• 제목/요약/키워드: sewerage system

검색결과 109건 처리시간 0.022초

효율적 빗물관리를 위한 하수도 요금체계 개편 방안 (The improvement of sewerage fee imposition system for efficient rainwater management)

  • 박규홍;강병준;박주양;박완규;김성태
    • 상하수도학회지
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    • 제28권5호
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    • pp.517-527
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    • 2014
  • As sewer flooding frequents due to localized and concentrated stormwater and increased non-permeable surface area after urbanization, building cities with sound water recycle and accordingly efficient management of rainwater is demanded. To do this, the existing sewage (including rainwater) fee imposition system should be philosophically evaluated. This study presents problematic issues of the existing domestic sewage fee imposition system considering the principle of sharing costs on the service of sewage and rainwater collection and treatment. Four methods to improve the existing sewage fee imposition system are suggested: 1) imposing stormwater fee according to Polluter Pays Principle, 2) clarification of the share of public sector, 3) reducing or exempting the sewerage fee for inhabitants reducing urban runoff by constructing their own rainwater management facilities, 4) imposing charge for discharging rainwater to sewers due to new development action. Short, mid, or long term planning for rainwater management is recommended considering the situation of each municipality.

국내·외 연구사례를 통해 본 하수처리시설 미세플라스틱 배출특성 및 관리방안 고찰 (A mini-review on discharge characteristics and management of microplastics in sewage treatment plants)

  • 정동환;주병규;이원석;정현미;박준원;김창수
    • 상하수도학회지
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    • 제32권4호
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    • pp.337-348
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    • 2018
  • As the issue of microplastics (MPs) detection in tap water was raised in other countries in 2017, monitoring of MPs in drinking and source water, and sewage treatment plant (STP) effluents was initiated. This study intends to look into other studies on MPs in STPs at home and abroad, and review the characteristics of MPs and their removal efficiencies in the STPs, the risk and effect of MPs on watersheds, and management practices in order to help better understand MPs in STPs. To manage MPs effectively in STPs, it is necessary to investigate the detection of MPs discharged from STPs, do research on human health risk and control measures, and build a monitoring system including standardized analytical methods.

불완전 분류식 하수처리구역의 강우에 의한 하수도시설의 침입수/유입수 영향 분석 (Effect of infiltration/inflow by rainfall for sewerage facilities in the area with partially separate sewer system)

  • 신정섭;한상원;육준수;이춘구;강선홍
    • 상하수도학회지
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    • 제33권3호
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    • pp.177-190
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    • 2019
  • The purpose of this study was to analyze the effects of sewerage facilities through I/I analysis by rainfall by selecting areas where storm overflow diverging chamber is remained due to the non-maintenance drainage equipment when the sewerage system was reconstructed as a separate sewer system. Research has shown that wet weather flow(WWF) increased from 106.2% to 154.8% compared to dry weather flow(DWF) in intercepting sewers, and that the WWF increased from 122.4% to 257.6% in comparison to DWF in storm overflow diverging chamber. As a result, owing to storm overflow diverging chamber of partially separate sewer system with untreated tributary of sewage treatment plant, rainfall-derived infiltration/inflow(RDII) has been analyzed 2.7 times higher than the areas without storm overflow diverging chamber. Meanwhile, infiltration quantity of this study area was relatively higher than that of other study areas. Therefore, it is necessary to reduce infiltration quantity through sewer pipe maintenance nearby river. Drainage equipment maintenance should be performed not to operate storm overflow diverging chamber in order to handle the appropriate sewage treatment plant capacity for rainfall because it is also expected that RDII due to rain will occur after maintenance. In conclusion, it is necessary to recognize aRDII(allowance of rainfall-derived infiltration/inflow) and to be reflected it on sewage treatment plant capacity because aRDII can occur even after maintenance to the complete separate sewer system.

하수관거 통수능 검토를 통한 관거 개선방안 연구 (Sewerage rehabilitation strategy based on sewer capacity evaluation)

  • 류재나;오재일;오석호
    • 상하수도학회지
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    • 제23권1호
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    • pp.47-55
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    • 2009
  • Sewers are important national infrastructure and play an essential part by handling both wastewater and stormwater to minimise problems caused to human life and the environment. However, they can cause urban flooding when rainfall exceeds the system capacity. Sewer flooding is an unwelcome and increasingly frequent problem in many urban areas, and its frequency will increase over time with urbanisation and climate change. Under current standards, sewers are designed to drain stormwater generated by up to 10 year return period storms, but data suggests that many in practice have been experienced flooding with exceeding system capacity under increased storm events. A large number of studies has considered upgrading or increasing the design standard but there are still lack of information to propose a suitable return period with the corresponding system quantity to achieve. A methodology is required to suggest a proper level of standard within a suitable sewerage rehabilitation planning that can avoid the exceedance problem. This study aimed to develop a methodology to support effective sewer rehabilitation that could prevent urban flooding mainly resulted from the exceedance of existing storm sewer system capacity. Selected sewerage rehabilitation methods were examined under different storm return periods and compared to achieve the best value for money.

Water Quality Conservation in Rural Areas of Japan - Case Study of Rural Sewerage Project -

  • Taniyama, Shigetaka;Sugita, Hideo
    • 한국농공학회지
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    • 제42권
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    • pp.50-60
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    • 2000
  • In this presentation I would like to introduce the Rural Sewerage Project, subsidized by the Ministry of Agriculture, Forestry and Fisheries (MAFF), for the purpose of water quality conservation and improvement of life in rural areas of Japan. Specifically, it will cover background information on the inauguration of the Project, its strong points, wastewater technology and some of its problems, system of the Project, etc.

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지속가능한 도시기반시설 건설을 위한 잠재적 환경영향 발생 특성 평가 - 하수처리시설, 하수관거, 방수로를 중심으로 - (The Environmental Impact Assessment for Sustainable Urban Infrastructure Construction - A Case Study on Wastewater Treatment Plant, Sewerage System and Tailrace -)

  • 박광호;김창희;황용우
    • 상하수도학회지
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    • 제20권6호
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    • pp.919-926
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    • 2006
  • In this study, environmental impact assessments of wastewater treatment plant (WWTP), sewerage system, and tailrace were performed using LCA methodology. The life cycle stages were divided into 3 categories; construction stage, maintenance stage and demolition & disposal stage. As a tool of impact assessment, Ecoindicator99 containing fate analysis, exposure & effect analysis and damage analysis, was used. As tile results of WWTP LCA, more than 80% of environmental impact was produced from maintenance stage. On the other hand, most of environmental impact was produced from construction stage in the case of tailrace and sewerage system construction.

The System of Sewage and Domestic Wastewater Treatment Plants in Tan-Sui River Basin

  • Ko, Chun-Han
    • 한국환경보건학회:학술대회논문집
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    • 한국환경보건학회 2002년도 춘계 국제 학술대회
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    • pp.26.2-39
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    • 2002
  • Tan-Sui River Basin covers Taipei metropolitan area of 2,726 square kilometers with more than six million residents. Since 1988, Taiwan government started to plan and construct an integrated sewerage system, consisted by both separated and concentrated trunk sewers, wastewater treatment plants and ocean outfalls. This presentation will introduce the master plan and major facilities of Tan-Sui River Basin sewerage system. Other measures to protect general water quality and the environment of adjacent river basin area of Tan-Sui River and her tributaries by Taiwan EPA will be presented as well.

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수도권 하수방제 방식에 관한 조사 연구 (A Surveying on the Sewage System in Seoul)

  • 남궁악
    • 물과 미래
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    • 제15권2호
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    • pp.11-22
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    • 1982
  • 본 연구고찰은 서울시와 일부 주변지역의 하수 배제방식을 채택함에 있어서 지리적 조건과 시행지의 형성실태 그리고 하수처리 문제와 관련하여 합리적인 하수배제방식을 구명하는데 있다. (1) 절충식하수배제방식 하수관거의 보급에 있어서는 장래하수처리문제와 관련 분류식이 바람직하나 기성시가지의 경우 분류식 관거의 전환에 따른 투자규모가 크고 교통소통에 주는 영향 등을 감안 합류식으로 유지하되 시가지 재개발 또는 지하철 건설등 근본적으로 지상구조물을 개조할 때에 한하여 분류식 관거를 보급토록하고, 신개발 지역에 대해서는 지금부터 분류식관거를 보급토록 하여 목표년도에 가서는 완전분류식이 되도록 제안하였다. (2) 하수배제는 주로 자연류하로 유도 배수구역의 편성에 있어서는 배수간선의 역할을 하는 38개 하천과 지세를 감안 자연류하가 극대화되도록 배수구역을 구분하였고 그것이 불가능한 구의, 자양, 한남, 반포, 암사등 지역에 대해서는 기설 유수지 배수펌프장 시설을 활용하여 배수할 수 있는 방안을 제시하였다. (3) 하천의 양안 또는 한쪽 하안에 찻집관거를 설치하여 하수를 집수하고 처리장으로 이송함과 동시에 각하천에서 용출하는 지하수량, 계곡수량, 강우시 일류수량등을 분리 배수케하여 한강수질개선에 기여케 하는 최적방버을 제안하였다.

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댐상류 하수도시설의 통합운영관리방안에 관한 연구(I) - 통합관리전문기술지원단의 운영방안에 대하여 - (Integrated Management of Sewerage Facilities in Upstream Watersheds of Multi-purpose Dams - Focusing on Management of a Technical Support Team)

  • 박규홍;김형준;안충희;최주행
    • 상하수도학회지
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    • 제25권1호
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    • pp.23-29
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    • 2011
  • Integrated management system (IMS) for sewerage facilities has been installed at 7 dams and 9 watersheds since 2006. However, there has been no decisive plan on how and who to manage efficiently IMS after finishing the construction. Therefore, in this study, it was suggested that a new organization, so to speak, a technical support team for integrated management that may operate and manage IMS efficiently, could need to be set up. Three scenarios were evaluated depending on the type of allocating human resources to new organization considering each levels of sewerage facilities. Economic analyses on each scenarios of human resources allocation were also carried out. As a result, establishing the technical support team for integrated management was estimated to give the net benefit from 1.3 billion to 20.6 billion won for 15 years.

댐상류하수도시설의 통합운영관리방안에 관한 연구(II) - 통합운영관리 조직구성, 인력절감효과 및 경제성 검토를 중심으로 - (Integrated Management of Sewage Facilities in Upstream Watershed of Dam(II) - Focusing on Organization, Human Resources Saving Effect and Economic Feasibility -)

  • 안충희;이관용
    • 상하수도학회지
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    • 제25권1호
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    • pp.51-61
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    • 2011
  • A project constructing sewerage facilities in 9 upstream areas of 7 multi-purpose dams will have been completed by 2011. After all constructing and retrofitting of the new and the existing sewerage facilities, integrated management system with operation and control functions for the each levels of facilities will also be utilized. In this study, we studied how to compose the organization taking responsibility of the integrated management system and analysed human resources saving effect against conventional method of individual management of each sewerage facility. As a result, a method estimating the human resources in employing the integrated management among several sewerage facilities at upstream areas of dams were presented and some 23% of human resources could be saved by integrated management. Commissioning to a specialized public institute showed the highest B/C ratio of 4.5 among commissioning to local public corporations, commissioning to private corporations, and role-sharing partnership, etc.