Organization and management of 4D-modelling processes in construction
https://doi.org/10.21285/2227-2917-2022-2-190-195
Abstract
The study aims to determine the prospects of integrated automation in the management of construction stages and scheduling on the basis of the 4D-modelling concept, which is applied in domestic and foreign practice of capital construction for visualizing the sequence of construction stages. Due to the use of conventional planning tools, the majority of developers fail to meet the established construction deadlines. At present, the construction industry is at the stage of transition from 2D documentation and step-by-step processes of forming a digital model to an integrated schedule based on the concept of 4D-modelling. Within the framework of transitioning to Industry 4.0, the introduction of 4D-modelling in the BIM model will revolutionize the construction industry by integrating these 3D models with additional planning dimensions and cost estimations. The application of 4D-modelling is shown to improve the efficiency of work processes, which were previously associated with a great risk and inefficiency of construction stages. Currently, the application of the 4D-visualization method is at its nascent stage due to a number of barriers and problems, including those related to the reassessment of implementation costs, a search for competent personnel, as well as a lack of integrated models. At the same time, the application of 4D models appears to be a necessary and inevitable transition to a new stage of digital maturity of the construction industry, which allows the subjects of the construction process to effectively visualize construction stages, accurately plan the required resources and optimize communications within each stage.
About the Authors
M. V. MatveevaRussian Federation
Maria V. Matveeva, Dr. Sci. (Econ.), Professor of the Department of Expertise and Real Estate Management
83 Lermontov St., Irkutsk, 664074
A. A.А. Adegbola
Benin
Akilow Ademola Adigun Adegbola, Specialist, DYJESCK-S
01 BP 721, Cotonou, 444
References
1. Surodeev AV, Tereshkin IP. The main aspects of the introduction of BIM-technologies in Russia. XLVII Ogarevskie chteniya: mat-ly nauch. konf. (Saransk, 06-13 December 2018). Saransk, 2019. p. 216-219. (In Russ.).
2. Koptseva NP. Possibilities of BIM (building information modeling) technologies for innovative development. Tsifrovizatsiya. 2021;2(2):8-24. https://doi.org/10.37993/2712-8733-2021-2-2-8-24. (In Russ.).
3. Babkin A, Mylnikova E, Chernovalova G, Belmas S, Nagibina N. Information-Infrastructure Mechanism for Managing Industrial Enterprise Self-Development in the Setting of Digitization. Lecture Notes in Networks and Systems. 2022;246:762-770. (In Russ.). https://doi.org/10.1007/978-3-030-81619-3_85.
4. Gumba KhM, Uvarova SS, Belyaeva SV, Belyantseva OM. Formation of the concept of systemic competitiveness of construction in the digital economy. Ekonomika i predprinimatel'stvo = Journal of Economy and entrepreneurship. 2021;1(126):716-720. https://doi.org/10.34925/EIP.2021.126.01.138. (In Russ.).
5. Talapov V. The role of the technical customer in organizing the process of information modeling. SAPR I grafika. 2019;11(277):4-12. (In Russ.).
6. Peshkov AV, Matveeva MV, Bezrukikh OA, Rogov DS. Ensuring quality control processes at all stages of the life cycle of capital construction projects under the Construction 4.0 concept. Izvestiya vuzov. Investitsii. Stroitel'stvo. Nedvizhimost' = Proceedings of Universities. Investment. Construction. Real estate. 2022;12(1):90-97. (In Russ.). https://doi.org/10.21285/2227-2917-2022-1-90-97.
7. Aleksandrova E, Vinogradova V, Tokunova G. Integration of digital technologies in the field of construction in the Russian Federation. Engineering Management in Production and Services. 2019;1(3):38-47. https://doi.org/10.2478/emj-2019-0019.
8. Gledson BJ, Greenwood DJ. Surveying the extent and use of 4D BIM in the UK. Journal of Information Technology in Construction (ITcon). 2016;21:57-71. (In Russ.).
9. Ilinova VV, Mitsevich VD. International experience of using BIM technologies in construction. Rossiyskiy vneshneekonomicheskiy vestnik = Russian Foreign Economic Journal. 2021;6:79-93. (In Russ.). https://doi.org/10.24412/2072-8042-2021-6-79-93.
10. Krivosheitseva EA, Kornitskaya MN. 4D modeling of buildings using Autodesk Navisworks. Polzunovskiy al'manakh. 2022;1:94-96. (In Russ.).
11. Bolotova AS, Marshavina JI. Problems of the implementation of BIM technologies in Russia. Stroitel'noye proizvodstvo = Construction production. 2021;2:70-80. (In Russ.). https://doi.org/10.54950/26585340_2021_2_70.
12. Kassem M, Brogden T, Dawood N. BIM and 4D planning: a holistic study of the barriers and drivers to widespread adoption. Journal of Construction Engineering and Project Management. 2012;2(4):1-10. https://doi.org/10.6106/JCEPM.2012.2.4.001.
Review
For citations:
Matveeva M.V., Adegbola A.A. Organization and management of 4D-modelling processes in construction. Izvestiya vuzov. Investitsii. Stroitelstvo. Nedvizhimost. 2022;12(2):190-195. (In Russ.) https://doi.org/10.21285/2227-2917-2022-2-190-195