• Title/Summary/Keyword: period of maintenance

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마모 수준에 의거한 예방 정비 모형 (A Preventive Maintenance Model Based on the level of item degradation)

  • 구자항;김원중
    • 산업경영시스템학회지
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    • 제15권26호
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    • pp.173-179
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    • 1992
  • This paper is concerned with preventive maintenance model for the items whose failures are dependent on their wear level. The previous maintenance models have used time as their decision variable, but it is not appropriate for the case which have wear dependent processes for their failures. In this paper, we consider an operating item which is under periodic review and which is subject to degradation. The scheduled maintenance (overhaul ) is based on the level of item degradation rather time. A functional equation for the total expected cost over an infinite horizon period is formulated and solved.

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CMMS(Computerized Maintenance Management System)의 실 시간적인 CBMS(Condition Based Maintenance System) 연구 (Development of CMMS for the real-time CBMS)

  • 박주식;박재현;강경식;이광배
    • 대한안전경영과학회지
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    • 제2권4호
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    • pp.1-8
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    • 2000
  • Equipment and machine of industrial plant are give effect to mechanical-stress of many working-stop or long time operating. Therefore, to be old and decrepit of every king of equipment. As long time operating equipment period into increase conservation and of repair equipment time is efficacious necessity of utility factor gradually that of productivity of diminution and complete equipment expense of increase. Conservation at special skill working and necessity is that will effectually and complete a period prevention management diagnosis can conservation point at issues at in advance.

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Optimization of Cost and Downtime for Periodic PM Model Following the Expiration of Warranty

  • Jung, Ki-Mun
    • Journal of the Korean Data and Information Science Society
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    • 제19권2호
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    • pp.587-596
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    • 2008
  • This paper develops the optimal periodic preventive maintenance policies following the expiration of warranty: renewing warranty and non-renewing warranty. After the warranty period is expired, the system undergoes the PM periodically and is minimally repaired at each failure between two successive PMs. Firstly, we determine the expected cost rate per unit time and the expected downtime per unit time for the periodic PM model. Then the overall value function suggested by Jiang and Ji(2002) is applied to obtain the optimal PM period and the optimal PM number. Finally, the numerical examples are presented for illustrative purpose.

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학교시설 유지관리 법제화 방안 연구 (A Study Regarding the Legislation of Maintenance for School Facilities)

  • 맹준호;김성중
    • 교육녹색환경연구
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    • 제13권2호
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    • pp.13-25
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    • 2014
  • The recent trend has been consistently raised by the media of educational environment issues such as deteriorated existing school facilities, water-leaks due to the lack of proper maintenance and poor toilet facilities. For the efficient use of the budget to be used for maintenance of school facilities, an effort to extend the life of the facility to the max is needed. However, current maintenance system of school facilities is to deal with the defects after discovered, and consequently the durable period is shortened due to early deterioration of facilities and efficient budget execution cannot be realized. For this reason, the result emphasizes the need to improve maintenance management system of school facilities, and proposes a systematic bill of school facilities maintenance according to expert investigation and correlation analysis through school facilities maintenance-related information that is distributed to a number of laws.

Optimal Schedules of Periodic Preventive Maintenance Model with Different PM Effect

  • Lim, Jae-Hak
    • International Journal of Reliability and Applications
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    • 제9권1호
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    • pp.113-122
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    • 2008
  • In this paper, we consider a periodic preventive maintenance policy in which each preventive maintenance reduces the hazard rate of amount proportional to the failure intensity, which increases since the system started to operate. And the effect of preventive maintenance at each preventive maintenance epoch is different. The expected cost rate per unit time for the proposed model is obtained. We discuss the optimal number N of the periodic preventive maintenance and the optimal period x, which minimize the expected cost rate per unit time and obtain the optimal preventive maintenance schedule for given cost structures of the model. A numerical example is given for the purpose of illustrating our results when the failure time distribution is Weibull distribution.

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공동주택 수선실태분석을 통한 개선방안 (Suggestions of Improvements through Analysis of Repair Records on Multi-family Housings)

  • 남재우;윤창민;고동한;정재호;김창덕
    • 한국건설관리학회:학술대회논문집
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    • 한국건설관리학회 2004년도 제5회 정기학술발표대회 논문집
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    • pp.548-551
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    • 2004
  • 많은 공동주택의 공급에도 불구하고 정부의 정책은 주택의 건설, 공급위주로 주택정책을 시행함에 따라 주택의 유지관리 측면에서는 소홀히 하여왔다. 그 결과로써 주택자원의 이용과 주거생활에 불편을 초래하고 있다. 따라서 본 연구에서는 현행제도와 현 조사실태의 수선주기를 비교, 분석하여 개선방안을 제시하고 있다. 분석 결과 적정시기의 적합한 수선을 하는 것이 장기적으로 볼 때 건물 노후화를 늦출 수 있고 건물의 기능을 초기와 비슷하게 유지시킬 수 있음을 알 수 있었다. 따라서 효율적인 수선 유지 관리를 통하여 건물의 노후화와 기능을 지연시킬 수 있을 것이다.

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Indicator of Facility Performance Evaluation (FPE) for Educational Facilities of BTL Projects

  • Lee, Kwan-Jong;Lee, Chun-Kyong;Park, Tae-Keun
    • Architectural research
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    • 제14권1호
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    • pp.35-44
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    • 2012
  • Build-Transfer-Lease (BTL) was introduced to the domestic construction market in 2005. Now, seven years later, the BTL model is most active for educational facilities. In 2011, 93 educational facility projects entered the maintenance stage. Considering the characteristics of today's BTL projects for educational facilities, the main issues are the initial performance and maintenance of educational facilities and the service-providing status for the 20-year operational management period, in relation to providing safety and convenience to students, the facility users. Seeking a solution, local education offices and departments in charge of BTL under the Ministry of Education, Science, and Technology have been exploring various methods of evaluating operational maintenance performance from various perspectives. For educational facility BTL projects, however, the appropriateness of initial operation performance evaluation, rather than considering the 20-year operational management period, is controversial in regards to sustainability. On this account, performance evaluation items in four areas-operational maintenance evaluation, facility performance status evaluation, maintenance subject evaluation, and sustainable change response evaluation-should be extracted. An indicator of facility performance evaluation is presented in this study through an AHP survey targeting experts, as part of establishing an operation performance evaluation system for educational facility BTL projects.

원자력발전소에서 리스크를 고려한 작업관리 방법 (A Study on the Work Management Method Considering Risks in Nuclear Power Plants)

  • 송태영
    • 한국압력기기공학회 논문집
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    • 제10권1호
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    • pp.37-43
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    • 2014
  • Nuclear power plants(NPPs) are consisted of power production functions and safety functions preventing leakage of radiation. Operators working in NPPs shall maintain these functions during an operation period through various activities such as improvement & modification, corrective maintenance, preventive maintenance and surveillance test. According to the performance of these work activities, there are configuration changes in NPPs systems. Its changes cause the increase of safety risks(CDF) and plant trip risks. Recently, the importance of risk management is increasing gradually in the operation process of NPPs. Therefore, this paper presents the work management methods using the various risk monitoring systems during power operation and overhaul period. Also this paper suggests the optimum application ways of risk systems for work management.

응급수리를 고려한 정기보전정책의 비용분석 (Cost Analysis for Periodic Maintenance Policy with Minimal Repair)

  • 김재중;김원중
    • 산업경영시스템학회지
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    • 제18권34호
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    • pp.139-146
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    • 1995
  • This study is concerned with cost analysis in periodic maintenance policy. Generally periodic maintenance policy in which item is repaired periodic interval times. And in the article minimal repair is considered. Minimal repair means that if a unit fails, unit is instantaneously restored to same hazard rate curve as before failure. In the paper periodic maintenance policy with minimal repair is as follows; Operating unit is periodically replaced in periodic maintenance time, if a failure occurs between minimal repair and periodic maintenance time, unit is replaced by a spate until the periodic time comes. Also unit undergoes minimal repair at failures in minimal-repair-for-failure interval. Then total expected cost per unit time is calculated according to maintenance period and scale parameter of failure distribution. Total cost factors ate included operating, fixed, minimal repair, periodic maintenance and replacement cost Numerical example is shown in which failure time of system has erlang distribution.

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수치실험을 통한 스트레스 감소 예방보수모형의 고찰 (Numerical Experiments for the Stress-Reducing Preventive Maintenance Model)

  • 박종훈
    • 산업경영시스템학회지
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    • 제43권3호
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    • pp.41-52
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    • 2020
  • This paper investigates the stress-reducing preventive maintenance model through numerical experiments. The preventive maintenance model is used to analyze the relationship between related conditions and variables to gain insight into the efficient operation of the system when performing preventive maintenance in real-world situations. Various preventive maintenance models have been developed over the past decades and their complexity has increased in recent years. Increasing complexity is essential to reflect reality, but recent models can only be interpreted through numerical experiments. The stress-reducing preventive maintenance is a newly introduced preventive maintenance concept and can only be interpreted numerically due to its complexity, and has received little attention because the concept is unfamiliar. Therefore, for information purposes, this paper investigates the characteristics of the stress-reducing preventive maintenance and the relationship between parameters and variables through numerical experiments. In particular, this paper is focusing on the economic feasibility of stress-reducing preventive maintenance by observing changes in the optimal preventive maintenance period in response to changes in environmental stress and the improvement factor. As a result, when either the environmental stress or the improve effect of stress-reducing preventive maintenance is low, it is not necessary to carry out the stress-reducing preventive maintenance at excessive cost. In addition, it was found that the age reduction model is more economical than the failure rate reduction model.