Page 66 - DP-2-1
P. 66

Design+                                                                    Importance of material selection



            3.   Findik F. Materials selection and case studies.  Period Eng   2001;19(3/4):139-149.
               Natl Sci. 2021;9(2):375-388.
                                                                  doi: 10.1108/02632770110381694
               doi: 10.21533/pen.v9i2.1777
                                                               15.  Alibaba HZ, Özdeniz MB. A  building elements selection
            4.  WCED. Our common future: Report of the World Commission   system for architects. Build Environ. 2004;39(3):307-316.
               on Environment and Development. United Nations: World      doi: 10.1016/j.buildenv.2003.09.010
               Commission on Environment and Development; 1987.
                                                               16.  Wang W, Zmeureanu R, Rivard H. Applying multi-objective
            5.   Ilha MSO, Oliveira LR, Goncalves OM. Environmental   genetic algorithms in green building design optimization.
               assessment of residential buildings with an emphasis on water   Build Environ. 2005;40(11):1512-1525.
               conservation. J Build Serv Eng Res Technol. 2009;30:15-26.
                                                                  doi: 10.1016/j.buildenv.2004.11.017
               doi: 10.1177/0143624408098274
                                                               17.  Al Jaber A, Martinez-Vazquez P, Baniotopoulos C. Barriers
            6.   Al-Numan BSO. Construction industry role in natural   and enablers to the adoption of circular economy concept in
               resources depletion and how to reduce It. In:  Natural   the building sector: A systematic literature review. Buildings.
               Resources Deterioration in MENA Region: Land Degradation,   2023;13(11):2778.
               Soil Erosion, and Desertification.  Cham:  Springer
               International Publishing; 2024. p. 93-109.         doi: 10.3390/buildings13112778
               doi: 10.1007/978-3-031-58315-5_6                18.  Ramalhete PS, Senos AM, Aguiar C. Digital tools for
                                                                  material selection in product design.  Mater Design.
            7.   European Commission. Directorate-General for Energy and   2010;31(5):2275-2287.
               Transport. 2020 Vision: Saving Our Energy.  Luxembourg:
               Office for official Publications of the European Communities;      doi: 10.1016/j.matdes.2009.12.013
               2023.                                           19.  Gonzalez MJ, Navarro JG. Assessment of the decrease of CO
            8.   Tawalbeh LA, Delgado J, Solis S, Juarez T, Tietjen JD,   emissions in the construction field through the selection  2
               Muheidat F. Energy consumption and carbon emissions   of materials: Practical case study of three houses of low
               data analysis: Case study and future predictions. Procedia   environmental impact. Build Environ. 2006;41(17):902-909.
               Comput Sci. 2023;220:616-623.                      doi: 10.1016/j.buildenv.2005.04.006
               doi: 10.1016/j.procs.2023.03.078                20.  Godfaurd J, Clements-Croome D, Jeronimidis G. Sustainable
            9.   Akadiri PO, Fadiya OO. Empirical analysis of the   building solutions: A  review of lessons from the natural
               determinants of environmentally sustainable practices in the   world. Build Environ. 2005;40:319-328.
               UK construction industry. Constr Innov. 2013;13(4):352-373.     doi: 10.1016/j.buildenv.2004.05.011A
               doi: 10.1108/CI-05-2012-0025                    21.  Kibert CJ. Sustainable Construction: Green Building Design
                                                                             nd
            10.  Harputlugil T, De Wilde P. The interaction between humans   and Delivery. 2  ed. Hoboken, New Jersey, USA: John Wiley
               and buildings for energy efficiency: A critical review. Energy   and Sons, Inc.; 2008.
               Res Soc Sci. 2021;71:101828.                    22.  Designing Buildings; 2021. Available from: https://www.
               doi: 10.1016/j.erss.2020.101828                    designingbuildings.co.uk/wiki/durability [Last accessed on
                                                                  2024 Apr 15].
            11.  Zhang W, Wu Y, Calautit JK. A  review on occupancy
               prediction through machine learning for enhancing energy   23.  Cabral MR, Blanchet P. Prioritizing indicators for material
               efficiency, air quality and thermal comfort in the built   selection in prefabricated wooden construction. Buildings.
               environment. Renew Sustain Energy Rev. 2022;167:112704.  2023;14(1):63.
               doi: 10.1016/j.rser.2022.112704                    doi: 10.3390/buildings14010063
            12.  Sahlol DG, Elbeltagi E, Elzoughiby M, Abd Elrahman M.   24.  Patel KV, Vyas CM. Construction Materials Management
               Sustainable building materials assessment and selection   on Project Sites. In: National Conference on Recent Trends in
               using system dynamics. J Build Eng. 2021;35:101978.  Engineering and Technology; 2011. p. 1-5.
               doi: 10.1016/j.jobe.2020.101978                 25.  Pitkänen A. The role of Material Management in Construction
                                                                  Projects: Investigating Material Inventories and Material
            13.  Nassar KW, Thabet Y, Beliveau Y. A procedure for multi-  Waste. Lappeenranta-Lahti University of Technology LUT
               criteria selection of building assemblies.  Autom Constr.   Master’s Programme in Supply Management, Master’s
               2003;12(5):543-560.
                                                                  Thesis; 2024.
               doi: 10.1016/S0926-5805(03)00007-4
                                                               26.  Gudienė N, Banaitis A, Banaitienė N, Lopes J. Development
            14.  Treloar GJ, Fay R, Ilozor BD, Love PED. Building materials   of a conceptual critical success factors model for construction
               selection: Greenhouse strategies for built facilities. Facilities.   projects: A case of Lithuania. Procedia Eng. 2013;57:392-397.


            Volume 2 Issue 1 (2025)                         13                                doi: 10.36922/dp.4491
   61   62   63   64   65   66   67   68   69   70   71