Maintenance strategies and energy efficiency: a review

被引:7
|
作者
Firdaus, Nofirman [1 ]
Ab-Samat, Hasnida [2 ]
Prasetyo, Bambang Teguh [3 ]
机构
[1] Inst Teknol PLN, Dept Mech Engn, Jakarta, Indonesia
[2] Univ Sains Malaysia, Kampus Kejuruteraan Seri Ampangan, Nibong Tebal, Malaysia
[3] Natl Res & Innovat Agcy, Jakarta, Indonesia
关键词
Maintenance strategies; Condition-based maintenance; Maintenance policy; Energy efficiency; Prognostics; Energy-based maintenance; DECISION-MAKING APPLICATION; MACHINE-TOOLS; NONENERGY BENEFITS; CONSUMPTION MODEL; HEAT-EXCHANGERS; MANAGEMENT; PERFORMANCE; PROGNOSTICS; DIAGNOSTICS; SIMULATION;
D O I
10.1108/JQME-06-2021-0046
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Purpose - This paper reviews the literature on maintenance strategies for energy efficiency as a potential maintenance approach. The purpose of this paper is to identify the main concept and common principle for each maintenance strategy for energy efficiency.Design/methodology/approach - A literature review has been carried out on maintenance and energy efficiency. The paper systematically classified the literature into three maintenance strategies (e.g. inspection-based maintenance [IBM], time-based maintenance [TBM] and condition-based maintenance [CBM]). The concept and principle of each maintenance strategy are identified, compared and discussed.Findings - Each maintenance strategy's main concept and principle are identified based on the following criteria: data required and collection, data analysis/modeling and decision-making. IBM relies on human senses and common senses to detect energy faults. Any detected energy losses are quantified to energy cost. A payback period analysis is commonly used to justify corrective actions. On the other hand, CBM monitors relevant parameters that indicate energy performance indicators (EnPIs). Data analysis or deterioration modeling is needed to identify energy degradation. For the diagnostics approach, the energy degradation is compared with the threshold to justify corrective maintenance. The prognostics approach estimates when energy degradation reaches its threshold; therefore, proper maintenance tasks can be planned. On the other hand, TBM uses historical data from energy monitoring. Data analysis or deterioration modeling is required to identify degradation. Further analysis is performed to find the optimal time to perform a maintenance task. The comparison between housekeeping, IBM and CBM is also discussed and presented.Practical implications - The literature on the classification of maintenance strategies for energy efficiency has been limited. On the other hand, the ISO 50001 energy management systems standard shows the importance of maintenance for energy efficiency (MFEE). Therefore, to bridge the gap between research and industry, the proposed concept and principle of maintenance strategies will be helpful for practitioners to apply maintenance strategies as energy conservation measures in implementing ISO 50001 standard.Originality/value - The novelty of this paper is in-depth discussion on the concept and principle of each maintenance strategy (e.g. housekeeping or IBM, TBM and CBM) for energy efficiency. The relevant literature for each maintenance strategy was also summarized. In addition, basic rules for maintenance strategy selection are also proposed.
引用
收藏
页码:640 / 665
页数:26
相关论文
共 50 条
  • [31] INVESTIGATIONS INTO THE EFFICIENCY OF VARIOUS STRATEGIES OF PREVENTIVE MAINTENANCE FOR MACHINES AND PLANTS
    LAUENSTEIN, G
    CHEMISCHE TECHNIK, 1986, 38 (07): : 283 - 286
  • [33] Energy requirements for maintenance and net efficiency of metabolizable energy utilization for maintenance and weight gain of Moxoto kids
    Alves, Kaliandra Souza
    Ramos de Carvalho, Francisco Fernando
    Chaves Veras, Antonia Sherlanea
    Vieira Batista, Angela Maria
    de Medeiros, Geovergue Rodrigues
    Ribeiro, Valeria Louro
    de Araujo, Alessandra Oliveira
    REVISTA BRASILEIRA DE ZOOTECNIA-BRAZILIAN JOURNAL OF ANIMAL SCIENCE, 2008, 37 (08): : 1475 - 1482
  • [34] Review of ship energy efficiency
    Barreiro, Julio
    Zaragoza, Sonia
    Diaz-Casas, Vicente
    OCEAN ENGINEERING, 2022, 257
  • [35] Energy efficiency analysis of machine tools with periodic maintenance
    Xu, Weigang
    Cao, Le
    INTERNATIONAL JOURNAL OF PRODUCTION RESEARCH, 2014, 52 (18) : 5273 - 5285
  • [36] A Microeconomic Methodology to Evaluate Energy Efficiency by Consumption Behaviors and Strategies to Improve Energy Efficiency
    Xiang, Zixia
    Yin, Yanhong
    He, Yuanwen
    SUSTAINABILITY, 2018, 10 (11):
  • [37] A Condition Base Maintenance System for Energy Efficiency in Manufacturing
    Agrawal, Deepak
    Hengstler, Christian
    PROCEEDINGS OF INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING AND SYSTEMS MANAGEMENT (IESM'2011): INNOVATIVE APPROACHES AND TECHNOLOGIES FOR NETWORKED MANUFACTURING ENTERPRISES MANAGEMENT, 2011, : 946 - 955
  • [38] THE RELATIONSHIP OF THE MAINTENANCE ENERGY REQUIREMENT TO HEIFER PRODUCTION EFFICIENCY
    SHUEY, SA
    BIRKELO, CP
    MARSHALL, DM
    JOURNAL OF ANIMAL SCIENCE, 1993, 71 (08) : 2253 - 2259
  • [39] Synergies between Energy Efficiency and Energy Access Policies and Strategies
    Pachauri, Shonali
    Uerge-Vorsatz, Diana
    LaBelle, Michael
    GLOBAL POLICY, 2012, 3 (02) : 187 - 197
  • [40] Strategies influencing energy efficiency of lighting solutions
    Pracki, P.
    Wisniewski, A.
    Czyzewski, D.
    Krupinski, R.
    Skarzntski, K.
    Wesolowski, M.
    Czaplicki, A.
    BULLETIN OF THE POLISH ACADEMY OF SCIENCES-TECHNICAL SCIENCES, 2020, 68 (04) : 711 - 719