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Strategy and Models of Buildings Maintenance – a literature survey

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the article comprehensive insights into the field of building maintenance, emphasizing the importance of keywords, collaborative efforts among authors, and the evolving research landscape are provided. The study conducts a thorough literature review using Scopus as a search engine, employing the full-counting method for authorship, and VOSviewer software for bibliometric analysis. The results reveal distinct data sets focusing on building maintenance from general to specific, with each set reflecting unique aspects and considerations. Bibliometric maps illustrate author collaboration and keyword connections within each set, highlighting evolving research trends and areas of focus. The study concludes with recommendations for future research, emphasizing the ongoing need for exploration and development in building maintenance.
Rocznik
Strony
20--36
Opis fizyczny
Bibliogr. 58 poz., rys., wykr.
Twórcy
  • Cracow University of Technology, Faculty of Civil Engineering
  • Cracow University of Technology, Faculty of Civil Engineering
Bibliografia
  • 1. Ibn-Mohammeda, T, Greenougha, R, Taylorb, S, Ozawa-Meidaa, L, Acquaye, A 2013. Operational vs. embodied emissions in buildings - A review of current trends. Energy and Buildings 66, 232-245.
  • 2. EN 15978:2011 Sustainability of construction works. Assessment of environmental performance of buildings.
  • 3. Oregi, X, Hernandez, P, Gazulla, C, Isasa, M 2015. Integrating simplified and full life cycle approaches in decision making for building energy refurbishment: benefits and barriers. Buildings, 5, 354-380.
  • 4. Cardinal, SM, Tosin, CE., Pilz, SE, Costella, MF 2020. Inspection method for building maintenance management in higher education institutions. Journal of Performance of Constructed Facilities 34, 61.
  • 5. Le, ATH, Domingo, N, Rasheed, E, Parkl, K 2021. Maturity model of building maintenance management for New Zealand’s state schools. Building Research and Information 50, 4.
  • 6. Chang, C, Huang, S, Guo, S 2008. Setting a priority benchmark for building maintenance in Taiwan's national universities. Journal of Architectural and Planning Research 25, 2, 162-175.
  • 7. Hauashdh, A, Jailani, J, Rahman, IA, AL-Fadhali N 2021. Structural equation model for assessing factors affecting building maintenance success. Journal of Building Engineering 44.
  • 8. Besiktepe, D, Ozbek, ME, Atadero, RA 2020. Identification of the criteria for building maintenance decisions in facility management: First step to developing a multi-criteria decision-making approach. Buildings, 10(9).
  • 9. Plebankiewicz, E, Leśniak, A, Vikova, E, Hromadka, V. 2022. Models for estimating costs of public buildings maintaining – review and assessment. Archives of Civil Engineering 68, 1, 335-351.
  • 10. Moatassem, A, El-Rayes, K, Liang, L Optimal selection of sustainability measures to minimize building operational costs. Construction Research Congress: Construction in a Global Network, 2014, 2205-2213.
  • 11. Salvado, F, De Almeida, NM, Azevedo, AV 2019. Historical analysis of the economic life-cycle performance of public school buildings. Building Research and Information 47, 7, 813-832.
  • 12. Galimshina, A, Moustapha, M, Hollberg, A, Padey, P, Lasvaux, S, Sudre, B, Habert, G 2020. Statistical method to identify robust building renovation choices for environmental and economic performance. Building and Environment 183.
  • 13. Alashari, M, El-Rayes, K, Attalla, M, Al-Ghzawi, M 2022. Multivariate time series and regression models for forecasting annual maintenance costs of EPDM roofing systems. Journal of Building Engineering 54.
  • 14. Kwon, N, Song, K, Ahn, Y, Park, M,Jang, Y 2020. Maintenance cost prediction for aging residential buildings based on case-based reasoning and genetic algorithm. Journal of Building Engineering 28.
  • 15. Eka Sari, W, Sudikno, A, Santosa, H 2021. Building maintenance assessment on official houses in Stilt Type at Jatiroto Sugar Factory Lumajang district, East Java, Indonesia., Local Wisdom, 13 (1), 84-99.
  • 16. Hashempour, N, Taherkhani, R, Mahdikhani, M. 2020. Energy performance optimization of existing buildings: A literature review. Sustainable Cities and Society, 54.
  • 17. Ghafoori, M, Abdallah, M 2022. Simulation-based optimization model to minimize equivalent annual cost of existing buildings. Journal of Construction Engineering Management 48, 21.
  • 18. Burt, N. Facilities Management-Good Practice Guide; Facility Management Association of Australia Ltd.: Docklands, VIC, Australia, 2012.
  • 19. Kampamba, J, Majingo, M, Kachepa, S 2020. An assessment of property maintenance in high rise buildings in Gabrone (CBD). Am. Res. J. Civ. Struct. Eng. 4, 1, 1-11.
  • 20. Flores-Colen, I, De Britol, J 2010. A systematic approach for maintenance budgeting of buildings faades based on predictive and preventive strategies. Construction Buildings Materials, 24, 9, 1718-1729.
  • 21. Przesmycka, A, Wieczorek, D 2021. Maintenance strategies, periodic renovations and building modernisation in the aspect of the criterion of the whole life costs. Civil and Environmental Engineering Reports, 31, 2, 15-29.
  • 22. Abreu, A, Calado, J, Requeijo, J 2016. Buildings lean maintenance implementation model. Open Engineering, 6, 397-406.
  • 23. Mostafa, S, Lee, S, Dumrak, J, Chileshea, N, Soltan, H 2015. Lean thinking for a maintenance process. Prod. Manuf. Res.
  • 24. Pereira, C, Silva, A, Ferreira, C, de Brito, J, Flores-Colen, I, Silvestre, JD Information Systematisation Towards Rational Building Maintenance Decisions. In: Bienvenido-Huertas, D., Moyano-Campos, J. (eds) New Technologies in Building and Construction. Lecture Notes in Civil Engineering, vol 258. Springer, Singapore. 2022.
  • 25. Plebankiewicz, E, Grącki, J 2023. Analysis and prediction of universities’ buildings’ renovation costs using a regression model. Applied Science 13(1), 401.
  • 26. Wang, B, Xia, X, Zhang, J 2014. A multi-objective optimization model for the life-cycle cost analysis and retrofitting planning of buildings. Energy and Buildings 77, 227-235.
  • 27. Ighravwe, DE, Oke, SA 2019. A multi-criteria decision-making framework for selecting a suitable maintenance strategy for public buildings using sustainability criteria. Journal of Building Engineering 24, 100753.
  • 28. Ighravwe, DE, Oke, SA 2019. An integrated approach of SWARA and fuzzy COPRAS for maintenance technicians’ selection factors ranking. Int J Syst Assur Eng Manag 10, 1615-1626.
  • 29. Nowogońska, B, Korentz, J 2020. Value of technical wear and costs of restoring performance characteristics to residential buildings, Buildings.
  • 30. Liu, S, Chang, R, Zuo, J, Webber, RJ, Xiong, F, Dong, N 2021. Application of artificial neural networks in construction management: Current status and future directions Applied Science 11(20), 9616.
  • 31. Gauffriau, M 2021. Counting methods introduced into the bibliometric research literature 1970-2018: A review. Quantitative Science Studies 2 (3), 932-975.
  • 32. Perianes-Rodrigueza, A, Waltmanb, L, Van Eck NJ 2016. Constructing bibliometric networks: A comparison between full and fractional counting. Journal of Informetric 10, 4, 1178-1195.
  • 33. Zhao, D, Strotmann, A Analysis and visualization of citation networks. 2015. Morgan & Claypool Publishers.
  • 34. Van Eck, NJ, Waltman, L Visualizing bibliometric networks. In Y. Ding, R. Rousseau, & D. Wolfram (Eds.), Measuring scholarly impact: Methods and practice (285-320). Springer. (2014).
  • 35. Van Eck, NJ, Waltman, L Manual for VOSviewer version 1.6.16, 25.11.2020, Universiteit Leiden.
  • 36. Fairbanks, DR Computer program to determine the optimum configuration of solar assist build heating and cooling systems based upon life-cycle cost In: Energy 10; Annual Intersociety Energy Conversion and Engineering Conference, 10th, Newark, Del., August 18-22, 1975, Record. (A75- 45920 23-44) New York, Institute of Electrical and Electronics Engineers, Inc., 1975, p. 202-209.
  • 37. Au-Yong, CP, Ali, AS, Ahmad, F 2013. Office building maintenance: Cost prediction model. Gradevinar, 65(9), 803-809.
  • 38. Au-Yong, CP, Ali, AS, Ahmad, F 2017. Competency and commitment of facilities managers: Keys to safe guard maintenance performance. Malaysian Construction Research Journal 22, 2.
  • 39. Chua, SJL, Zubbir, NB, Ali, AS, Au-Yong, CP 2018. Maintenance of high-rise residential buildings. International journal of building pathology and adaptation 36 (2), 137-151.
  • 40. Amos, D, Au-Yong, CP, Musa, ZN 2021. The mediating effects of finance on the performance of hospital facilities management services. Journal of Building Engineering 34, 101899.
  • 41. Au-Yong, CP, Azmi, NF, Myeda, NE 2022. Promoting employee participation in operation and maintenance of green office building by adopting the total productive maintenance (TPM) concept. Journal of Cleaner Production 352, 131608.
  • 42. Bortolini, R, Forcada, N 2018. Building inspection system for evaluating the technical performance of existing buildings. Journal of Performance of Constructed Facilities 32, 5.
  • 43. Bortolini, R, Forcada, N 2020. Analysis of building maintenance requests using a text mining approach: building services evaluation. Building Research & Information 48, 2.
  • 44. Chen, HP, Nepal, J 2015. Stochastic modelling and lifecycle performance assessment of bond strength of corroded reinforcement in concrete. Structural Engineering and Mechanics 54 (2), 319-336.
  • 45. Nepal, J, Chen, HP 2015. Assessment of concrete damage and strength degradation caused by reinforcement corrosion J. Phys.: Conf. Ser. 628 012050.
  • 46. Petcherdchoo, A 2018. Probability-based sensitivity of service life of chloride-attacked concrete structures with multiple cover concrete repairs Advances in Civil Engineering.
  • 47. Fan, Y, Xia, X An optimal maintenance plan for building envelope insulation materials after retrofitting, Chinese Automation Congress (CAC), Wuhan, China, 2015, 2068-2073.
  • 48. Fan, Y, Xia, X 2017. A multi-objective optimization model for energy-efficiency building envelope retrofitting plan with rooftop PV system installation and maintenance. Applied Energy 189, 327-335
  • 49. El-Hassani, S, Charai, M, Moussaoui, MA, Mezrhab, 2023. A Towards rural net-zero energy buildings through integration of photovoltaic systems within bio-based earth houses: Case study in Eastern Morocco. Solar Energy 259, 15-29.
  • 50. Bortolini, R, Rodrigues, R, Alavi, H, Vecchia, LFD, Forcada N 2022. Digital twins’ applications for building energy efficiency: A review. Energies, 15(19), 7002.
  • 51. Yang, Y, Xie, H 2021. Determination of optimal MR&R strategy and inspection intervals to support infrastructure maintenance decision making. Sustainability, 13(5), 2664.
  • 52. Xie, M, Zhao, J, Zuo, M, Tian, Z, Liu, L, Wu, J 2023. Multi-objective maintenance decision-making of corroded parallel pipeline systems. Applied Energy 351, 1, 121822.
  • 53. Adeyemi, IA, Rahman, MSN, Adeyemi, A 2022. Maintenance analytics for building decision making: A literature review. Journal of Information System and Technology Management 7 (25), 127-138.
  • 54. de Brito, J, Silva, Ana 2020. Life cycle prediction and maintenance of buildings. Buildings 10(6), 112.
  • 55. Zima, K, Wieczorek, D, Przesmycka, A 2020. Impact of the selected building maintenance strategy on costs and service life. World of Real Estate Journal 112, 40.
  • 56. Farahani, A, Wallbaum, H, Dalenbäck, JO 2019. The importance of life-cycle based planning in maintenance and energy renovation of multifamily buildings, Sustainable Cities and Society 44, 715-725.
  • 57. Hauashdh, A, Jailani, J, Rahman, IA, Al-Fadhali, N 2022.Strategic approaches towards achieving sustainable and effective building maintenance practices in maintenance-managed buildings: A combination of expert interviews and a literature review. Journal of Building Engineering, 45, 103490.
  • 58. Sholanke, AB, Basorun, U, Babalola D, Edia, J 2023. Review of maintenance strategies for achieving sustainable developments in tropical climates. Covenant Journal of Research in the Built Environment 11,1.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d5947a89-6086-46a8-a258-1bd943267649
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