 영향인자들의 가중치, 구분항목, 영향점수를 결정하여 가중치 환산법으로 하수관로 파손결과를 산정하였다. 또한, 하수관로의 예상 내용연수 대비 사용연수를 계산하여 파손가능성을 도출하였으며, 내츄럴 브레이크 방법으로 파손결과와 파손가능성을 5등급으로 구분하였다. 위 방법을 서울시 내 위치한 소규모 배수분구에 적용하여 위험도 매트릭스와 위험도 등급을 도출하였으며, 그 결과 전체 대상의 26%가 위험도 4-5등급인 CCTV조사 우선대상으로 선정되었다. 따라서 위험도 기반의 CCTV 우선순위 결정방법을 활용하여 조사가 우선적으로 필요한 대상을 체계적으로 결정할 수 있을 것이다.

GIS를 이용한 도심지 Nonpoint Source 오염 물질의 평가연구 (Urban Nonpoint Source Pollution Assessment Using A Geographical Information System)

  • 김계현
    • Spatial Information Research
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    • 제1권1호
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    • pp.39-53
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    • 1993
  • 지리 정보시스템(Geographical Information System)을 이용하여 도심지 Non Pount Source오염 물질의 양이 오염원 종류별로 확인되고 적절하한 오염감소를 위한 대책이 마련되었다. 경험에 의한 공해물질 예측모델을 운용하기 위한 모든 입력 자료들이 도심지의 거리 구획별(Street block)별로 제공되어 각 거리 구획별 오염량이 계산되었다. 계산된 오염량은 각 우수 배출구별로 합산되어 오염량이 많은 지역이 판명되었다. 또한 오염량을 줄이기 위하여 인공호수를 만들기 위한 적지분석이 수행되었으며, 그에 따른 비용분석이 이루어졌다. 본 연구는 지형정보시스템의 도심지 공해연구에의 기여도를 입증시켜 주었다.

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지리정보체계를 이용한 도시 비점원오염의 대축척 모형화 (Modeling Large Scale of Urban Nonpoint Source Pollution using a Geographic Information System)

  • 김규현
    • 대한공간정보학회지
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    • 제1권1호
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    • pp.171-180
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    • 1993
  • 도시하수와 관련된 비점원 오염에 대한 관심은 더 나은 수질계획을 위한 새로운 도구의 발전을 이끌어 왔다. 이 논문은 도시의 수질연구를 위해 지리정보체계가 어떻게 응용되는지를 보여준다. 지리정보체계는 비점원 오염 모형화를 위한 토지이용자료를 관리하기 위해 이용되고, 또한 여러 가지 형태의 지리적 집합체내에서 오염물질을 평가하는데 이용된다. 경험적인 수질모형은 토지이용에 근본을 둔 오염물질 축적을 평가하기 위해 이용된다. 토지이용범위는 최근 사진의 판독을 통해서 구범위를 갱신함으로써 결정된다. 이러한 토지이용범위는 각각의 토지이용 다각형에 대한 오염물질 축적을 기록하는데 이용된다. 도시하수 유역과 소하수 유역의 범위를 결정하기 위해 하수지도를 수치화 시키고 해석한다. 하수구 소유역층에서 오염물질 축적을 중첩시킴으로써 주요하수의 출구에 대한 오염 축적물이 계산된다. 축적 정보를 기본으로 과다 오염 축적물의 임계지역이 어디에 위치하고 있으며, 오염 축적물을 통제하기 위한 최선의 관리기법의 효율성이 평가된다.

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우수저류조의 형상과 도류벽 및 자갈채움에 따른 SS 제거효율 (SS Removal-rate Efficiency of Storm-water Detention Storage Tank Depending upon Length, Inside Training Wall and Gravel Filling)

  • 이종태;서홍준;서경아
    • 상하수도학회지
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    • 제23권5호
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    • pp.655-667
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    • 2009
  • An experimental study is performed on reducing the pollutants supplied by storm water through enhancing efficiency of SS from the detention storage tank where CSOs are kept temporarily before discharge to the receiving water system. SS removal efficiency is investigated in accordance with various conditions of the detention pond-such as its length, the existence of training wall, and the use of gravel filling. The removal efficiency is strongly affected by the detention pond's length until the critical falling distance of the suspended solids is reached. For cases where the tank has a length longer than this critical condition, the removal rate shows less sensitivity. To enhance the SS removal efficiency of tanks of shorter than the critical length, we studied alternative types of tank in which inside training walls are installed. The results showed improvement of 14 to 37% in removal efficiency in 2hours detention(2 training walls). The important factor in achieving a high SS removal rate is ensuring the critical length of the detention pond, but for the cases where the basin length cannot be guaranteed, baffles or a gravel filling scheme may be introduced to attain considerable efficiency. The results of studying and comparing different storage tank conditions show that, in terms of elimination efficiency, a storage tank with gravel filling and training walls > a storage tank with gravel filling > a storage tank with training walls > an empty tank. The experimental results should contribute to development of related further research, by empirically verifying the already assumed importance of critical falling distance, training walls, and gravel filling schemes.