• 제목/요약/키워드: conjunctive management

검색결과 11건 처리시간 0.024초

지표수-지하수를 연계한 수자원의 효율적 이용 - (II) 적용 (Effective Use of Water Resources Through Conjunctive Use - (II) Application)

  • 김수민;이상일;김병찬
    • 한국수자원학회논문집
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    • 제37권10호
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    • pp.799-812
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    • 2004
  • 물 부족을 해결하기 위한 방안으로 지표수-지하수 연계이용에 관한 연구가 최근 국내에서도 관심을 끌고 있다. 지역 여건을 최대한 활용하면서 동시에 친환경적인 지표수와 지하수 연계이용은 통합적인 수자원 관리에 기여하는 바가 클 것으로 예측된다. 본 연구에서는 선행 논문에서 개발된 방법론 즉, 지표수-지하수 연계이용이 시행되어야 할 지역의 선정, 가뭄분석을 통한 물 공급 시나리오 도출, 연계이용 결과 얻어지는 추가 수자원확보량 산정까지 전과정의 현장적용성을 검토하였다. 적지분석을 통해 속초시가 대상지역으로 선정되었고, 도출된 운영 시나리오를 적용한 결과, 가뭄빈도에 따라 약 490만∼740만 ㎥/year의 수자원이 추가적으로 확보되는 것으로 산정되었다. 개발된 방법론은 지표수-지하수 연계이용의 방안과 효과를 정량적으로 제시할 수 있으며, 물 관리 계획수립시 유용한 판단도구로 활용될 수 있을 것으로 사료된다.

지표수-지하수를 연계한 수자원이 효율적 이용 - (1) 방법론 (Effective Use of Water Resource Through Conjunctive Use - (1) The Methodology)

  • 이상일;김병찬;김수민
    • 한국수자원학회논문집
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    • 제37권10호
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    • pp.789-798
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    • 2004
  • 가뭄이나 장래 물 부족을 해결하기 위한 방안으로 지표수-지하수 연계이용 방안이 대두되고 있다. 하나의 수원에 지나치게 높게 의존하고 있는 지역은 물 부족사태가 발생할 개연성이 높기 때문에 연계이용을 검토할 수 있으며, 추가 및 신규 수자원 확보 차원에서도 연계이용은 매우 현실적이고 효율적인 대안이 될 수 있다. 본 연구에서는 가뭄과 같은 비상시 안정적인 물 공급을 위해 지표수와 지하수를 효율적으로 연계하여 추가적인 수자원을 확보하는데 적용할 수 있는 방법론을 개발ㆍ제시하였다. 개발된 방법론은 지표수-지하수 연계이용 적지선정을 위한 분석, 가뭄해석을 기초로 한 물 공급 시나리오 도출, 유형별 추가 수자원 확보량 산정 등의 절차로 구성되며, 체계적이고 정량적인 방법에 의해 지표수-지하수 연계이용을 계획할 수 있어 공공기관 등에서 물 관리 방안 수립시 유용한 도구가 될 수 있다.

지표수 지하수 연계운영에 의한 갈수기 지표수-수자원관리 (Conjunctive Management Considering Stream-Aquifer Systems for Drought Season)

  • 차기욱;김우구;신용노
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.389-394
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    • 2008
  • The purpose of this research was to develop a methodology to determine whether conjunctive surface water and groundwater management could significantly reduce deficits in a river basin with a relatively limited alluvial aquifer. The Geum River basin is one of major river basins in South Korea. The upper region of the Geum River basin is typical of many river basins in Korea where the shape of river basin is narrow with small alluvial aquifer depths from 10m to 20m and where most of the groundwater pumped comes quickly from the steamflow. The basin has two surface reservoirs, Daecheong and Yongdam. The most recent reservoir, Yongdam, provides water to a trans-basin diversion, and therefore reduces the water resources available in the Geum River basin. After the completion of Yongdam reservoir, the reduced water supply in the Geum basin resulted in increasing conflicts between downstream water needs and required instream flows, particularly during the low flow season. Historically, the operation of groundwater pumping has had limited control and is administered separately from surface water diversions. Given the limited size of the alluvial aquifer, it is apparent that groundwater pumping is essentially taking its water from the stream. Therefore, the operation of the surface water withdrawals and groundwater pumping must be considered together. The major component of the conjunction water management in this study is a goal-programmin g based optimization model that simultaneously considers surface water withdrawals, groundwater pumping and instream flow requirements. A 10-day time step is used in the model. The interactions between groundwater pumping and the stream are handled through the use of response and lag coefficients. The impacts of pumping on streamflow are considered for multiple time periods. The model is formulated as a linear goal-programming problem that is solved with the commercial LINGO optimization software package.

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VRQL : 시각 관계형 데이터베이스 질의어 (VRQL : A Visual Relational Database Query Language)

  • 이석균
    • Asia pacific journal of information systems
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    • 제12권2호
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    • pp.99-118
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    • 2002
  • In this paper, we propose a visual relational database query language, VRQL, by modifying and extending the recently proposed $VOQL^*$. Like $VOQL^*$, VRQL, based on ven Diagram and graph, naturally reflects the structure of schemas in queries and has recursive formal semantics. However, VRQL has relationally complete expressiveness, while $VOQL^*$ is only a conjunctive query language. In the logical definition part of VRQL, which is the relational version of $VOQL^*$, most features of $VOQL^*$ are retained, and the semantics of queries are based on the tuple relational calculus. In the procedural definition part of VRQL, by introducing the concept of VRQL view and set operations, the expressiveness of VRQL is increased to the level equivalent to that of the relational algebra. Due to the introduction of VRQL views, existing queries or temporary queries used in the process of creating queries can be represented with views, so that complex queries may be represented more conveniently. Set operations, used with VRQL views, enable us to represent various queries, beyond the expressiveness of conjunctive query languages.

다수원 상수도시스템 연계운영을 위한 최적 네트워크 모형 구축 (Development of Optimal Network Model for Conjunctive Operation of Water Supply System with Multiple Sources)

  • 유태상;하성룡;정태성
    • 한국수자원학회논문집
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    • 제44권12호
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    • pp.1001-1013
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    • 2011
  • 이웃한 상수도시스템의 공급 가능지역이 중첩될 경우, 이들 시스템을 연계함으로써 경제성과 수질 조건을 만족시키는 조건별 용수공급체계를 구축하는 것이 필요하다. 용수수요 조건별 경제적 급수구역과 최적 펌프운영율을 산정하기 위하여 관망수리해석 모형(EPAnet)과 네트워크 최적화모형(KModSim)을 연계 하는 최적 네트워크모형을 개발하였다. 개발된 최적 네트워크 모형을 사등가압장, 구천댐 그리고 연초댐의 3개 상수원이 존재하는 거제지역 상수도시스템에 적용하고 2007년 운영 결과와 비교하는 방법으로 모형을 검정하였다. 최적 네트워크 모형의 적용성을 검토하기 위하여, 2011년 용수자료를 이용하여경제적급수구역변경에따른펌프운영및 수질의 적정성을평가 하였다. 평가결과본 모형은 수량, 경제성 그리고 수질을 모두 만족하는 최적해를 구하는 것으로 나타나 송배수계통간의 최적 설계 혹은 최적연계운영율을 구하기 위한 모형으로 활용이 가능하다.

통합수자원평가계획모형 K-WEAP의 적용성 Application of K-WEAP (Application of K-WEAP (Korea-Integrated Water Resources Evaluation and Planning Model))

  • 최시중;이동률;문장원;강성규
    • 한국수자원학회논문집
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    • 제43권7호
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    • pp.625-633
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    • 2010
  • 수자원개발의 한계와 수질의 오염으로 인해 제한된 수자원을 효율적으로 이용하고 수질을 보전하기 위한 통합수자원관리가 절실히 요구되는 상황이다. 최근 이를 위해 수자원을 통합적으로 평가하여 계획의 수립을 지원할 수 있는 통합수자원평가계획모형(K-WEAP)을 개발하였다. 본 연구에서는 3가지 부문에서 K-WEAP의 적용성을 평가하였다. 첫째는 수자원장기종합계획에 적용한 K-WEAP의 물 수급 전망 과정과 분석결과를 통하여 수자원 계획의 도구로서 K-WEAP의 유용성을 제시하였다. 둘째는 K-WEAP에서 제공하는 지표수-지하수 연계모의를 통해 보다 합리적이고 지속가능한 지하수이용 계획을 제시하였다. 마지막으로, K-WEAP의 수질모의 신뢰성을 평가하기 위하여 석화천을 대상으로 QUAL2E 모형의 결과와 비교하여 수량-수질 통합관리평가의 기능을 확인하였다.

A Conceptual Approach for Discovering Proportions of Disjunctive Routing Patterns in a Business Process Model

  • Kim, Kyoungsook;Yeon, Moonsuk;Jeong, Byeongsoo;Kim, Kwanghoon
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권2호
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    • pp.1148-1161
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    • 2017
  • The success of a business process management system stands or falls on the quality of the business processes. Many experiments therefore have been devoting considerable attention to the modeling and analysis of business processes in process-centered organizations. One of those experiments is to apply the probabilistic theories to the analytical evaluations of business process models in order to improve their qualities. In this paper, we excogitate a conceptual way of applying a probability theory of proportions into modeling business processes. There are three types of routing patterns such as sequential, disjunctive, conjunctive and iterative routing patterns in modeling business processes, into which the proportion theory is applicable. This paper focuses on applying the proportion theory to the disjunctive routing patterns, in particular, and formally named proportional information control net that is the formal representation of a corresponding business process model. In this paper, we propose a conceptual approach to discover a proportional information control net from the enactment event histories of the corresponding business process, and describe the details of a series of procedural frameworks and operational mechanisms formally and graphically supporting the proposed approach. We strongly believe that the conceptual approach with the proportional information control net ought to be very useful to improve the quality of business processes by adapting to the reengineering and redesigning the corresponding business processes.

Setting limits for water use in the Wairarapa Valley, New Zealand

  • Mike, Thompson
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.227-227
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    • 2015
  • The Wairarapa Valley occupies a predominantly rural area in the lower North Island of New Zealand. It supports a mix of intensive farming (dairy), dry stock farming (sheep and beef cattle) and horticulture (including wine grapes). The valley floor is traversed by the Ruamahanga River, the largest river in the Wellington region with a total catchment area of 3,430 km2. Environmental, cultural and recreational values associated with this Ruamahanga River are very high. The alluvial gravel and sand aquifers of the Wairarapa Valley, support productive groundwater aquifers at depths of up to 100 metres below ground while the Ruamahanga River and its tributaries present a further source of water for users. Water is allocated to users via resource consents by Greater Wellington Regional Council (GWRC). With intensifying land use, demand from the surface and groundwater resources of the Wairarapa Valley has increased substantially in recent times and careful management is needed to ensure values are maintained. This paper describes the approach being taken to manage water resources in the Wairarapa Valley and redefine appropriate limits of sustainable water use. There are three key parts: Quantifying the groundwater resource. A FEFLOW numerical groundwater flow model was developed by GWRC. This modelling phase provided a much improved understanding of aquifer recharge and abstraction processes. It also began to reveal the extent of hydraulic connection between aquifer and river systems and the importance of moving towards an integrated (conjunctive) approach to allocating water. Development of a conjunctive management framework. The FEFLOW model was used to quantify the stream flow depletion impacts of a range of groundwater abstraction scenarios. From this, three abstraction categories (A, B and C) that describe diminishing degrees of hydraulic connection between ground and surface water resources were mapped in 3 dimensions across the Valley. Interim allocation limits have been defined for each of 17 discrete management units within the valley based on both local scale aquifer recharge and stream flow depletion criteria but also cumulative impacts at the valley-wide scale. These allocation limits are to be further refined into agreed final limits through a community-led decision making process. Community involvement in the limit setting process. Historically in New Zealand, limits for sustainable resource use have been established primarily on the basis of 'hard science' and the decision making process has been driven by regional councils. Community involvement in limit setting processes has been through consultation rather than active participation. Recent legislation in the form of a National Policy Statement on Freshwater Management (2011) is reforming this approach. In particular, collaborative consensus-based decision making with active engagement from stakeholders is now expected. With this in mind, a committee of Wairarapa local people with a wide range of backgrounds was established in 2014. The role of this committee is to make final recommendations about resource use limits (including allocation of water) that reflect the aspirations of the communities they represent. To assist the committee in taking a holistic view it is intended that the existing numerical groundwater flow models will be coupled with with surface flow, contaminant transport, biological and economic models. This will provide the basis for assessing the likely outcomes of a range of future land use and resource limit scenarios.

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국가 물환경관리정책 지원을 위한 수질모델링 기술의 발전방향 (Future Development Direction of Water Quality Modeling Technology to Support National Water Environment Management Policy)

  • 정세웅;김성진;박형석;서동일
    • 한국물환경학회지
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    • 제36권6호
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    • pp.621-635
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    • 2020
  • Water quality models are scientific tools that simulate and interpret the relationship between physical, chemical and biological reactions to external pollutant loads in water systems. They are actively used as a key technology in environmental water management. With recent advances in computational power, water quality modeling technology has evolved into a coupled three-dimensional modeling of hydrodynamics, water quality, and ecological inputs. However, there is uncertainty in the simulated results due to the increasing model complexity, knowledge gaps in simulating complex aquatic ecosystem, and the distrust of stakeholders due to nontransparent modeling processes. These issues have become difficult obstacles for the practical use of water quality models in the water management decision process. The objectives of this paper were to review the theoretical background, needs, and development status of water quality modeling technology. Additionally, we present the potential future directions of water quality modeling technology as a scientific tool for national environmental water management. The main development directions can be summarized as follows: quantification of parameter sensitivities and model uncertainty, acquisition and use of high frequency and high resolution data based on IoT sensor technology, conjunctive use of mechanistic models and data-driven models, and securing transparency in the water quality modeling process. These advances in the field of water quality modeling warrant joint research with modeling experts, statisticians, and ecologists, combined with active communication between policy makers and stakeholders.