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The mathematical model, which could be represented as a fuzzy inference tree for project man-agement aimed at waste usage in wall manufacturing, is proposed in the article. The factors classification that affect production's environmental and economic efficiency is presented. The proposed ecological and economic efficiency criterion and influence factors are linguistic variables consisting of fuzzy terms on the corresponding universal sets. The proposed hierarchical system of mathematical models allows the intelligent choice of proper building material, depending on the influence of environmental parameters, socio-economic parameters, and engineering and technological parameters of a building object, based on fuzzy logical expressions “IF-THEN”. The proposed model could be used as a support system model in the decision-making process at the early feasibility stage. Estimating pros and cons based on the results of a virtual experiment in terms of proposed criterion value for specific construction waste allows proper planning of construction waste usage in the construction sector. The proposed model can be used as a design and engineering tool in the decision-making process for forecasting the ecological and economic efficiency of the use of waste in the manufacture of walls.
Czasopismo
Rocznik
Tom
Strony
87--99
Opis fizyczny
Bibliogr. 34 poz.
Twórcy
autor
- PhD, Associated Prof.; Department of Construction, Architecture and Municipal Economy, Vinnytsia National Technical University, Voiniv Internatsionalistiv, 7. Vinnytsia, 21000 Ukraine
autor
- PhD, Associated Prof.; Department of Construction, Architecture and Municipal Economy, Vinnytsia National Technical University, Voiniv Internatsionalistiv, 7. Vinnytsia, 21000 Ukraine
autor
- Master’s student; Department of Construction, Architecture and Municipal Economy, Vinnytsia National Technical University, Voiniv Internatsionalistiv, 7. Vinnytsia, 21000 Ukraine
- 35787844@qq.com
autor
- PhD student; Department of Construction, Architecture and Municipal Economy, Vinnytsia National Technical University, Voiniv Internatsionalistiv, 7. Vinnytsia, 21000 Ukraine
Bibliografia
- [1] Zhang Yu. (2022). Research on the mechanical properties of recycled coarse aggregate concrete and prefabricated wall panels from waste bricks from construction waste. Master’s thesis of Zhengzhou University (in Chinese).
- [2] Zhu Mengmeng. (2014) Experimental research on recycled autoclaved aerated concrete from construction waste. Master’s thesis of Jiangxi University of Science and Technology (in Chinian).
- [3] Guo Chaoqiang. (2020). Research on the preparation of lightweight and high-strength wall materials by resource utilisation of construction waste. Master’s thesis of the Wuhan University of Light Industry (in Chinese).
- [4] Berninger, K., Heikkila, L., Kolev, Z., Orjala, M., &Teravainen, T. (2010). Waste management and recycling in Finland. Conference Presentation.
- [5] Lyalyuk, L., Khrystych, O., &Khodetskyi, O. (2022). Application of construction waste in the manufacture of walls. Proceedings of XII International Scientific and Practical Conference Tokyo. Japan, 28-33 (in Ukrainian).
- [6] Zuzyak, S., Lemeshev, M. S., &Hristych, O.V. (2018). Resource-saving technology of building material production by using technological waste. Modern technologies, materials and structures in construction. Scientific and technical collection. 1 (24), 18-23. Vinnytsia: UNIVERSUM. (in Ukrainian).
- [7] Wu, H., Zuo, J, Zillante, G., Wang, J., Yuan, H. (2019). Status quo and direction of construction and demolition waste reseach; A critical review. Journal of Cleaner Production, 240, 118-163.
- [8] Wu, H., Zuo, J, Wang, J., Yuan, H. (2018). Understanding factors influencing project managers’ behavioral intentions to reduce waste in construction. Journal of Management in Engineering. 34(6), 40-48.
- [9] Guerra, B., Leite, E, Faust, K. (2020). 4D - BIM to enhance construction waste reuse and recycle planning: Case studies on concrete and drywall waste streams. Waste Management, 116, 79-90.
- [10] Arum, C. (2011). Recycling of Construction and Demolition Concrete for Sustainable Buildings. European Journal of Scientific Research, 52(2), 265-270.
- [11] Dolan, P. J., Lampo, R. G., and Dearborn, J. C. (1999). Concepts for Reuse and Recycling of Construction and Demolition Waste. USACERL Technical Report 97/58, US Army Corps of Engineers.
- [12] EI-Haggar, S. (2007). Sustainable industrial design and waste management: cradle-to-cradle F r sustainable development. Academic Press.
- [13] Kuosa, H. (2012). Reuse of recycled aggregates and other C&D wastes. Research Report, Project- Advanced Solutions for Recycling Complex and New Materials, 2010-2012, VTT.
- [14] Elgizawy, S. M., El-Haggar, S., and Nassar, K. (2016). Approaching Sustainability of Construction and Demolition Waste Using Zero Waste Concept. Low Carbon Economy, 7(01).
- [15] Lyalyuk, O. & Ratushnyak, O. (2007). Modelling the processes of creating environmentally friendly construction production. Bulletin of the Kremenchuk State Polytechnic University, 42, 137-139. (in Ukrainian).
- [16] Bilal, M., Khan, K.I.A., Thaheem, M.J. and Nasir, A.R. (2020). Current state and barriers to the circular economy in the building sector: towards a mitigation framework, Journal of Cleaner Production, 276, 123250.
- [17] Arshad, H., Qasim, M., Thaheem, M.J. and Gabriel, H. (2017). Quantification of material wastage in construction industry of Pakistan: an analytical relationship between building types and waste generation, Journal of Construction in Developing Countries, 22(2), 19-34.
- [18] Haslinda, A.N., Xian, T.W., Norfarahayu, K., Hanafi, R.M. and Fikri, H.M. (2018), Investigation on the factors influencing construction time and cost overrun for high-rise building projects in Penang, Paper Presented at the Journal of Physics: Conference Series.
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- [20] Melnikovas, A. (2018). Towards an explicit research methodology: adapting research onion model for futures studies, Journal of Futures Studies, 23(2), 29-44.
- [21] Horstko A., &Ugolnytskyi, G. (1990). Introduction to the modelling of ecological and economic systems. Rostov-on-Don, Rostov University, 110 (in Russian).
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- [24] Lyashenko, I.M. (1999). Regarding the methodologies of ecological and economic modelling. Economics of Ukraine, 6, 69-78. (in Ukrainian).
- [25] Rotshtein, A. P. (1999). Intelligent identification technologies: fuzzy sets, genetic algorithms, neural networks. Vinnytsia: UNIVERSUM-Vinnytsia. (in Russian).
- [26] Shahid, M., Thaheem, Muhammad, J., Arshad, H. (2023). Engineering, Construction and Architectural Management, 30(6), 2304-2333.
- [27] Zadeh, L. (1976). The concept of linguistic variable for making approximate decisions. Moscow: Radio and communication (in Russian).
- [28] Hansen, T. C. (1992). Recycling of Demolished Concrete and Masonry - RILEM Report No. 6. Report of Technical Committee 37-DRC Demolition and Reuse of Concrete. E & FN Spon Press, London.
- [29] What is the circular economy? URL: https://www.ellenmacarthurfoundation.org/circular- economy/what-isthe-circular-economy.
- [30] Serdyuk, V. R., Lemeshev, M. S., & Hristych, O.V. (2011). Fly ash-cement binder for the production of porous concrete. Modern technologies, materials and structures in construction. Scientific and technical collection , 1(10), 57-61. Vinnytsia: UNIVERSUM. (in Ukrainian).
- [31] Sasitharan, N., Ismail Abdul Rahman, Ade Asmi, Aftab Hameed Memon, Imran Latif, (2012). Issues on construction waste: The need for sustainable waste. IEEE colloquium on Humanities, Science and Engineering, 325-330.
- [32] Ruda, M., Myrka, Y. (2020).Circular business models in Ukraine. Management and entrepreneurship in Ukraine: stages of formation and problems of development, 2 (1), 107-121.
- [33] Ismail Abdul Rahmana, Sasitharan Nagapanb & Ade Asmic. (2014). Initial PLS .Model of Construction Waste Factors. Procedia - Social and Behavioral Sciences, 129, 469-474.
- [34] Aibinu, A. A. & Al-Lawati, A. M. (2010). Using PLS- SEM technique to model construction organizations' willingness to participate in e-bidding. Automation in Construction, 19, 714-724.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-508ecb8c-bf1b-4405-a4bc-d3e31aba0cc9