• Title/Summary/Keyword: LCC기법

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Life Cycle Cost Analysis for Design of Buildings based on the Lifetime Risk (생애 위험도기반 건축물의 설계단계 생애주기비용 분석 방법)

  • Baek, Byung-Hoon;Cho, Choong-Yeon
    • Korean Journal of Construction Engineering and Management
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    • v.15 no.3
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    • pp.113-119
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    • 2014
  • Recently, the demand on the practical application of life-cycle cost effectiveness for design and rehabilitation of structure is rapidly growing unprecedently in engineering practice. Accordingly, in the 21st century, it is almost obvious that life-cycle cost together with value engineering will become a new paradigm for all engineering decision problems in practice. However, in spite of impressive progress in the researches on the LCC, the most researches have only focused on the Deterministic or Probabilistic LCC analysis approach (Level-1 LCC Model) at design stage. Thus, the goal of this study is to develop a practical and realistic methodology for the Lifetime risk based Life-Cycle Cost (LCC)-effective optimum decision-making at design stage.

A Study on the Necessity of Maintenance of Railway Structures based on the Integration of LCC and LCA (LCC 및 LCA 통합에 근거한 철도시설물 유지관리 필요성 고찰)

  • Jin, Nam-Hee;Park, Joon-Oh;Park, Mi-Yun
    • Proceedings of the KSR Conference
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    • 2008.11b
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    • pp.37-44
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    • 2008
  • 철도시설물의 유지관리를 위한 전통적인 의사결정 방법은 구조물의 기술적인 측면 즉, 시설물의 안전성과 사용성 등을 만족시키는 조건하에 경제적인 측면 즉, 시설물의 생애주기 비용을 최소화하고자 하는 것이며, 생애주기 비용을 정량화하기 위한 도구로서 LCC 기법이 사용되었다. 그러나, 1990년대 후반 이후로 지구온난화 등의 피해가 부각됨에 따라 선진국들을 중심으로 시설물의 유지관리를 위한 의사결정에 환경적 측면과 사회적 측면을 추가적으로 고려하는 지속가능한 발전 개념을 도입하고 있으며, 환경 부하를 정량화하기 위한 도구로서 LCA를 적용하고 있다. 본 연구에서는 시설물의 유지관리 행위와 관련된 경제적 측면과 환경적 측면을 정량화하는 방법으로서 LCC 및 LCA의 적용 방안을 고찰하고, LCC 및 LCA 결과로부터 시설물 유지관리 최적 방안을 결정하기 위한 의사결정 기법을 제안한다. 국내의 철도시설물에 대한 유지관리 필요성이 증대되고 있으며, 철도시설물의 규모가 커서 유지관리 행위에 따른 경제적 및 환경적 파급효과가 큼을 감안할 때, 본 연구에서 제안된 내용은 경제적이고 환경 친화적인 철도시설물 유지관리 방안을 선정하는데 유용한 방법론으로 활용될 것으로 사료된다.

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A Case Study on the Reduction Costs Prediction of a Reinforced Concrete Bridge using LCC method (Life Cycle Cost 기법에 의한 RC Slab 교량의 절감비용 예측에 관한 연구)

  • Kwon, Suk-Hyun;Kim, Sang-Beom;Park, Yong-Jin
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.11 no.5
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    • pp.160-170
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    • 2007
  • This study predicts Life Cycle Cost of RC Slab bridge case in maintenance and operation level and calculated economic efficiency by the avoidable costs of a bridge. This result of the study can be summarized as follow: (1) LCC analysis model on the bridge case is suggested. (2) Maintenance and operation level of a bridge have been divided, and LCC of the bridge case has been predicted at current maintenance and operation level and required maintenance and operation level. (3) Reduction costs is predicted by LCC of the bridge case, and its economic efficiency is calculated.

A Study on the LCC Analysis of an Office Building HVAC System (오피스빌딩 냉난방시스템의 수명주기비용 분석에 관한 연구 : 흡수식 냉온수 유닛의 설치 유형을 중심으로 한 사례연구)

  • Park, Moon-Sun;Shin, Hyeong-Sik;Kim, Yong-Su
    • Korean Journal of Construction Engineering and Management
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    • v.7 no.3 s.31
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    • pp.112-121
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    • 2006
  • The purpose of this study is to execute economical analysis for two types of office building HVAC system using LCC technique : single vs, separated HVAC(equal partition installation, unequal partition installation) system. The research method of this study includes the case analysis and questionnaire surveys. The results of this study are as follows: (1) LCCs of 3 types of HVAC system are estimated and the most economical one is investigated as single HVAC system, (2) In this case study, the single HVAC system was investigated as 34% lower in LCC during 15 years per $100m^2$ compared to equal partition installation, as 41% compared to unequal partition installation.

A Study on the Design Value Analysis Methodology for Bridge Structure Using Reliability Analysis (신뢰성 해석을 이용한 교량구조물의 설계VA기법 연구)

  • Kim, Seong-Il;Lee, Kwang-Mo;Choi, Suk-Won;Jung, Jun-Hwa;Kim, Seong-Il
    • Korean Journal of Construction Engineering and Management
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    • v.10 no.1
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    • pp.114-125
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    • 2009
  • In this study, a design value analysis technique that considered stochastic LCC and stochastic performance evaluation was proposed, and by introducing the concept of reliability analysis, a decision making that secured reliability was supported. The results of this study, which was carried out according to the above objectives and methods, are summarized as follows: 1) The design value analysis procedures and value state function, improved in order to carry out a reliable analysis when evaluating alternate proposals that were extracted after the function definition was complete, were formalized, and in order to secure consistency and efficiency for value evaluation procedures, an evaluation index scheme was proposed; 2) Database collection and analysis were done for a bridge's LCC analysis. As for the collection scope of data, literature of previous research done on a bridge's LCC analysis was used as the basis for analysis, and for securing reliability regarding analysis results and dealing with uncertainty of collected data, the MCS technique was applied; 3) Weights and evaluation ranks for performance evaluation of each of the alternate proposals, as well as LCC analysis model, analysis period, discount rate, user expense, safety inspection and safety diagnosis expense conditions for LCC analysis were proposed. Lastly, a feasibility study was done and conclusion was made about "OO grand bridge and connecting road construction work execution design" project centered on value analysis execution case.

A Study on the Design Value Analysis Model Using Probabilistic LCC Analysis of Water Supply System Project (확률적 LCC분석기법을 활용한 수도시설물의 설계VA모델에 관한 연구)

  • Jung Pyung-Ki;Seo Jong-Won;Lim Jong-Kwon
    • Korean Journal of Construction Engineering and Management
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    • v.5 no.2 s.18
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    • pp.181-193
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    • 2004
  • A life cycle cost analysis model for public water supply systems should be different from the ones for other civil and architectural facilities as the operation and the maintenance cost of the water supply systems mainly come from the various mechanical systems and the pipeline systems of the collecting/treating/distributing facilities. This paper presents a cost classification scheme and a probabilistic life cycle cost analysis (PLCCA) model for public water supply systems. A value analysis (VA) procedure that is well suited for practical purposes is also presented. The presented probabilistic life cycle model and the value analysis procedure were applied to a real world project, and this case study is discussed in the paper. The model and the procedure presented in this study can greatly contribute to the value-oriented design alternative selection, the estimation of the maintenance cost, and the allocation of budget for water supply system construction projects.

Status of Economics Analysis Using LCC in Turn-Key Project : Focus on Landscape Architecture (설계시공일괄발주(턴키) 설계에서 LCC를 활용한 경제성 분석 실태: 조경분야를 중심으로)

  • Yoon, Yong-Han;Kim, Jeong-Ho
    • Journal of Environmental Policy
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    • v.10 no.4
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    • pp.39-59
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    • 2011
  • In this article, I would like to analyze the conditions in applying the LCC method for each construction type by selecting 10 apartment complexes among the Turn-key projects which have been ongoing for the last 5 years. In addition, this article will identify the problems to the application of double landscape architecture and suggest improvement measures. Among the 10 case targets, a total of 151 LCC analyses were conducted, and the average application ratio placing for each construction type was shown in the following order: architecture (34.4%)> electricity (21.2%)>machine (18.5%)>civil engineering (13.2%)>landscape architecture (12.6%). As numbers show, landscape architecture was the lowest. The ratio of LCC reduction amount was shown in the following order: machine (32.1%)> architecture (23.9%)>electricity (23.4%)>civil engineering (17.5%)>landscape architecture (3.1%). The field of landscape architecture had a reduction amount that was about 5 to 6 times lower than civil engineering which had a similar number of LCC analysis cases. The total LCC analysis items of landscape architecture was 19, including 15 double packing material, 1 building covering, 1 grass planting, 1 planting infrastructure, and 1 facility. The following measures were suggested to promote LCC analysis in landscape architecture: first, set an analysis item that considers the construction expense ratio of landscape architecture; second, legal regulation of landscape architecture and expansion of its application; third, prepare VE/LCC standards which are suitable for landscape architecture.

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A Model of Time Dependent Design Value Engineering and Life Cycle Cost Analysis for Apartment Buildings (공동주택의 시간의존적 설계VE 및 LCC분석 모델)

  • Seo, Kwang-Jun;Choi, Mi-Ra;Shin, Nam-Soo
    • Korean Journal of Construction Engineering and Management
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    • v.6 no.6 s.28
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    • pp.133-141
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    • 2005
  • In the resent years, the importance of VE (value engineering) and LCC (life cycle cost) analysis for apartment building construction projects has been fully recognized. Accordingly theoretical models, guidelines, and supporting software systems were developed for the value engineering and life cycle cost analysis for construction management including large building systems. However, the level of consensus on VE and LCC analysis results is still low due to the lack of reliable data on maintenance. This paper presents time dependent LCC model based value analysis method for rational investment decision making and design alternative selection for construction of apartment building. The proposed method incorporates a time dependent LCC model and a performance evaluation technique by fuzzy logic theory to properly handle the uncertainties associated with statistics data and to analyze the value of alternatives more rationally. The presented time dependent VE and LCC analysis procedure were applied to a real world project, and this case study is discussed in the paper. The model and the procedure presented in this study can greatly contribute to design value engineering alternative selection, the estimation of the life cycle cost, and the allocation of budget for apartment building construction projects.