BARRIERS TO BUILDING INFORMATION MODELLING (BIM) ADOPTION AMONG ARCHITECTURE, ENGINEERING AND CONSTRUCTION (AEC) SMALL AND MEDIUM-SIZED ENTERPRISES IN JOS METROPOLIS, NIGERIA

Main Article Content

Mark Yohanna Davou
Manbyen Nanven Rimtip
Zumshak Ayuba Dapia

Abstract

Building Information Modelling (BIM) is widely credited with improving productivity and coordination in construction, yet its adoption among architecture, engineering and construction (AEC) small and medium-sized enterprises (SMEs) in Nigeria remains concentrated in Lagos and Abuja, leaving other regions poorly understood. This study surveyed AEC professionals practising in Jos Metropolis, Plateau State, in Nigeria’s North-Central geopolitical zone, to establish current BIM awareness, rank adoption barriers, and identify enablement strategies. After geographic screening, 89 of 109 received responses were retained and analysed using descriptive statistics and the Relative Importance Index (RII). Results show that 87.6% of respondents had heard of BIM, but only 20.2% had received formal training and only 23.6% of firms reported a specific adoption plan. Weak client demand (RII = 0.703) and the absence of a government mandate (RII = 0.695) were ranked the most severe barriers, ahead of unproven local return on investment, software/hardware cost, and lack of affordable training; technical complexity and workload pressure were rated least severe. Respondents rated university curriculum integration (RII = 0.846) and a shared BIM Hub facility (RII = 0.798) as more important enablement strategies than a public-project mandate (RII = 0.727), even though mandate absence was the second most severe rated barrier. The findings suggest that demand-side and capability-building interventions are likely to be more effective in this market than regulation or cost subsidy alone, and provide, to the authors’ knowledge, among the first empirical evidence on AEC SME BIM adoption specific to Jos Metropolis and Nigeria’s North-Central zone.

Downloads

Download data is not yet available.

Article Details

Section

Articles

Author Biographies

Mark Yohanna Davou, Plateau State University

Department of Architecture, Faculty of Environmental Sciences

Manbyen Nanven Rimtip, Plateau State University

Department of Building, Faculty of Environmental Sciences

Zumshak Ayuba Dapia, Plateau State University

Department of Building, Faculty of Environmental Sciences

References

Abdel-Tawab, M., Kineber, A. F., Chileshe, N., Abanda, H., Ali, A. H., & Almukhtar, A. (2023). Building information modelling implementation model for sustainable building projects in developing countries: A PLS-SEM approach. Sustainability, 15(12), Article 9242. doi:10.3390/su15129242

Adekunle, S. A., Ejohwomu, O., & Aigbavboa, C. O. (2021). Building information modelling diffusion research in developing countries: A user meta-model approach. Buildings, 11(7), Article 264. doi:10.3390/buildings11070264

Alabi, A. S., Alabi, O. A., Fadeyi, A. A., Okon, E. M., Oke, T. I., Oloye, A. R., & Arayela, O. (2026). BIM adoption in Nigeria: Systematic review of status and policy framework for sustainable development. Built Environment Project and Asset Management, 16(2), 338-356. doi:10.1108/BEPAM-03-2025-0076

Albert, I., Nathaniel, O. B., & Olonilebi, P. (2025). Investigation of building information modeling (BIM) in sustainable construction projects. FUDMA Journal of Sciences, 9(2), 133-139. doi:10.33003/fjs-2025-0902-3121

Ametepey, S. O., Aigbavboa, C., Addy, H., & Thwala, W. D. (2024). A bibliometric review of the trends of construction digitalization research in the past ten years. Buildings, 14(9), Article 2729. doi:10.3390/buildings14092729

Ariono, B., Wasesa, M., & Dhewanto, W. (2022). The drivers, barriers, and enablers of building information modeling (BIM) innovation in developing countries: Insights from systematic literature review and comparative analysis. Buildings, 12(11), Article 1912. doi:10.3390/buildings12111912

Chigemezu, A. N., Jovita, E. C., & Elamah, D. (2024). Assessment of the adoption of building information modelling (BIM) in construction industries in Nigeria: A case study of Abuja Metropolis. IRESPUB Journal of Natural & Applied Sciences, 3(1). doi:10.62179/irespub-jnas.v3i1.2

DiMaggio, P. J., & Powell, W. W. (1983). The iron cage revisited: Institutional isomorphism and collective rationality in organizational fields. American Sociological Review, 48(2), 147-160. doi:10.2307/2095101

Eastman, C., Teicholz, P., Sacks, R., & Liston, K. (2018). BIM handbook: A guide to building information modeling for owners, designers, engineers, contractors, and facility managers (3rd ed.). Hoboken, NJ: Wiley.

Hamma-adama, M., & Kouider, T. (2020). Macro-BIM adoption study: Establishing Nigeria's BIM maturity. In The construction industry in the fourth industrial revolution (pp. 401-411). Cham, Switzerland: Springer International Publishing. doi:10.1007/978-3-030-26528-1_40

International Crisis Group. (2012). Curbing violence in Nigeria (I): The Jos crisis (Africa Report No.196).Brussels,Belgium:InternationalCrisisGroup. https://www.crisisgroup.org/sites/default/files/196-curbing-violence-in-nigeria-i-the-jos-crisis.pdf

Mosse, H. N., Njuguna, M., & Kabubo, C. (2020). Influence of building information modelling (BIM) on engineering contract management in Nairobi, Kenya. World Journal of Engineering and Technology, 8(3), 329-346. doi:10.4236/wjet.2020.83026

Okereke, R. A., Ihekweme, N. M., & Awodele, I. A. (2021). Building information modeling (BIM) and quantity surveying consultancy services in Nigeria. Journal of Engineering and Technology for Industrial Applications, 7(32), 44-49. doi:10.5935/jetia.v7i32.787

Onungwa, I. O., & Uduma-Olugu, N. (2017). Building information modelling and collaboration in the Nigerian construction industry. Journal of Construction Business and Management, 1(2), 1-10.

Onungwa, I. O., Uduma-Olugu, N., & Igwe, J. M. (2017). Building information modelling as a construction management tool in Nigeria. WIT Transactions on the Built Environment, 169, 25-33.

Rahim, N. S. A., Ismail, S., Subramaniam, C., Abdullah Habib, S. N. H., & Durdyev, S. (2023). Building information modelling strategies in sustainable housing construction projects in Malaysia. Sustainability, 15(3), Article 2313. doi:10.3390/su15032313

Rogers, E. M. (2003). Diffusion of innovations (5th ed.). New York, NY: Free Press.

Saka, A. B., & Chan, D. W. M. (2019). A scientometric review and metasynthesis of building information modelling (BIM) research in Africa. Buildings, 9(4), Article 85. doi:10.3390/buildings9040085

Saka, A. B., & Chan, D. W. M. (2020). Profound barriers to building information modelling (BIM) adoption in construction small and medium-sized enterprises (SMEs): An interpretive structural modelling approach. Construction Innovation, 20(2), 261-284. doi:10.1108/CI-09-2019-0087

Saka, A. B., Chan, D. W. M., & Siu, F. M. F. (2020). Drivers of sustainable adoption of building information modelling (BIM) in the Nigerian construction small and medium-sized enterprises (SMEs). Sustainability, 12(9), Article 3710. doi:10.3390/su12093710

Succar, B. (2009). Building information modelling framework: A research and delivery foundation for industry stakeholders. Automation in Construction, 18(3), 357-375. doi:10.1016/j.autcon.2008.10.003

Tehami, M., & Seddiki, M. (2023). Investigation toward the adoption of building information modelling in Algeria from architects' perspective. Journal of Construction in Developing Countries, 28(2), 329-352. doi:10.21315/JCDC-08-22-0148

Tornatzky, L. G., & Fleischer, M. (1990). The processes of technological innovation. Lexington, MA: Lexington Books.

Waqar, A., Qureshi, A. H., & Alaloul, W. S. (2023). Barriers to building information modeling (BIM) deployment in small construction projects: Malaysian construction industry. Sustainability, 15(3), Article 2477. doi:10.3390/su15032477