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İnşaat Sektöründe ISO 16739-1:2024’ün (Endüstri Temel Sınıfları, IFC) Veri Paylaşımı ve Yapı Bilgi Modellemesi (BIM) İş Birliğine Etkisinin Analizi

Year 2025, Volume: 10 Issue: 1, 157 - 174, 28.07.2025
https://doi.org/10.30785/mbud.1609588

Abstract

Bu çalışma, ISO 16739-1:2024’ü (Endüstri Temel Sınıfları, IFC) inşaat sektöründeki Yapı Bilgi Modellemesi (BIM) bağlamında kapsamlı bir şekilde analiz etmektedir. Temel bileşenler, politika ve düzenleyici etkiler, gelecek görünümü, faydalar, zorluklar ve uygulamalar olmak üzere altı temel özelliği ele alarak, standardın veri uyumluluğunu, verimliliğini ve iş birliğini artırmadaki rolünü değerlendirmektedir. Bulgular, ISO 16739-1:2024’ün inşaat süreçlerini birleştirme, karar alma süreçlerini iyileştirme ve standartlaştırılmış veri paylaşımı yoluyla sürdürülebilir uygulamaları teşvik etme kapasitesini vurgulamaktadır. Ancak teknik zorluklar, eğitim ihtiyaçları ve değişime direnç, geniş çapta benimsenmesinde engel oluşturmaktadır. Vaka çalışmaları ve sistematik yöntemler kullanılarak yapılan bu araştırma, standardın dönüştürücü potansiyelini ortaya koymakta ve uygulama zorluklarının üstesinden gelmek için uygulanabilir öneriler sunmaktadır. Çalışma, veri paylaşımındaki boşlukları doldurarak ve inşaat proje yönetiminde yenilikçiliği teşvik ederek hem akademik literatüre hem de sektöre önemli katkılar sağlamaktadır.

References

  • Brandenburger, Y., Weise, F., & Steinbach, S. (2021). DigiLearnBIM – Digitale Transformation in der Bildung. In Kompetenzen für die digitale Transformation 2020 (pp. 357–380). Springer Berlin Heidelberg. Access Address (01.12.2024): https://doi.org/10.1007/978-3-662-62866-9_25
  • buildingSMART. (2024). Global IFC Mandates 2024 Edition: A playbook of IFC Mandates from around the world. BuildingSMART International. Access Address (01.12.2024): https://www.buildingsmart.org/wp- content/uploads/2024/10/IFC-Mandate-Final-1.pdf#page=3.00
  • Cassandro, J., Donatiello, M. G., Mirarchi, C., Zanchetta, C., & Pavan, A. (2023). Reliability of IFC classes in ontology definition and cost estimation of public procurement. In Conference: 2023 European Conference on Computing in Construction and the 40th International CIB W78 Conference (pp. 1-9). nHeraklion, Crete, Greece. Access Address (01.12.2024): https://re.public.polimi.it/bitstream/11311/1256381/1/EC3_RELIABILITY%20 OF%20IFC%20CLASSES%20IN%20ONTOLOGY%20DEFINITION%20AND%20C OST%20ESTIMATION%20OF%20PUBLIC%20PROCUREMENT.pdf
  • Clemen, C. (2022). Trends in BIM and GIS standardization – report from the joint ISO/TC59/SC13–ISO/TC211 WG: GIS-BIM. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVI-5/W1-, 51–58. Access Address (01.12.2024): https://doi.org/10.5194/isprs-archives-XLVI-5-W1-2022-51-2022
  • Dallı, M., & Soyluk, A. (2024). Damage catalogue software and the role of architecture & architects: a comprehensive review. Mimarlık Bilimleri ve Uygulamaları Dergisi (MBUD), 9(Special Issue), 22–40. Access Address (01.12.2024): https://doi.org/10.30785/mbud.1317394
  • Eremenco, S. L., Cella, D., & Arnold, B. J. (2005). A comprehensive method for the translation and cross-cultural validation of health status questionnaires. Evaluation & the Health Professions, 28(2), 212– 232. Access Address (01.12.2024): https://doi.org/10.1177/0163278705275342
  • Guidi, L., Inghirami, G., Masiello, G., Antonucci, D., & Lucia, P. (2022). MICA (Monitoring Internal Comfort Application):: A new BIM tool processing IEQ data input for building management and energetic optimizations. In Challenging Glass Conference Proceedings (Vol. 8). Access Address (01.12.2024): https://doi.org/10.47982/cgc.8.399
  • Honti, R., Erdélyi, J., Bariczová, G., Funtík, T., & Mayer, P. (2020). Automated verification of building components using bim models and point clouds. Slovak Journal of Civil Engineering, 28(3), 13–19. Access Address (01.12.2024): https://doi.org/10.2478/sjce-2020-0019
  • ISO/PAS16739. (2005). ISO/PAS 16739:2005 industry foundation classes, release 2x, platform specification (IFC2x platform) withdrawn (edition 1, 2005). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/38056.html
  • ISO/TC184. (1983). ISO/TC 184 technical committee automation systems and integration. ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/committee/54110.html
  • ISO/TC184/SC4. (1984). ISO/TC 184/SC 4 technical committee industrial data. ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/committee/54158.html
  • ISO16739. (2013). ISO 16739:2013 industry foundation classes (IFC) for data sharing in the construction and facility management industries withdrawn (edition 1, 2013). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/51622.html
  • ISO16739-1. (2018). ISO 16739-1:2018 industry foundation classes (IFC) for data sharing in the construction and facility management industries part 1: data schema withdrawn (edition 1, 2018). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/70303.html
  • ISO16739-1. (2024). ISO 16739-1:2024 industry foundation classes (IFC) for data sharing in the construction and facility management industries part 1: data schema published (edition 2, 2024). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/84123.html
  • Jarar Oulidi, H., & Hajji, R. (2021). Open BIM standards. in building information modeling for a smart and sustainable urban space (pp. 63–76). Wiley. Access Address (01.12.2024): https://doi.org/10.1002/9781119885474.ch4
  • Juraboev, A. (2022). Implementierung des Internet of Things auf Basis von Radio-Frequency Identification in das Building Information Modeling. Proceedings of 33. Forum Bauinformatik. Access Address (01.12.2024): https://mediatum.ub.tum.de/doc/1688408/document.pdf
  • Juszczyk, A. (2022). BIM in the construction process – selected problems at the stage of implementation in Polish road engineering. Archives of Civil Engineering, 623–633. Access Address (01.12.2024): https://doi.org/10.24425/ace.2022.140190
  • Kalkan, M., & Türker, H. B. (2023). Exploring the resilience of natural disasters: a comprehensive bibliometric analysis. Mimarlık Bilimleri ve Uygulamaları Dergisi (MBUD), 8(Special Issue), 26–41. Access Address (01.12.2024): https://doi.org/10.30785/mbud.1335211
  • Karlapudi, J. & Menzel, K. (2020, September). Analysis on automatic generation of BEPS models from BIM model. In BauSim Conference 2020 (Vol. 8, pp. 535-542). IBPSA-Germany and Austria. Access Address (01.12.2024): https://doi.org/10.3217/978-3-85125-786-1-64
  • Karlapudi, J., Valluru, P., & Menzel, K. (2022). Ontology approach for building life cycle data management. Computing in Civil Engineering 2021, 737–744. Access Address (01.12.2024): https://doi.org/10.1061/9780784483893.091
  • Karmakar, A., & Delhi, V. S. K. (2023). Restructuring elements in IFC topology through semantic enrichment: a case of automated compliance checking. ISARC. Proceedings of the International Symposium on Automation and Robotics in Construction, 40, 458–465. Access Address (01.12.2024): https://doi.org/10.22260/ISARC2023/0062
  • Kokkos, A. (2010). Transformative learning through aesthetic experience. Journal of Transformative Education, 8(3), 155–177. Access Address (01.12.2024): https://doi.org/10.1177/1541344610397663
  • Lyu, M. R., Jiqiang Song, & Min Cai. (2005). A comprehensive method for multilingual video text detection, localization, and extraction. IEEE Transactions on Circuits and Systems for Video Technology, 15(2), 243–255. Access Address (01.12.2024): https://doi.org/10.1109/TCSVT.2004.841653
  • Makisha, E. (2019). RuleML-based mechanism of building information models verification. E3S Web of Conferences, 132, 01014. doi: https://doi.org/10.1051/e3sconf/201913201014
  • Napkin. (2024). Napkin AI. Access Address (01.12.2024): https://www.napkin.ai
  • Panteli, C., Kylili, A. & Fokaides, P. A. (2020). Building information modelling applications in smart buildings: From design to commissioning and beyond critical review. Journal of Cleaner Production, 265, 121766. Access Address (01.12.2024): https://doi.org/10.1016/j.jclepro.2020.121766
  • Peng, Z. (2020). An operation and maintenance strategy of intelligent building information model data based on cloud computing. Ingénierie Des Systèmes d Information, 25(4), 461–467. Access Address (01.12.2024): https://doi.org/10.18280/isi.250408
  • Pili, A. (2019). BIM process, ontologies and interchange platform for cultural architectural heritage management: state of art and development perspectives. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-2/W11, 969–973. Access Address (01.12.2024): https://doi.org/10.5194/isprs-archives-XLII-2-W11-969-2019
  • Ramlakhan, R., Kalogianni, E., van Oosterom, P., & Atazadeh, B. (2023). Modelling the legal spaces of 3D underground objects in 3D land administration systems. Land Use Policy, 127, 106537. Access Address (01.12.2024): https://doi.org/10.1016/j.landusepol.2023.106537
  • Sabaa, S., Moscati, A., Jansson, T., & Johansson, P. (2024). Towards a harmonized information exchange in the construction industry: an approach using modular ontology modelling and loin. 41st International Conference of CIB W78, Marrakech, Morocco, 2-3 October. Access Address (01.12.2024): https://itc.scix.net/pdfs/w78-2024- paper_66.pdf
  • Schaffernicht, M., & Groesser, S. N. (2011). A comprehensive method for comparing mental models of dynamic systems. European Journal of Operational Research, 210(1), 57–67. Access Address (01.12.2024): https://doi.org/10.1016/j.ejor.2010.09.003
  • Shin, J., An, S., & Song, J. (2022). Development of an augmented reality based underground facility management system using BIM information. Journal of Korean Tunnelling and Underground Space Association, 24(6), 525–538. Access Address (01.12.2024): https://doi.org/10.9711/KTAJ.2022.24.6.525
  • Son, S., Lee, G., Jung, J., Kim, J., & Jeon, K. (2022). Automated generation of a model view definition from an information delivery manual using idmXSD and buildingSMART data dictionary. Advanced Engineering Informatics, 54, 101731. Access Address (01.12.2024): https://doi.org/10.1016/j.aei.2022.101731
  • Spiridigliozzi, G., De Santoli, L., Cornaro, C., Basso, G. Lo, & Barati, S. (2019). BIM tools interoperability for designing energy-efficient buildings. AIP Conference Proceedings, 2191(1), 020140. Access Address (01.12.2024): https://doi.org/10.1063/1.5138873
  • Visio. (2024). Microsoft Visio. Access Address (01.12.2024): https://www.microsoft.com/tr-tr/microsoft- 365/visio/flowchart-software
  • Weber, B., Niederländer, A., Diersch, K., & Lehmann, M. (2023). Datenteilen im Bauprozess. In Data Governance: Nachhaltige Geschäftsmodelle und Technologien im europäischen Rechtsrahmen (pp. 389–408). Springer. Access Address (01.12.2024): https://doi.org/10.1007/978-3-662-67556-4
  • Wildenauer, A. A., & Basl, J. (2021). Unlocking the full potential of building information modelling by applying the principles of industry 4.0 and data governance such as COBIT. EG-ICE 2021 Workshop on Intelligent Computing in Engineering; Universitätsverlag Der TU Berlin: Berlin, Germany, 118–134. Access Address (01.12.2024): https://books.google.com.tr/books? hl=tr&lr=&id=5mJMEAAAQBAJ&oi=fnd&pg=PA118&dq=Wildenauer,+A.+A.,+%26+Basl,+J.+ (2021).+Unlocking+the+full+potential+of+building+information+modelling+by+applying+the+principles+of+in dustry+4.0+and+data+governance+such+as+COBIT.+EG- ICE+2021+Workshop+on+Intelligent+Computing+in+Engineering%3B+Universitätsverlag+Der+TU+Berlin:+Berlin, +Germany,+118–134.+&ots=WkpHZOdADW&sig=- D8uGDfVpR8x92vnJpEuFQTH5jU&redir_esc=y#v=onepage&q&f=false
  • Wu, L., Lu, W., Xue, F., Li, X., Zhao, R., & Tang, M. (2022). Linking permissioned blockchain to Internet of Things (IoT)- BIM platform for off-site production management in modular construction. Computers in Industry, 135, 103573. Access Address (01.12.2024): https://doi.org/10.1016/j.compind.2021.103573

Analyzing the Impact of ISO 16739-1:2024 (Industry Foundation Classes, IFC) on Data Sharing and Building Information Modeling (BIM) Collaboration in the Construction Industry

Year 2025, Volume: 10 Issue: 1, 157 - 174, 28.07.2025
https://doi.org/10.30785/mbud.1609588

Abstract

This study conducts a comprehensive analysis of ISO 16739-1:2024 (Industry Foundation Classes, IFC) within the context of Building Information Modeling (BIM) in the construction industry. By addressing six fundamental characteristics-key components, policy and regulatory impact, future outlook, benefits, challenges, and implementations-it evaluates the standard's role in enhancing data interoperability, efficiency, and collaboration. The findings highlight ISO 16739-1:2024’s capacity to unify construction processes, improve decision-making, and promote sustainable practices through standardized data exchange. However, technical challenges, training requirements, and resistance to change remain barriers to its widespread adoption. Using case studies and systematic methodologies, this research emphasizes the standard’s transformative potential and offers actionable recommendations to address implementation challenges. This study contributes significantly to academic literature and industry by bridging gaps in data sharing and fostering innovation in construction project management.

References

  • Brandenburger, Y., Weise, F., & Steinbach, S. (2021). DigiLearnBIM – Digitale Transformation in der Bildung. In Kompetenzen für die digitale Transformation 2020 (pp. 357–380). Springer Berlin Heidelberg. Access Address (01.12.2024): https://doi.org/10.1007/978-3-662-62866-9_25
  • buildingSMART. (2024). Global IFC Mandates 2024 Edition: A playbook of IFC Mandates from around the world. BuildingSMART International. Access Address (01.12.2024): https://www.buildingsmart.org/wp- content/uploads/2024/10/IFC-Mandate-Final-1.pdf#page=3.00
  • Cassandro, J., Donatiello, M. G., Mirarchi, C., Zanchetta, C., & Pavan, A. (2023). Reliability of IFC classes in ontology definition and cost estimation of public procurement. In Conference: 2023 European Conference on Computing in Construction and the 40th International CIB W78 Conference (pp. 1-9). nHeraklion, Crete, Greece. Access Address (01.12.2024): https://re.public.polimi.it/bitstream/11311/1256381/1/EC3_RELIABILITY%20 OF%20IFC%20CLASSES%20IN%20ONTOLOGY%20DEFINITION%20AND%20C OST%20ESTIMATION%20OF%20PUBLIC%20PROCUREMENT.pdf
  • Clemen, C. (2022). Trends in BIM and GIS standardization – report from the joint ISO/TC59/SC13–ISO/TC211 WG: GIS-BIM. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVI-5/W1-, 51–58. Access Address (01.12.2024): https://doi.org/10.5194/isprs-archives-XLVI-5-W1-2022-51-2022
  • Dallı, M., & Soyluk, A. (2024). Damage catalogue software and the role of architecture & architects: a comprehensive review. Mimarlık Bilimleri ve Uygulamaları Dergisi (MBUD), 9(Special Issue), 22–40. Access Address (01.12.2024): https://doi.org/10.30785/mbud.1317394
  • Eremenco, S. L., Cella, D., & Arnold, B. J. (2005). A comprehensive method for the translation and cross-cultural validation of health status questionnaires. Evaluation & the Health Professions, 28(2), 212– 232. Access Address (01.12.2024): https://doi.org/10.1177/0163278705275342
  • Guidi, L., Inghirami, G., Masiello, G., Antonucci, D., & Lucia, P. (2022). MICA (Monitoring Internal Comfort Application):: A new BIM tool processing IEQ data input for building management and energetic optimizations. In Challenging Glass Conference Proceedings (Vol. 8). Access Address (01.12.2024): https://doi.org/10.47982/cgc.8.399
  • Honti, R., Erdélyi, J., Bariczová, G., Funtík, T., & Mayer, P. (2020). Automated verification of building components using bim models and point clouds. Slovak Journal of Civil Engineering, 28(3), 13–19. Access Address (01.12.2024): https://doi.org/10.2478/sjce-2020-0019
  • ISO/PAS16739. (2005). ISO/PAS 16739:2005 industry foundation classes, release 2x, platform specification (IFC2x platform) withdrawn (edition 1, 2005). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/38056.html
  • ISO/TC184. (1983). ISO/TC 184 technical committee automation systems and integration. ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/committee/54110.html
  • ISO/TC184/SC4. (1984). ISO/TC 184/SC 4 technical committee industrial data. ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/committee/54158.html
  • ISO16739. (2013). ISO 16739:2013 industry foundation classes (IFC) for data sharing in the construction and facility management industries withdrawn (edition 1, 2013). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/51622.html
  • ISO16739-1. (2018). ISO 16739-1:2018 industry foundation classes (IFC) for data sharing in the construction and facility management industries part 1: data schema withdrawn (edition 1, 2018). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/70303.html
  • ISO16739-1. (2024). ISO 16739-1:2024 industry foundation classes (IFC) for data sharing in the construction and facility management industries part 1: data schema published (edition 2, 2024). ISO - International Organization for Standardization. Access Address (01.12.2024): https://www.iso.org/standard/84123.html
  • Jarar Oulidi, H., & Hajji, R. (2021). Open BIM standards. in building information modeling for a smart and sustainable urban space (pp. 63–76). Wiley. Access Address (01.12.2024): https://doi.org/10.1002/9781119885474.ch4
  • Juraboev, A. (2022). Implementierung des Internet of Things auf Basis von Radio-Frequency Identification in das Building Information Modeling. Proceedings of 33. Forum Bauinformatik. Access Address (01.12.2024): https://mediatum.ub.tum.de/doc/1688408/document.pdf
  • Juszczyk, A. (2022). BIM in the construction process – selected problems at the stage of implementation in Polish road engineering. Archives of Civil Engineering, 623–633. Access Address (01.12.2024): https://doi.org/10.24425/ace.2022.140190
  • Kalkan, M., & Türker, H. B. (2023). Exploring the resilience of natural disasters: a comprehensive bibliometric analysis. Mimarlık Bilimleri ve Uygulamaları Dergisi (MBUD), 8(Special Issue), 26–41. Access Address (01.12.2024): https://doi.org/10.30785/mbud.1335211
  • Karlapudi, J. & Menzel, K. (2020, September). Analysis on automatic generation of BEPS models from BIM model. In BauSim Conference 2020 (Vol. 8, pp. 535-542). IBPSA-Germany and Austria. Access Address (01.12.2024): https://doi.org/10.3217/978-3-85125-786-1-64
  • Karlapudi, J., Valluru, P., & Menzel, K. (2022). Ontology approach for building life cycle data management. Computing in Civil Engineering 2021, 737–744. Access Address (01.12.2024): https://doi.org/10.1061/9780784483893.091
  • Karmakar, A., & Delhi, V. S. K. (2023). Restructuring elements in IFC topology through semantic enrichment: a case of automated compliance checking. ISARC. Proceedings of the International Symposium on Automation and Robotics in Construction, 40, 458–465. Access Address (01.12.2024): https://doi.org/10.22260/ISARC2023/0062
  • Kokkos, A. (2010). Transformative learning through aesthetic experience. Journal of Transformative Education, 8(3), 155–177. Access Address (01.12.2024): https://doi.org/10.1177/1541344610397663
  • Lyu, M. R., Jiqiang Song, & Min Cai. (2005). A comprehensive method for multilingual video text detection, localization, and extraction. IEEE Transactions on Circuits and Systems for Video Technology, 15(2), 243–255. Access Address (01.12.2024): https://doi.org/10.1109/TCSVT.2004.841653
  • Makisha, E. (2019). RuleML-based mechanism of building information models verification. E3S Web of Conferences, 132, 01014. doi: https://doi.org/10.1051/e3sconf/201913201014
  • Napkin. (2024). Napkin AI. Access Address (01.12.2024): https://www.napkin.ai
  • Panteli, C., Kylili, A. & Fokaides, P. A. (2020). Building information modelling applications in smart buildings: From design to commissioning and beyond critical review. Journal of Cleaner Production, 265, 121766. Access Address (01.12.2024): https://doi.org/10.1016/j.jclepro.2020.121766
  • Peng, Z. (2020). An operation and maintenance strategy of intelligent building information model data based on cloud computing. Ingénierie Des Systèmes d Information, 25(4), 461–467. Access Address (01.12.2024): https://doi.org/10.18280/isi.250408
  • Pili, A. (2019). BIM process, ontologies and interchange platform for cultural architectural heritage management: state of art and development perspectives. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-2/W11, 969–973. Access Address (01.12.2024): https://doi.org/10.5194/isprs-archives-XLII-2-W11-969-2019
  • Ramlakhan, R., Kalogianni, E., van Oosterom, P., & Atazadeh, B. (2023). Modelling the legal spaces of 3D underground objects in 3D land administration systems. Land Use Policy, 127, 106537. Access Address (01.12.2024): https://doi.org/10.1016/j.landusepol.2023.106537
  • Sabaa, S., Moscati, A., Jansson, T., & Johansson, P. (2024). Towards a harmonized information exchange in the construction industry: an approach using modular ontology modelling and loin. 41st International Conference of CIB W78, Marrakech, Morocco, 2-3 October. Access Address (01.12.2024): https://itc.scix.net/pdfs/w78-2024- paper_66.pdf
  • Schaffernicht, M., & Groesser, S. N. (2011). A comprehensive method for comparing mental models of dynamic systems. European Journal of Operational Research, 210(1), 57–67. Access Address (01.12.2024): https://doi.org/10.1016/j.ejor.2010.09.003
  • Shin, J., An, S., & Song, J. (2022). Development of an augmented reality based underground facility management system using BIM information. Journal of Korean Tunnelling and Underground Space Association, 24(6), 525–538. Access Address (01.12.2024): https://doi.org/10.9711/KTAJ.2022.24.6.525
  • Son, S., Lee, G., Jung, J., Kim, J., & Jeon, K. (2022). Automated generation of a model view definition from an information delivery manual using idmXSD and buildingSMART data dictionary. Advanced Engineering Informatics, 54, 101731. Access Address (01.12.2024): https://doi.org/10.1016/j.aei.2022.101731
  • Spiridigliozzi, G., De Santoli, L., Cornaro, C., Basso, G. Lo, & Barati, S. (2019). BIM tools interoperability for designing energy-efficient buildings. AIP Conference Proceedings, 2191(1), 020140. Access Address (01.12.2024): https://doi.org/10.1063/1.5138873
  • Visio. (2024). Microsoft Visio. Access Address (01.12.2024): https://www.microsoft.com/tr-tr/microsoft- 365/visio/flowchart-software
  • Weber, B., Niederländer, A., Diersch, K., & Lehmann, M. (2023). Datenteilen im Bauprozess. In Data Governance: Nachhaltige Geschäftsmodelle und Technologien im europäischen Rechtsrahmen (pp. 389–408). Springer. Access Address (01.12.2024): https://doi.org/10.1007/978-3-662-67556-4
  • Wildenauer, A. A., & Basl, J. (2021). Unlocking the full potential of building information modelling by applying the principles of industry 4.0 and data governance such as COBIT. EG-ICE 2021 Workshop on Intelligent Computing in Engineering; Universitätsverlag Der TU Berlin: Berlin, Germany, 118–134. Access Address (01.12.2024): https://books.google.com.tr/books? hl=tr&lr=&id=5mJMEAAAQBAJ&oi=fnd&pg=PA118&dq=Wildenauer,+A.+A.,+%26+Basl,+J.+ (2021).+Unlocking+the+full+potential+of+building+information+modelling+by+applying+the+principles+of+in dustry+4.0+and+data+governance+such+as+COBIT.+EG- ICE+2021+Workshop+on+Intelligent+Computing+in+Engineering%3B+Universitätsverlag+Der+TU+Berlin:+Berlin, +Germany,+118–134.+&ots=WkpHZOdADW&sig=- D8uGDfVpR8x92vnJpEuFQTH5jU&redir_esc=y#v=onepage&q&f=false
  • Wu, L., Lu, W., Xue, F., Li, X., Zhao, R., & Tang, M. (2022). Linking permissioned blockchain to Internet of Things (IoT)- BIM platform for off-site production management in modular construction. Computers in Industry, 135, 103573. Access Address (01.12.2024): https://doi.org/10.1016/j.compind.2021.103573
There are 38 citations in total.

Details

Primary Language English
Subjects Building Information Modelling and Management, Automation and Technology in Building and Construction
Journal Section Research Articles
Authors

Murat Aydın 0000-0002-3928-2936

Publication Date July 28, 2025
Submission Date December 29, 2024
Acceptance Date April 8, 2025
Published in Issue Year 2025 Volume: 10 Issue: 1

Cite

APA Aydın, M. (2025). Analyzing the Impact of ISO 16739-1:2024 (Industry Foundation Classes, IFC) on Data Sharing and Building Information Modeling (BIM) Collaboration in the Construction Industry. Journal of Architectural Sciences and Applications, 10(1), 157-174. https://doi.org/10.30785/mbud.1609588