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INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK

Cilt: 4 Sayı: 2 31 Aralık 2022
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INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK

Öz

In architecture education, the conventional method for construction management subjects is a theoretical approach in general, which is limited to satisfying the emerging needs of Construction 4.0 in the AEC industry. This study aims to develop and integrate a 4D & 5D modelling framework to construction management courses for architecture students to be able to fulfil the AEC industry’s qualification demands, as a part of Construction 4.0. The methodology of this research consists of the establishment of a framework structured upon theoretical background on construction management current industry requirements and its implementation into “construction management and economics” course in architecture education. Additionally, a survey was conducted among the students to evaluate the efficiency of the framework. One of the key findings of the study is the development of a framework to integrate 4D-5D modelling into a construction management course in architecture. It was developed in intersection clusters between BIM, AR, and VR to perform 4D visualization of construction, monitor the whole process, and detect clashes. According to the survey and results, the 4D-5D BIM-based framework is considered beneficial and enhances perception and understanding of cost and time management. This study involves a new digitalization framework that is adaptable to construction management courses employing a systematic approach. Additionally, this framework has the potential to be employed by industry professionals.

Anahtar Kelimeler

4D simulation, 5D, architectural education, BIM, construction management, modelling, 4B simülasyon, 5B, mimarlık eğitimi, modelleme, yapım yönetimi, YBM

Kaynakça

  1. Abanda, F. H., Tah, J. H. M., & Cheung, F. K. T. (2017). BIM in Off-site Manufacturing for Buildings. Journal of Building Engineering, 14(October), 89–102.
  2. Abbas A., Din Z. U., & Farooqui R. (2016). Integration of BIM in Construction Management Education: An Overview of Pakistani Engineering Universities, Procedia Engineering, 145, 151-157. https://doi.org/10.1016/j.proeng.2016.04.034
  3. Ahmed S.M., Yaris C., Farooqui R. U., & Saqib M. (2014). Key Attributes and Skills for Curriculum Improvement for Undergraduate Construction Management Programs, International Journal of Construction Education and Research, 10:4, 240-254. DOI: 10.1080/15578771.2014.900833
  4. Alizadehsalehi, S., Hadavi, A., & Huang, J.C. (2020). From BIM to extended reality in AEC industry. Automation in Construction, 16. https://doi.org/10.1016/j.autcon.2020.103254
  5. Assaf, S.A., & Al-Hejji, S. (2006). Causes of delay in large construction projects. International Journal of Project Management, 24(4), 349-357.
  6. Bloom, B. S., Engelhart, M. D., Furst, E. J., Hill, W. H., & Krathwohl, D. R. (1956). Handbook I: cognitive domain. New York: David McKay.
  7. Bryde, D., Broquetas, M., & Volm, J.M. (2013). The project benefits of building information modelling (BIM). International Journal of Project Management, 31(7), 971-980.
  8. Chan, C.T.W. (2014). Barriers of implementing BIM in construction industry from the designers’ perspective, A Hong Kong Experience. Journal of System and Management Sciences, 4 (2), 24-40.
  9. Charlesraj, V.P.C., & Dinesh, T. (2020). Status of 4D BIM Implementation in Indian Construction. 37th International Symposium on Automation and Robotics in Construction (ISARC 2020).
  10. Cheng, J. C. A., & Ma, L. Y. (2013). A BIM-Based System for Demolition and Renovation Waste Estimation and Planning. Waste Management, 33(6), 1539–1551.

Kaynak Göster

APA
Seyman Guray, T., & Kısmet, B. (2022). INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK. ArtGRID - Journal of Architecture Engineering and Fine Arts, 4(2), 172-189. https://doi.org/10.57165/artgrid.1196053
AMA
1.Seyman Guray T, Kısmet B. INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK. ArtGRID. 2022;4(2):172-189. doi:10.57165/artgrid.1196053
Chicago
Seyman Guray, Tayibe, ve Burcu Kısmet. 2022. “INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK”. ArtGRID - Journal of Architecture Engineering and Fine Arts 4 (2): 172-89. https://doi.org/10.57165/artgrid.1196053.
EndNote
Seyman Guray T, Kısmet B (01 Aralık 2022) INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK. ArtGRID - Journal of Architecture Engineering and Fine Arts 4 2 172–189.
IEEE
[1]T. Seyman Guray ve B. Kısmet, “INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK”, ArtGRID, c. 4, sy 2, ss. 172–189, Ara. 2022, doi: 10.57165/artgrid.1196053.
ISNAD
Seyman Guray, Tayibe - Kısmet, Burcu. “INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK”. ArtGRID - Journal of Architecture Engineering and Fine Arts 4/2 (01 Aralık 2022): 172-189. https://doi.org/10.57165/artgrid.1196053.
JAMA
1.Seyman Guray T, Kısmet B. INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK. ArtGRID. 2022;4:172–189.
MLA
Seyman Guray, Tayibe, ve Burcu Kısmet. “INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK”. ArtGRID - Journal of Architecture Engineering and Fine Arts, c. 4, sy 2, Aralık 2022, ss. 172-89, doi:10.57165/artgrid.1196053.
Vancouver
1.Tayibe Seyman Guray, Burcu Kısmet. INTEGRATING 4D & 5D MODELLING INTO CONSTRUCTION MANAGEMENT EDUCATION IN ARCHITECTURE: A DIGITALIZATION FRAMEWORK. ArtGRID. 01 Aralık 2022;4(2):172-89. doi:10.57165/artgrid.1196053