References
- (2008). Ordinance on health and safety on temporary and mobile construction sites. In: Republic of Croatia (ed.) NN 51/2008. Official Gazette.
- 92/57/EEC (1992). Directive 92/57/EEC on the implementation of minimum safety and health requirements at temporary or mobile construction sites. In: The Council Of The European Communities (ed.). Brussels: The Council of the European Communities.
- Azhar, S. & Behringer, A. (2013). A BIM-based approach for communicating and implementing a construction site safety plan. Proceedings of the 49th ASC Annual International Conference.
- Bansal, V. K. (2011). Application of geographic information systems in construction safety planning. International Journal of Project Management, 29, pp. 66–77.
- Benjaoran, V., & Bhokha, S. (2010). An integrated safety management with construction management using 4D Cad model. Safety Science, 48, pp. 395–403.
- British Standards Institution. (2018a). PAS 1192-6:2018 Specification for collaborative sharing and use of structured Health and Safety information using BIM [Online]. BSI. [Accessed 14.11. 2018].
- British Standards Institution (2018b). Specification for collaborative sharing and use of structured Health and Safety information using BIM. BSI.
- Carter, G., & Smith, S. D. (2006). Safety Hazard Identification on Construction Projects. Journal of Construction Engineering and Management, 132, pp. 197–205.
- Chan King, C., Heng, L., & Martin, S. (2012). The use of virtual prototyping for hazard identification in the early design stage. Construction Innovation, 12, pp. 29–42.
- Chen, A., Golparvar-Fard, M., & Kleiner, B. (2013). Design and Development of Saves: A Construction Safety Training Augmented Virtuality Environment for Hazard Recognition and Severity Identification. Computing in Civil Engineering. American Society of Civil Engineers, Reston.
- Chen, A., Golparvar-Fard, M., & Kleiner, B. (2014). Saves: An Augmented Virtuality Strategy for Training Construction Hazard Recognition. Construction Research Congress 2014. American Society of Civil Engineers, Reston.
- Cheng, M.-Y., Ko, C.-H., & Chang, C.-H. (2002). Computer-aided DSS for safety monitoring of geotechnical construction. Automation in Construction, 11, pp. 375–390.
- Cheung, S. O., Cheung, K. K. W., & Suen, H. C. H. (2004). CSHM: Web-based safety and health monitoring system for construction management. Journal of Safety Research, 35, pp. 159–170.
- Chi, S., Hampson, K., & Biggs, H. (2012). Using BIM for smarter and safer scaffolding and formwork construction: a preliminary methodology. Modelling and Building Health.
- Choi, B., Lee, H., Park, M., Cho, Y., & Kim, H. (2014). Framework for work-space planning using four-dimensional BIM in construction projects. Journal of Construction Engineering and Management, 140, p. 04014041.
- Clevenger, C., Lopez Del Puerto, C. & Glick, S. (2014). Developing a BIM-enabled Bilingual Safety Training Module for the Construction Industry. Construction Research Congress 2014. American Society of Civil Engineers.
- Collins, R., Zhang, S., Kim, K. & Teizer, J. (2014). Integration of Safety Risk Factors in BIM for Scaffolding Construction. Computing in Civil and Building Engineering. American Society of Civil Engineers.
- Cooke, T., Lingard, H., Blismas, N., & Stranieri, A. (2008). ToolSHeDTM: The development and evaluation of a decision support tool for health and safety in construction design. Engineering, Construction and Architectural Management, 15, pp. 336–351.
- Dharmapalan, V., Gambatese, J., Fradella, J., & Moghaddam Vahed, A. (2014). Quantification and assessment of safety risk in the design of multistory buildings. Journal of Construction Engineering and Management, 141, p. 04014090.
- Eastman, C., Lee, J.-M., Jeong, Y.-S., & Lee, J.-K. (2009). Automatic rule-based checking of building designs. Automation in Construction, 18, pp. 1011–1033.
- Eastman, C., Teicholz, P., Sacks, R., & Liston, K. (2008). BIM Handbook: A Guide to Building Information Modeling for Owners, Managers, Designers, Engineers and Contractors. Wiley Publishing, Hoboken.
- Eurostat (2015). Accidents at Work Statistics. Eurostat.
- Gambatese, J., Hinze, J., & Haas, C. (1997). Tool to design for construction worker safety. Journal of Architectural Engineering, 3, pp. 32–41.
- Gilkinson, N., Raju, P., Kiviniemi, A., & Chapman, C. (2015). Building information modelling: the tide is turning. Proceedings of the Institution of Civil Engineers - Structures and Buildings, 168, pp. 81–93.
- Golovina, O., Teizer, J., & Pradhananga, N. (2016). Heat map generation for predictive safety planning: Preventing struck-by and near miss interactions between workers-on-foot and construction equipment. Automation in Construction, 71, pp. 99–115.
- Guo, H., Liu, W., Zhang, W. & Skitmor, M. (2014). A BIM-RFID Unsafe On-Site Behavior Warning System. Iccrem 2014@ sSmart.
- Guo, H. L., Li, H., & Li, V. (2013). VP-based safety management in large-scale construction projects: A conceptual framework. Automation in Construction, 34, pp. 16–24.
- Hadikusumo, B., & Rowlinson, S. (2004). Capturing safety knowledge using design-for-safety-process tool. Journal of Construction Engineering and Management, 130, pp. 281–289.
- Hadikusumo, B. H. W., & Rowlinson, S. (2002). Integration of virtually real construction model and design-for-safety-process database. Automation in Construction, 11, pp. 501–509.
- Hallowell, M., & Gambatese, J. (2009). Activity-based safety risk quantification for concrete formwork construction. Journal of Construction Engineering and Management, 135, pp. 990–998.
- Hasan, S., Zaman, H., Han, S., Al-Hussein, M. & Su, Y. (2012). Integrated Building Information Model to Identify Possible Crane Instability Caused by Strong Winds. Construction Research Congress 2012. American Society of Civil Engineers.
- Hayne, G., Kumar, B. & Hare, B. (2014). The Development of a Framework for a Design for Safety BIM Tool. Computing in Civil and Building Engineering (2014). American Society of Civil Engineers.
- Jannadi, O., & Almishari, S. (2003). Risk assessment in construction. Journal of Construction Engineering and Management, 129, pp. 492–500.
- Kamardeen, I. (2010). 8D BIM modelling tool for accident prevention through design. 26th Annual Arcom Conference, Leeds, Association of Researchers in Construction Management, 281–289.
- Kim, H. & Ahn, H. (2011). Temporary facility planning of a construction project using BIM (Building Information Modeling). Computing in Civil Engineering (2011). American Society of Civil Engineers.
- Kim, H., Lee, H.-S., Park, M., Chung, B., & Hwang, S. (2016). Automated hazardous area identification using laborers’ actual and optimal routes. Automation in Construction, 65, pp. 21–32.
- Kim, H., Lee, H., Park, M., Chung, B., & Hwang, S. (2013). Information retrieval framework for hazard identification in construction. Journal of Computing in Civil Engineering, 29, p. 04014052.
- Kim, K. & Cho, Y. (2015). BIM-Based Planning of Temporary Structures for Construction Safety. Computing in Civil Engineering 2015. American Society of Civil Engineers.
- Kim, K., & Teizer, J. (2014). Automatic design and planning of scaffolding systems using building information modeling. Advanced Engineering Informatics, 28, pp. 66–80.
- Lin, K.-Y., Son, J. W., & Rojas, E. M. (2011). A pilot study of a 3D game environment for construction safety education. Journal of Information Technology in Construction, 16, pp. 69–83.
- Malekitabar, H., Ardeshir, A., Sebt, M. H., & Stouffs, R. (2016). Construction safety risk drivers: A BIM approach. Safety Science, 82, pp. 445–455.
- Mallasi, Z. (2006). Dynamic quantification and analysis of the construction workspace congestion utilising 4D visualisation. Automation in Construction, 15, pp. 640–655.
- Melzner, J., Zhang, S., Teizer, J., & Bargstädt, H.-J. (2013). A case study on automated safety compliance checking to assist fall protection design and planning in building information models. Construction Management and Economics, 31, pp. 661–674.
- Mihić, M. (2018). Incorporation of Health and Safety into Building Information Modelling through Hazard Integration System. PhD thesis, University of Zagreb Faculty of Civil Engineering.
- Mihić, M., Cerić, A., & Završki, I. (2018). Developing construction hazard database for automated hazard identification process. Technical Gazette, 25, pp. 1761–1769.
- NBIMS V.3 (2015). National BIM Standard - United States Version 3. National Institute of Building Sciences buildingSMART alliance.
- NNC Limited. (2003). The development of a knowledge based system to deliver health and safety information to designers in the construction industry. Research Report 173. Health & Safety Executive, Norwich, UK.
- Park, C.-S., & Kim, H.-J. (2013). A framework for construction safety management and visualization system. Automation in Construction, 33, pp. 95–103.
- Perlman, A., Sacks, R., & Barak, R. (2014). Hazard recognition and risk perception in construction. Safety Science, 64, pp. 22–31.
- Qi, J. 2011. Integration of Construction Worker Fall Safety in Design through the Use of Building Information Modeling. PhD, University of Florida.
- Qi, J., Issa, R., Hinze, J. & Olbina, S. 2011. Integration of Safety in Design through the Use of Building Information Modeling. Computing in Civil Engineering (2011). American Society of Civil Engineers.
- Qi, J., Issa, R., Olbina, S., & Hinze, J. (2013). Use of building information modeling in design to prevent construction worker falls. Journal of Computing in Civil Engineering, 28, p. A4014008.
- Riaz, Z., Arslan, M., Kiani, A. K., & Azhar, S. (2014). CoSMoS: a BIM and wireless sensor based integrated solution for worker safety in confined spaces. Automation in Construction, 45, pp. 96–106.
- Riaz, Z., Arslan, M. & Peña-Mora, F. (2015). Challenges in Data Management When Monitoring Confined Spaces Using BIM and Wireless Sensor Technology. Computing in Civil Engineering 2015. American Society of Civil Engineers.
- Rozenfeld, O., Sacks, R., & Rosenfeld, Y. (2009). ‘CHASTE’: construction hazard assessment with spatial and temporal exposure. Construction Management and Economics, 27, pp. 625–638.
- Rozenfeld, O., Sacks, R., Rosenfeld, Y., & Baum, H. (2010). Construction job safety analysis. Safety Science, 48, pp. 491–498.
- Ruff, T. (2007). Recommendations for Evaluating and Implementing Proximity Warning Systems on Surface Mining Equipment. National Institute for Occupational Safety and Health, Spokane, WA.
- Sacks, R., Perlman, A., & Barak, R. (2013). Construction safety training using immersive virtual reality. Construction Management and Economics, 31, pp. 1005–1017.
- Sacks, R., Rozenfeld, O., & Rosenfeld, Y. (2009). Spatial and temporal exposure to safety hazards in construction. Journal of Construction Engineering and Management, 135, pp. 726–736.
- Sacks, R., Whyte, J., Swissa, D., Raviv, G., Zhou, W., & Shapira, A. (2015). Safety by design: dialogues between designers and builders using virtual reality. Construction Management and Economics, 33, pp. 55–72.
- Saurin, T. A., Formoso, C. T., & Guimarães, L. B. M. (2004). Safety and production: an integrated planning and control model. Construction Management and Economics, 22, pp. 159–169.
- Schultz, C. S. & Jørgensen, K. 2014. Integrated safety in design. In: Aulin, R. & Ek, Å. (eds.) Proceedings of Achieving Sustainable Construction Health and Safety Conference. Lund, Sweden: International Council for Research and Innovation in Building and Construction (CIB).
- Shapira, A., Simcha, M., & Goldenberg, M. (2012). Integrative model for quantitative evaluation of safety on construction sites with tower cranes. Journal of Construction Engineering and Management, 138, pp. 1281–1293.
- Soeiro, A., Vasconcelos, B. & Barkokebas, B. 2014. Prevention guide for designers based on analysis of about 2000 accidents. CIB W99.
- Solihin, W., & Eastman, C. (2015). Classification of rules for automated Bim rule checking development. Automation in Construction, 53, pp. 69–82.
- Sulankivi, K., Zhang, S., Teizer, J., et al. Utilization of Bim-based Automated Safety Checking in Construction Planning. Proceedings of the 19th International Cib World Building Congress, Brisbane Australia, 2013. 5–9.
- Taiebat, M. 2011. Tuning Up Bim for Safety Analysis Proposing modeling logics for application of Bim in DfS. Virginia Polytechnic Institute and State University.
- Teizer, J., Allread, B. S., Fullerton, C. E., & Hinze, J. (2010). Autonomous pro-active real-time construction worker and equipment operator proximity safety alert system. Automation in Construction, 19, pp. 630–640.
- Teo, A. L. E., Ofori, G., Tjandra, I. K., & Kim, H. (2016). Design for safety: theoretical framework of the safety aspect of Bim system to determine the safety index. Construction Economics and Building, 16, p. 18.
- Tixier, A. J. P., Hallowell, M. R., Rajagopalan, B., & Bowman, D. (2016). Automated content analysis for construction safety: A natural language processing system to extract precursors and outcomes from unstructured injury reports. Automation in Construction, 62, pp. 45–56.
- U.S. Bureau Of Labor Statistics (2015). National Census of Fatal Occupational Injuries in 2014. Bureau of Labor Statistics.
- Wang, H. & Boukamp, F. (2007). Leveraging Project Models for Automated Identification of Construction Safety Requirements. Computing in Civil Engineering (2007). American Society of Civil Engineers.
- Wang, J., Zhang, S., & Teizer, J. (2015). Geotechnical and safety protective equipment planning using range point cloud data and rule checking in building information modeling. Automation in Construction, 49(Part B), pp. 250–261.
- Weick, K. E. (1985). Cosmos vs. chaos: Sense and nonsense in electronic contexts. Organizational Dynamics, 14, pp. 51–64.
- Whyte, J., Sacks, R., Zhou, W. & Haffegee, A. (2013). Building safely by design - Using digital design models to improve planning for safe construction. Institution of Occupational Safety and Health.
- Workcover. (2011). Chair Safety in Design Tool. Workcover, New South Wales.
- Zhang, J. & Issa, R. (2015). Collecting Fire Evacuation Performance Data Using Bim-Based Immersive Serious Games for Performance-Based Fire Safety Design. Computing in Civil Engineering 2015. American Society of Civil Engineers.
- Zhang, S. (2014). Integrating safety and Bim: automated construction hazard identification and prevention. Doctor of Philosophy, Georgia Institute of Technology.
- Zhang, S., Boukamp, F. & Teizer, J. (2014). Ontology-Based Semantic Modeling of Safety Management Knowledge. In: Issa, R. & Flood, I. (eds.) 2014 International Conference on Computing in Civil and Building Engineering. Orlando, Florida, United States: American Society of Civil Engineers.
- Zhang, S., Boukamp, F., & Teizer, J. (2015a). Ontology-based semantic modeling of construction safety knowledge: towards automated safety planning for job hazard analysis (JHA). Automation in Construction, 52, pp. 29–41.
- Zhang, S., Sulankivi, K., Kiviniemi, M., Romo, I., Eastman, C. M., & Teizer, J. (2015b). Bim-based fall hazard identification and prevention in construction safety planning. Safety Science, 72, pp. 31–45.
- Zhang, S., Teizer, J., Lee, J.-K., Eastman, C. M., & Venugopal, M. (2013). Building information modeling (BIM) and safety: automatic safety checking of construction models and schedules. Automation in Construction, 29, pp. 183–195.
- Zhou, W., Whyte, J., & Sacks, R. (2012). Construction safety and digital design: a review. Automation in Construction, 22, pp. 102–111.
- Zhou, Y., Ding, L. Y., & Chen, L. J. (2013). Application of 4D visualization technology for safety management in metro construction. Automation in Construction, 34, pp. 25–36.
- Zhou, Z., Goh, Y. M., & Li, Q. (2015). Overview and analysis of safety management studies in the construction industry. Safety Science, 72, pp. 337–350.
- Zhu, Z., Park, M.-W., Koch, C., Soltani, M., Hammad, A., & Davari, K. (2016). Predicting movements of onsite workers and mobile equipment for enhancing construction site safety. Automation in Construction, 68, pp. 95–101.
- Zolfagharian, S., Irizarry, J., Ressang, A., Nourbakhsh, M., & Gheisari, M. (2014). Automated safety planning approach for residential construction sites in Malaysia. International Journal of Construction Management, 14, pp. 134–147.