Page 67 - DP-2-1
P. 67
Design+ Importance of material selection
doi: 10.1016/j.proeng.2013.04.051 of speed: The impact of material choice in post-disaster
reconstruction. Int J Disaster Risk Reduct. 2019;34:34-44.
27. Alawag AM, Alaloul WS, Liew MS, et al. Critical
success factors influencing total quality management doi: 10.1016/j.ijdrr.2018.10.026
in industrialised building system: A case of Malaysian 38. Dinh TH, Dinh TH, Götze U. Roadworks design: Study on
construction industry. Ain Shams Eng J. 2023;14(2):101877. selection of construction materials in the preliminary design
doi: 10.1016/j.asej.2022.101877 phase based on economic performance. Int J Construc
Manage. 2024;24(5):503-511.
28. Akomah BB, Ahinaquah LK, Mustapha Z. Skilled labour
shortage in the building construction industry within the doi: 10.1080/15623599.2023.2179603
central region. Balt J Real Estate Econ Construct Manage. 39. Yıldız S, Güneş GS, Alim B. Criteria in building material
2020;8(1):83-92. selection and the role of sustainability. Kent Akademisi.
doi: 10.2478/bjreecm-2020-0006 2024;17:334-354.
29. Mathiyazhagan K, Gnanavelbabu A, Lokesh Prabhuraj B. doi: 10.35674/kent.1448627
A sustainable assessment model for material selection in 40. Jaffar H, Javed N, Riaz A, et al. Critical analysis of smart
construction industries perspective using hybrid MCDM materials in adaptive transparent systems for building
approaches. J Adv Manage Res. 2019;16(2):234-259. façade. Energy Environ. 2024 ;1-31.
doi: 10.1108/JAMR-09-2018-0085 doi: 10.1177/0958305X241300428
30. Chen ZS, Yang LL, Chin KS, et al. Sustainable building 41. Carp B. Is durability sustainable? AATCC Rev. 2020;20(1):36-43.
material selection: An integrated multi-criteria large
group decision making framework. Appl Soft Comput. doi: 10.14504/ar.20.1.1
2021;113:107903. 42. Yang J. Study on the Durability of Construction Materials and
Structures; 2023. Available from: from https://www.mdpi.
doi: 10.1016/j.asoc.2021.107903
com/journal/buildings/special_issues
31. Aydin YC, Mirzaei PA, Akhavannasab S. On the relationship
between building energy efficiency, aesthetic features and 43. Takano M, Hughes M, Winter SA. Multidisciplinary
marketability: Toward a novel policy for energy demand approach to sustainable building material selection: A case
study in a finnish context. Build Environ. 2014;82:526-535.
reduction. Energy Policy. 2019;128:593-606.
doi: 10.1016/j.buildenv.2014.09.026
doi: 10.1016/j.enpol.2018.12.036
44. Hong T, Koo C, Kim J, Lee M, Jeong K. A review on
32. Rockfon. Moving Buildings; 2022. Available from: https:// sustainable construction management strategies for
www.rockfon.co.uk/about-us/our-thinking/urbanization/ monitoring, diagnosing, and retrofitting the building’s
aesthetics
dynamic energy performance: Focused on the operation
33. Besten. Role of Aesthetics in Architecture-Best Architects and maintenance phase. Appl Energy. 2015;155:671-707.
Share their Thoughts!; 2020. Available from: https:// doi: 10.1016/j.apenergy.2015.06.043
besten.in(2020/01)role-of-aesthetics-in-architecture-best-
architects [Last accessed on 2024 May 10]. 45. Arch20. 25 Cost-Effective Materials Wonders; 2024. Available
from: https://www.arch2o.com/25-cost-effective-materials-
34. Mohanta A, Das S. Decision support system for the early wonders-pioneering-the-construction
stage of green building envelope design considering
energy and maintainability. Archit Eng Design Manage. 46. Abera YA. Sustainable building materials: A comprehensive
2023;19(2):163-182. study on eco-friendly alternatives for construction. Compos
Adv Mater. 2024;33:26349833241255957.
doi: 10.1080/17452007.2022.2094869
doi: 10.1177/26349833241255957
35. Zhu L, Shan M, Hwang BG. Overview of design for
maintainability in building and construction research. 47. Lin C. The role of sustainable building materials in
J Perform Constructed Facil. 2018;32(1):04017116. advancing ecological construction. J Energy Environ Policy
Options. 2021;4(1):15-21.
doi: 10.1061/(ASCE)CF.1943-5509.00011
48. Cudjoe D, Zhu B, Nketiah E, Wang H, Chen W, Qianqian Y.
36. Haq RSU, Saeed M, Mateen N, et al. Sustainable material The potential energy and environmental benefits of global
selection with crisp and ambiguous data using single-valued recyclable resources. Sci Total Environ. 2021;798:149258.
neutrosophic-MEREC-MARCOS framework. Appl Soft
Comput. 2022;128:109546. doi: 10.1016/j.scitotenv.2021.149258
49. Champ H. The Power of Using Locally Sourced Sustainable
doi: 10.1016/j.asoc.2022.109546
Building Materials. Bluebeam Blog; 2024. Available from:
37. Celentano G, Escamilla EZ, Göswein V, Habert G. A matter https://blog.bluebeam.com/uk/the-power-of-using-locally-
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