Identifikasi Clash Detection pada Proyek Gedung Bertingkat Berbasis Building Information Modeling

Authors

  • Era Agita Kabdiyono Universitas Dian Nusantara
  • Jalaludin Jalaludin Universitas Dian Nusantara
  • Rifaldi Adi Saputra Universitas Dian Nusantara
  • Rosario Olsen Universitas Dian Nusantara
  • M Abdul Aziz Universitas Dian Nusantara

DOI:

https://doi.org/10.62007/joumi.v4i2.813

Keywords:

Building Information Modeling, Clash Detection, Conflict Detection, Design Coordination, High-rise Building.

Abstract

High-rise building projects are highly complex because they involve the integration of structural, architectural, and mechanical, electrical, and plumbing (MEP) elements. One of the common problems in the planning stage is the occurrence of design clashes between building elements that are not detected early. Such clashes may lead to design discrepancies, rework, material waste, project delays, and potential cost increases during construction. Therefore, the implementation of Building Information Modeling (BIM) through clash detection is important to improve design coordination and minimize construction errors. This study aims to analyze the implementation of BIM-based clash detection in identifying design clashes in a high-rise building project. The research employed a model-based simulation approach through literature review, project data collection, BIM 3D modeling, clash detection, and classification of clashes among building disciplines. The clash detection process was carried out to identify conflicts between structural, architectural, and MEP elements.The results show that the BIM model was able to visualize the building components in detail and support the identification of interdisciplinary clashes. The detected clashes included conflicts between structure and MEP, architecture and MEP, structure and architecture, and wall elements with MEP components.

References

Abosaq, N., & Batool, S. M. (2025). A novel BIM-enabled software-based solution for mitigating construction risk management. Yanbu Journal of Engineering and Science, 21(1), 1–7. https://doi.org/10.53370/001c.120361

Aziz, R. M., Nasreldin, T. I., & Hashem, O. M. (2024). The role of BIM as a lean tool in design phase. Journal of Engineering and Applied Science, 71(1). https://doi.org/10.1186/s44147-023-00340-3

Chahrour, R., H. M. A., A. A. M., S. H. I., D. H., R.-T. S., & D. N. (2021). Cost-benefit analysis of BIM-enabled design clash detection and resolution. Construction Management and Economics, 39(1), 55–72.

Das, K., Khursheed, S., & Paul, V. K. (2025). The impact of BIM on project time and cost: Insights from case studies. Discover Materials, 5(1), Article 25. https://doi.org/10.1007/s43939-025-00200-2

Daszczyński, T., Ostapowski, M., & Szerner, A. (2022). Clash cost analysis in electrical installations based on BIM technologies. Energies, 15(5), Article 1679. https://doi.org/10.3390/en15051679

Elsheikh, A., Saqr, A., & Motawa, I. (2025). BIM-based integrated model for project cost estimation: A case study for concrete elements. Civil Engineering Journal, 11(11), 4821–4847. https://doi.org/10.28991/CEJ-2025-011-11-021

Elyano, M. R., & Yuliastuti. (2021). Analysis of clash detection and quantity take-off using BIM for warehouse construction. IOP Conference Series: Earth and Environmental Science, 794(1), 012012. https://doi.org/10.1088/1755-1315/794/1/012012

Harode, A., & Thabet, W. (n.d.). Extracting BIM data to support a machine learning model for automated clash resolution. Proceedings, 4, 381–391. https://doi.org/10.29007/2x41

Hu, Y., Castro-Lacouture, D., & Eastman, C. M. (2020). BIM-enabled clash resolution optimization based on clash dependent networks. In Proceedings of the Construction Research Congress (pp. 668–677). https://doi.org/10.1061/9780784482865.071

Huang, Y., & Lin, W.-Y. (2019). Automatic classification of design conflicts using rule-based reasoning and machine learning: An example of structural clashes against the MEP model. Proceedings of the International Symposium on Automation and Robotics in Construction. https://doi.org/10.22260/isarc2019/0044

Jacobsson, M., & Merschbrock, C. (2018). BIM coordinators: A review. Engineering, Construction and Architectural Management, 25(8), 989–1008. https://doi.org/10.1108/ECAM-03-2017-0050

Juszczyk, M., Vaišnoras, M., Kontrimovičius, R., Hanák, T., Łukaszewska, H., & Ustinovichius, L. (2025). Quality and reliability of IFC/BIM models for public educational facilities construction projects via clash detection. Journal of Civil Engineering and Management, 31(1), 1–19. https://doi.org/10.3846/jcem.2025.23114

Koo, H. J., & O’Connor, J. T. (2022). Building information modeling as a tool for prevention of design defects. Construction Innovation, 22(4), 870–890. https://doi.org/10.1108/CI-02-2021-0033

Lin, W.-Y., & Huang, Y. (2019). Filtering of irrelevant clashes detected by BIM software using a hybrid method of rule-based reasoning and supervised machine learning. Applied Sciences, 9(24), Article 5324. https://doi.org/10.3390/app9245324

Mamdouh, M., Moursy, O., Hassan, A. A., & Gerges, V. F. (2024). A comparison between CAD system and building information modelling (BIM). IOP Conference Series: Earth and Environmental Science, 1396(1), 012037. https://doi.org/10.1088/1755-1315/1396/1/012037

Mediavilla, A., Elguezabal, P., & Lasarte, N. (2022). Graph-based methodology for multi-scale generation of energy analysis models from IFC. SSRN Electronic Journal. https://doi.org/10.2139/ssrn.4193694

Peansupap, V., & Tongthong, T. (2021). Utilization of building information modeling for arranging the structural kingposts. Buildings, 11(8), Article 323. https://doi.org/10.3390/buildings11080323

Taghaddos, H., Mashayekhi, A., & Sherafat, B. (2016). Automation of construction quantity take-off using building information modeling (BIM). In Construction Research Congress 2016 (pp. 2218–2227). https://doi.org/10.1061/9780784479827.221

Tanko, B. L., Zakka, W. P., & Heng, W. N. (2022). BIM in the Malaysian construction industry: A scientometric review and case study. Engineering, Construction and Architectural Management, 31(3), 1165–1186. https://doi.org/10.1108/ECAM-04-2021-0324

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Published

2026-06-30

How to Cite

Era Agita Kabdiyono, Jalaludin Jalaludin, Rifaldi Adi Saputra, Rosario Olsen, & M Abdul Aziz. (2026). Identifikasi Clash Detection pada Proyek Gedung Bertingkat Berbasis Building Information Modeling. Jurnal Multidisiplin Indonesia, 4(2), 586–599. https://doi.org/10.62007/joumi.v4i2.813

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