• Title/Summary/Keyword: integrated sewerage system

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

  • Ahn, Choong-Hee;Lee, Kwan-Yong
    • Journal of Korean Society of Water and Wastewater
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    • v.25 no.1
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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.

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

  • Park, Kyoo-Hong;Kim, Hyung-Joon;Ahn, Choon-Hee;Choi, Joo-Hang
    • Journal of Korean Society of Water and Wastewater
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    • v.25 no.1
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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.

Who Should Control the Integrated Management System for Sewerage Facilities in the Upper Reaches of Multi-Purpose Dams in Korea?

  • Park, Kyoo-Hong;Kim, Hyung-Joon
    • Environmental Engineering Research
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    • v.15 no.2
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    • pp.99-103
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    • 2010
  • Integrated management systems (IMS) that control entire sewerage facilities in the upper reaches of multi-purpose dams are being constructed for their efficient operation and management. However, because the IMS installed in a watershed belong to several local government bodies, significant conflict would be expected between stakeholders in the process of deciding who should control the IMS after completion of the construction that was initially implemented under the support of central government. The objective of this study was to suggest a decision making to determine who should control the IMS for sewerage facilities in the upper reaches of multipurpose dams in Korea, using the analytic hierarchy process (AHP). Three alternatives were selected to determine who should control the IMS for sewerage facilities: commissioning to public corporations, commissioning to private corporations, and a role-sharing partnership. In using the AHP technique, the emphasis was on comparing public interests, economics, efficiency, sustainability, specialty, grievance mediation and receptiveness. As a result, building a role-sharing partnership received the highest score. Commissioning to a special institute was also suggested as an alternative as this showed a score similar to that of building a role-sharing partnership.

Establishment of Life Cycle Management(LCM) System for Water Supply and Sewerage Systems (상하수도시설에 대한 전과정관리(LCM)시스템 구축방안 연구)

  • Park, Ji-Hyoung;Hwang, Young-Woo;Kim, Young-Woon;Park, Kwang-Ho
    • Journal of Korean Society of Water and Wastewater
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    • v.26 no.2
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    • pp.303-312
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    • 2012
  • Water supply and sewerage systems are the large-scale urban infrastructure ejecting large amount of environmental load over the life-cycle. Therefore, it is important not only to optimize in the aspect of economical superiority and process efficiency but also to consider earth scale environmental impact. This study aimed to suggest the establishment of life cycle management(LCM) system as an integrated management solution in urban water supply and sewerage systems. As a result, the methodology for LCM system consisting of life cycle assessment(LCA), life cycle cost(LCC), life cycle $CO_{2}(LCCO_{2})$ and life cycle energy(LCE) was developed. Also, several case studies using the latest statistics data of water supply and sewerage systems were carried out to investigate the field applicability of LCM.

Application of contingent valuation method for estimating willingness-to-pay in planning the integrated sewerage system in the catchment of Dam Chung-Ju (충주댐 상류지역 하수도시설 확충사업에 관한 주민의 지불의사액 추정을 위한 CVM의 적용에 관한 연구)

  • Jeong, Dong-Hwan;Park, Kyoo-Hong;Jin, Young-Sun;Cho, Joung-Moo
    • Journal of Environmental Impact Assessment
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    • v.13 no.2
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    • pp.73-86
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    • 2004
  • The objective of this research was to estimate residents' willingness-to-pay using contingent valuation method and to investigate their environmental sensibilities prior to conduct the costbenefit analysis on the watershed management program of integrated sewerage construction and operation in the catchment of Dam Chung-Ju. A set of questionnaire was prepared and asked to 1,200 residents at downstream area as well as upstream area of Dam Chung-Ju. As a result, environmental sensibility of the residents living in the catchment of upstream of Lake Chung-Ju seemed very high. However, the substantial practice in their own life for conserving their environment was inactive, although residents' efforts trying to collect and dispose garbages in separate containers and to minimize the waste discharge load were actually made. The willingness-to-pay on each month for 20 years was estimated as 4,841 wons for the openended question and 3,411 wons for the close-ended question. Factorial analysis was also performed to obtain correlation among the questions asked. Seven groups of the correlated questions were identified and their contribution to the estimated willingness-to-pay was analyzed.

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

  • Ko, Chun-Han
    • Proceedings of the Korean Environmental Health Society Conference
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    • 2002.04a
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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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Simulation and analysis of urban inundation using the integrated 1D-2D urban flood model (1D-2D 통합 도시 침수 해석 모형을 이용한 침수 원인 분석에 관한 연구)

  • Lee, Seungsoo;Noh, Seong Jin;Jang, Cheolhee;Rhee, Dong Sop
    • Journal of Korea Water Resources Association
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    • v.50 no.4
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    • pp.263-275
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    • 2017
  • Integrated numerical approaches with physically-based conceptualization are required for accurate urban inundation simulation. In this study, we described, applied and analyzed an integrated 1-dimensional (1D) sewerage system and 2-dimensional (2D) surface flow model, which was suggested by Lee et al. (2015). This model was developed based on dual-drainage concept, and uses storm drains as an discharge exchange spot rather than manholes so that interaction phenomena between surface flow and sewer pipe flow are physically reproduced. In addition, the building block concept which prevents inflows from outside structures is applied in order to consider building effects. The capability of the model is demonstrated via reproducing the past flooding event at the Sadang-cheon River catchment, Seoul, South Korea. The results show the plausible causes of the inundation could be analysed in detail by integrated 1D-2D modeling.

Application of Benefit Transfer Method to Estimate the Willingness-to-pay in Planning the Construction of the Integrated Sewerage System at the Catchment Areas of Dams (댐상류지역 하수도시설 확충사업에 관한 지불의사액 추정을 위한 편익전환기법의 적용)

  • Jeong, Dong-Hwan;Jin, Young-Sun;Park, Kyoo-Hong
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.1
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    • pp.74-80
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    • 2006
  • Benefit transfer is a method, which obtains an estimate for the economic valuation of non-marketed commodities at a given site through the analysis of studies that have been previously carried out to value similar commodities at a different location. The objective of this study was to estimate benefit transfer values for the construction of the integrated sewerage system in the catchment area of dams in Korea. For pooled data analysis, five models were suggested in this study. Among five models, model 2 showed only 6 to 7% errors when the willingness-to-pay(WTP) predicted in the policy-site, Dam Soyang was compared with that estimated using contingent valuation method(CVM) in the study-sites, Dams Namgang, Hapcheon, and Daecheong. However, the WTP estimate predicted by model 1 showed the absolute errors of 42 to 47% when it was compared with WTP estimated using CVM in Dams Andong and Imha. It seemed that residents of Dams Andong and Imha have feeling of being victimized since two dams were constructed very adjacently, the upstream area was designated as drinking water source protection zone, and thereafter their developmental economical actions have been significantly restricted.

Data complement algorithm of a complex sewerage pipe system for urban inundation modeling

  • Lee, Seungsoo;An, Hyunuk;Kim, Yeonsu;Hur, Young-Teck;Lee, Daeeop
    • Korean Journal of Agricultural Science
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    • v.47 no.3
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    • pp.509-517
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    • 2020
  • Geographic information system (GIS) sewer network data are a fundamental input material for urban inundation modeling, which is important to reduce the increasing damages from urban inundation due to climate change. However, the essential attributes of the data built by a local government are often missing because the purpose of building the data is the maintenance of the sewer system. Inconsistent simplification and supplementation of the sewer network data made by individual researchers may increase the uncertainty of flood simulations and influence the inundation analysis results. Therefore, it is necessary to develop a basic algorithm to convert the GIS-based sewage network data into input data that can be used for inundation simulations in consistent way. In this study, the format of GIS-based sewer network data for a watershed near the Sadang Station in Seoul and the Oncheon River Basin in Busan was investigated, and a missing data supplementing algorithm was developed. The missing data such as diameter, location, elevation of pipes and manholes were assumed following a consistent rule, which was developed referring to government documents, previous studies, and average data. The developed algorithm will contribute to minimizing the uncertainty of sewer network data in an urban inundation analysis by excluding the subjective judgment of individual researchers.

A Study on the Management System Improvement of Effluent Water Qualities for Public Sewage Treatment Facilities in Korea (우리나라 공공하수처리시설의 방류수 수질 관리체계 개선방안 고찰 - 미국, 일본, 유럽의 공공하수처리시설 방류수 수질 관리제도를 중심으로 -)

  • Jeong, Donghwan;Choi, Incheol;Cho, Yangseok;Chung, Hyenmi;Kwon, Ohsang;Yu, Soonju;Yeom, Icktae;Son, Daehee
    • Journal of Environmental Impact Assessment
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    • v.23 no.4
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    • pp.296-314
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    • 2014
  • In recent years, Ministry of Environment (MOE) has been implementing a phased strengthening of the effluent standards for sewage treatment plants. In this regard, a comprehensive system should be developed to help check the appropriateness of such standards by specifying the grounds for standard-setting and investigating the current operation of sewage treatment plants clearly. It is necessary to establish a new standard-setting system for the effluent that is in a closer connection with the environmental criteria and rating systems. In the United States, the federal government provides guidelines on the least provisions and requirements for the Publicly Owned Treatment Works (POTWs). Local governments set the same or stricter guidelines that reflect the characteristics of each state. In Japan, the sewage treatment plants are subject to both the effluent standards and the discharge acceptable limits to pubic waters under the sewerage law. Specific requirements and limits are set in accordance with local government regulations. The European Union imposes sewage treatment plants with different provisions for effluent standards, depending on the sensitivity of public waters to eutrophication. The effluent standards for sewage treatment plants are classified by pollutant loads discharged to receiving waters. MOE also needs to introduce systems for setting new parameter standards on a POTW effluent by applying statistical means and treatment efficiencies or optimal treatment techniques, as seen in the cases of the US National Pollutant Discharge Elimination System (NPDES) or the EU Integrated Pollution Prevention and Control (IPPC).