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      • KCI등재
      • KCI등재

        생활폐기물 자원화시설의 편익분석

        한영한(Han, Young-Han),이해승(Lee, Hae-Seung) 한국산학기술학회 2012 한국산학기술학회논문지 Vol.13 No.6

        본 연구에서는 자원화 가능한 폐기물의 양이 분석되었으며, 폐기물 자원화시설을 단독 또는 광역시설로 추 진할 경우의 설치비 및 운영비를 산정하고, 매립비용과 비교, 분석함으로서 자원화시설의 타당성을 검토하고자 하였 다. 자원화시설로는 고형연료화(RDF) 시설과 자원회수시설(소각)에 대한 검토를 수행하였다. 그리고, 강원도 각 시· 군별 생활폐기물의 발생량과 가연성 폐기물의 비율을 고려하여 비용분석을 위한 광역권역을 설정하였다. 분석 결과, 단독시설의 경우에는 RDF 및 자원회수시설(소각) 모두 매립방식에 비교하여 경제적 편익이 없는 것으로 나타났다. 광역 시설의 경우, RDF 방식은 매립방식에 비해 많은 비용을 절감하는 것으로 나타났지만, 자소각 방식은 그렇지 않은 것으로 나타났다. 경제적 편익과는 별개로 화석 연료의 고갈, 지구온난화, 환경적 위해성, 그리고 사회적 갈등 등을 고려할 때 폐기물의 자원화는 중요하게 고려되어야 한다. 특히, 향후 CDM 사업이 활성화될 경우 CERs(온 실가스 저감인증)에 의한 추가적인 경제적 부가가치도 기대할 수 있을 것으로 나타났다. RDF 시설에 의한 CERs는 약 2,565억원, 자원회수시설에 의한 CERs는 약 540억원(단독시설) 및 774억원(광역시설)으로 분석되었다. In this study, the amount of waste resource that could be recovered was analyzed. The installation and operation costs of waste resource recovery for both single- and multi-regional facility were calculated, and compared with the costs of landfill to investigate the feasibility of them. RDF(Refuse Derived Fuel) process and resource recovery by incineration process were considered as waste resource recovery facility. And, the multi-regions for cost analysis were established on the basis of the proper generation rate of municipal waste with the consideration of combustible ratio. The study results showed that single region facility for both RDF and incineration process has no economic benefit, compared with the landfill method. For the multi-regional facility, RDF process could save a large cost than the landfill method, but the incineration facility couldn't. Separate from the economic benefits, the waste resource recovery should be importantly considered when considering the depletion of fossil fuel, global warming, environmental toxicity, and the enormous expenses due to social conflict and confuse. When the CDM(Clean Development Mechanism) is vitalized in the near future, the additional economic benefits by CERs(Certified Emission Reductions) could be expected. CERs for RDF facility is corresponding to about 256.5 billion won, and CERs for incineration facility is corresponding to about 54 and 77.4 billion won for singleand multi-regional facility, respectively.

      • KCI등재후보

        하수도 시설 관리 시스템의 개발 및 적용

        김준현,한영한,Kim, Joon Hyun,Han, Young Han 강원대학교 산업기술연구소 1999 産業技術硏究 Vol.19 No.-

        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.

      • KCI등재후보

        공간정보시스템과 지하수모형을 결합한 지하환경관리시스템의 구축

        김준현,한영한,Kim, Joon Hyun,Han, Young Han 강원대학교 산업기술연구소 1999 産業技術硏究 Vol.19 No.-

        This study was performed to develop an information processing system for the sound conservation of soil and groundwater resources. The system contains the geographic spatial information system(GSIS), and the numerical model of groundwater flow and contamination. Numerical models (MODFLOW, MOC3D, MT3D, PMPATH, PEST, UCODE) and GSIS(ArcView) were integrated for the construction of an integrated management system of subsurface environment. The developed system was applied to the management of three mineral water companies located in clean mountain area. The impact of pumping over the overall catchment basin was modeled using the developed system for the decision of future management criteria.

      • KCI등재

        FEMWASP 모형 및 ArcView 를 결합한 통합적 환경영향평가 모형의 개발 및 적용

        김준현(Joon Hyun Kim),한영한(Young Han Han),최윤정(Yoon Jung Choi) 한국환경영향평가학회 1998 환경영향평가 Vol.7 No.2

        An integrated EIA tool was developed to analyze present and future environmental quality status of Youngwol Basin using ArcView and FEMWASP. All the input data and computational results were prepared and graphically displayed on the basis of ArcView. FEMWASP and ArcView were integrated using the command system.execute in script of Avenue. Modeling items were inserted in the GUI of ArcView. The modeling result showed that the water quality of the proposed Yougwol Lake would be at the stage of eutrophication. The developed system can be applied to the water quality management of drinking water resources to set up the regulatory acts and project plan of governmental policy.

      • KCI등재

        웹 기반의 공간정보예측시스템을 이용한 통합적 하수도 관리 시스템의 개발 및 적용

        김준현(Joon Hyun Kim),한영한(Young Han Han) 한국환경영향평가학회 2001 환경영향평가 Vol.10 No.1

        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.

      • KCI등재

        다차원 유한요소법을 이용한 웹 기반의 범용적 편미분 방정식 해석 모형의 개발 및 적용 - 1. 모형의 개발 -

        김준현(Joon Hyun Kim),한영한(Young Han Han) 한국환경영향평가학회 2001 환경영향평가 Vol.10 No.4

        This study is aimed at the development of a comprehensive web-based partial differential equation solver (WPDES) using multidimensional finite element method, which can be operated on the basis of world wide web. Overall issues of engineering and environmental information management and facility control could be implemented using this solver. This paper describes the development technique of the model, which is first part on development of partial differential equation solver. Conventional commercial general solver of computational fluid dynamics problems were investigated. All the relevant environmental models were analyzed to develop integrated environmental management system using WPDES. The governing equations and the parameters of investigated models were analyzed and integrated. Several numerical modules were invented for each partial differential term in partial differential equation of many related modeling problems. Each module was coded in the fashion of object oriented method, and was combined independently for the overall governing equation. WPDES has unique characteristic, which can analyze the problem through the suitable combination of modules without development of additional models for each environment problem with different governing equation, main variables, and parameters.

      • FEMWASP 모형을 이용한 영월 다목적댐의 장래 수질 예측

        김준현(Kim Joon Hyun),한영한(Han Young Han) 강원대학교 산업기술연구소 1998 産業技術硏究 Vol.18 No.-

        The future water quality of Youngwol Dam was predicted using FEMWASP. In the this study, point and non-point source in the basin was investigated in detail, and future pollutant loading was computed by various prediction technique. The water quality of 29 sites was analyzed over four seasons. FEMWASP was used to predict future water quality of Youngwol lake and downstream of proposed dam. Future water quality of Youngwol lake was predicted to configure eutrophication status, management criteria was suggested to minimize the pollution problems coming from future eutrophication. Discharge rate of dam was decided as 30CMS to conserve the water quality, and overall design of dam was changed.

      • 토양오염방지를 위한 지하저장탱크의 관리 방안 연구

        김준현(Kim Joon Hyun),한영한(Han Young Han) 강원대학교 산업기술연구소 1998 産業技術硏究 Vol.18 No.-

        The purpose of this study was to analyze their status of underground storage tank(UST) facilities and level of soil contamination and to establish its management criteria. DB program was developed to analyze the correlation between specific characteristic of UST and level of soil contamination. For a suitable management of UST, leakage monitoring and inspection method of UST was investigated. Inspection period was established based on the leakage rate. The most dominant factor for leakage seemed to be caused by the corrosion. Therefore, main factor, construction method and installation year of UST, and corrosion protection system were suggested for optimal protection of UST. Considering the present management status of UST in Korea, inspection and management criteria of UST should be accomplished in term of contamination protection of leakage, and flexible regulation act should be introduced for each specific site.

      • KCI등재

        전산모형 및 공간정보시스템을 결합한 지하환경관리시스템의 개발 및 적용

        김준현(Joon Hyun Kim),한영한(Young Han Han) 한국환경영향평가학회 2001 환경영향평가 Vol.10 No.2

        This study was performed to develop an information processing system for the sound conservation of soil and groundwater resources. The system contains numerical models and geographic information systems for underground flow and contamination. Multidimensional Finite Element Model for Subsurface Environment (MFEMSE) was invented to analyze underground flow and pollution problems of water and gas phases. Newly developed and conventional models (MODFLOW, MOC3D, MT3D, PMPATH, PEST, UCODE) were integrated with GIS (ArcView) for the construction of an integrated information management system of subsurface environment. This system was applied to the management of three mineral water companies located in clean high mountain basin. Desirable management criteria and operational strategies were suggested using this system. The system was constructed to be applied for the broad sense of decision supporting tools in related topics of this study, so that it can be used not only for the prevention regulations, but also for clean up projects.

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