A projection of the Canadian population shows that in 2024 one in five Canadians will be over 65 years old. This shift forces designers to consider the entire lifetime of occupants during the design of new buildings. Universal Design (UD), which is a design that accommodates all people to the greatest extent possible and aging in place design that is deeply rooted in the principles of UD, aim to house people irrespective of their age, ability, and chronic health conditions. Building Information Modeling (BIM) significantly helps advanc e the development of the Architecture, Engineering, and Construction (AEC) industry in a more collaborative and automated way. Integrating BIM and UD allows designers to incorporate UD standards easily and efficiently at the conceptual design stage of buildings by using the functionalities and capabilities of BIM tools. Therefore, this study presents the development of an automated computer model to facilitate the adoption of UD standards and processes. The novelty highlighted in this model resides in the creation of an automated method that employs a newly created plug-in and databases to assist designers to incorporate UD standards at the conceptual stage in a timely and cost-effective manner. Furthermore, the study introduces the methodology consisting of collecting, categorizing, and storing data from various universal design and accessible design guidelines in the developed databases and developing new plug-ins in BIM tool to link the developed databases in order to automate the process of retrieving necessary information and components to help designers and owners select optimal design alternatives based on their predefined criteria.
KeywordsBuilding Information Modeling (BIM)Universal DesignAccessible DesignAging in PlaceComputer Integration and Automation
Statistics Canada (2015) Canada’s s Population Estimates: Age and Sex, July 1, 2015. The Daily, September 29, 1-5. http://www.statcan.gc.ca/daily-quotidien/150929/dq150929b-eng.htm
Globe Newswire (2020) Aging in Place Report Reveals 86% of Urban Canadian Baby Boomers/Older Adult Homeowners Want to Live in Their Homes for as Long as Possible. Globe Newswire, March 4, 2020. https://www.globenewswire.com/news-release/2020/03/04/1994809/0/en/Aging-in-Place-Report-Reveals-86-of-Urban-Canadian-Baby-Boomers-Older-Adult-Homeowners-Want-to-Live-in-their-Homes-for-as-Long-as-Possible.html
Government of Ontario (2021) Long-Term Care Homes|COVID-19 (Coronavirus) in Ontario. https://covid-19.ontario.ca/data/long-term-care-homes
Alsayyar, B. and Jrade, A. (2015) Integrating Building Information Modeling (BIM) with Sustainable Universal Design Strategies to Evaluate the Costs and Benefits of Building Projects. Proceeding Conference, International Construction Specialty Conference of the Canadian Society for Civil Engineering (ICSC) (5th: 2015).
Bianco, L. (2020) Universal Design: From Design Philosophy to Applied Science. Journal of Accessibility and Design for All, 10, 70-97.
Nygaard, K.M. (2018) What Is Universal Design—Theories, Terms and Trends. IFLA WLIC 2018, Kuala Lumpur, 26 August 2018, 1-6. https://library.ifla.org/id/eprint/2250
Andersson, J. (2011) Architecture for the Silver Generation: Exploring the Meaning of Appropriate Space for Ageing in a Swedish Municipality. Health & Place, 17, 572-587. https://doi.org/10.1016/j.healthplace.2010.12.015
Wu, W. and Handziuk, E. (2013) Use of Building Information Modeling in Aging-in-Place Projects: A Proof of Concept. Proceedings of the 2013 ASCE International Workshop on Computing in Civil Engineering, Los Angeles, 23-25 June 2013, 443-450. https://doi.org/10.1061/9780784413029.056
McCunn, L.J. and Gifford, R. (2014) Accessibility and Aging in Place in Subsidized Housing. Seniors Housing & Care Journal, 22, 18-29.
Ahrentzen, S. and Tural, E. (2015) The Role of Building Design and Interiors in Ageing Actively at Home. Building Research and Information, 43, 582-601. https://doi.org/10.1080/09613218.2015.1056336
Government of Canada (2015) Thinking about Your Future? Plan Now to Age in Place. https://www.canada.ca/en/employment-social-development/corporate/seniors/forum/aging-checklist.html
Petersson, I., Lilja, M., Hammel, J. and Kottorp, A. (2008) Impact of Home Modification Services on Ability in Everyday Life for People Ageing with Disabilities. Journal of Rehabilitation Medicine, 40, 253-260. https://doi.org/10.2340/16501977-0160
Iecovich, E. (2014) Aging in Place: From Theory to Practice. Anthropological Notebooks, 20, 21-32.
Liu, S.Y. and Lapane, K.L. (2009) Residential Modifications and Decline in Physical Function among Community-Dwelling Older Adults. Gerontologist, 49, 344-354. https://doi.org/10.1093/geront/gnp033
Jalaei, F., Jrade, A. and Nassiri, M. (2015) Integrating Decision Support System (DSS) and Building Information Modeling (BIM) to Optimize the Selection of Sustainable Building Components. Journal of Information Technology in Construction, 20, 399-420.
Wu, W. and Kaushik, I. (2015) A BIM-Based Educational Gaming Prototype for Undergraduate Research and Education in Design for Sustainable Aging. 2015 Winter Simulation Conference (WSC), Huntington Beach, 6-9 December 2015, 1091-1102. https://doi.org/10.1109/WSC.2015.7408236
Jrade, A. and Jalaei, F. (2014) Using Building Information Modeling to Evaluate the Costs and Benefits of Adopting Sustainable Universal Houses in Canada. International Journal of 3D Information Modeling, 3, 56-76. https://doi.org/10.4018/ij3dim.2014100104
Jrade, A. and Valdez, P.Z. (2012) Integrating Building Information Modeling with Universal Design Requirements for High Accessible Homes. Construction Challenges in a Flat World, Proceedings of the 2012 Construction Research Congress, West Lafayette, 21-23 May 2012, 1291-1300. https://doi.org/10.1061/9780784412329.130
Mustaquim, M.M. (2015) A Study of Universal Design in Everyday Life of Elderly Adults. Procedia Computer Science, 67, 57-66. https://doi.org/10.1016/j.procs.2015.09.249
Kadir, S.A. and Jamaludin, M. (2013) Universal Design as a Significant Component for Sustainable Life and Social Development. Procedia—Social and Behavioral Sciences, 85, 179-190. https://doi.org/10.1016/j.sbspro.2013.08.349
Iwarsson, S. and Ståhl, A. (2003) Accessibility, Usability and Universal Design— Positioning and Definition of Concepts Describing Person-Environment Relationships. Disability and Rehabilitation, 25, 57-66. https://doi.org/10.1080/dre.25.2.57.66
Watchorn, V., Hitch, D., Grant, C., Tucker, R., Aedy, K., Ang, S. and Frawley, P. (2021) An Integrated Literature Review of the Current Discourse around Universal Design in the Built Environment—Is Occupation the Missing Link? Disability and Rehabilitation, 43, 1-12. https://doi.org/10.1080/09638288.2019.1612471
Persson, H., Åhman, H., Yngling, A.A. and Gulliksen, J. (2015) Universal Design, Inclusive Design, Accessible Design, Design for All: Different Concepts—One Goal? On the Concept of Accessibility—Historical, Methodological and Philosophical Aspects. Universal Access in the Information Society, 14, 505-526. https://doi.org/10.1007/s10209-014-0358-z
Carr, K., Weir, P.L., Azar, D. and Azar, N.R. (2013) Universal Design: A Step toward Successful Aging. Journal of Aging Research, 2013, Article ID: 324624. https://doi.org/10.1155/2013/324624
Canadian Human Rights Commission (2006) International Best Practices in Universal Design: A Global Review. https://www.chrc-ccdp.gc.ca/en/resources/publications/international-best-practices-universal-design-a-global-review
CSA (2020) A Canadian Roadmap for Accessibility Standards. Canadian Standards Association, Toronto. https://www.csagroup.org/article/research/a-canadian-roadmap-for-accessibility-standards
CNRC (2015) National Building Code of Canada 2015. Volume 1, Issued by the Canadian Commission on Building and Fire Codes, National Research Council of Canada, Ottawa. https://nrc-publications.canada.ca/eng/view/object/?id=c8876272-9028-4358-9b42-6974ba258d99
Nwadike and Wilkinson, S. (2020) Challenges Facing Building Code Compliance in New Zealand. International Journal of Construction Management, 22, 2493-2503.
Soliman-Junior, J., Tzortzopoulos, P. and Kagioglou, M. (2022) Designers’ Perspective on the Use of Automation to Support Regulatory Compliance in Healthcare Building Projects. Construction Management and Economics, 40, 123-141. https://doi.org/10.1080/01446193.2021.2022176
Sampaio, A.Z. (2017) 4D/BIM Model Linked to VR Technology. Proceedings of the Virtual Reality International Conference, Laval, 22-24 March 2017, 1-4. https://doi.org/10.1145/3110292.3110298
Ding, L., Zhou, Y. and Akinci, B. (2014) Building Information Modeling (BIM) Application Framework: The Process of Expanding from 3D to Computable nD. Automation in Construction, 46, 82-93. https://doi.org/10.1016/j.autcon.2014.04.009
Wu, T.H., Wu, F., Liang, C.J., Li, Y.F., Tseng, C.M. and Kang, S.C. (2019) A Virtual Reality Tool for Training in Global Engineering Collaboration. Universal Access in the Information Society, 18, 243-255. https://doi.org/10.1007/s10209-017-0594-0
Antwi-Afari, M.F., Li, H., Pärn, E.A. and Edwards, D.J. (2018) Critical Success Factors for Implementing Building Information Modelling (BIM): A Longitudinal Review. Automation in Construction, 91, 100-110. https://doi.org/10.1016/j.autcon.2018.03.010
Kamel, E. and Memari, A.M. (2018) Review of BIM’s Application in Energy Simulation: Tools, Issues, and Solutions. Automation in Construction, 9, 164-180. https://doi.org/10.1016/j.autcon.2018.11.008
Abanda, F.H., Vidalakis, C., Oti, A.H. and Tah, J.H.M. (2015) A Critical Analysis of Building Information Modelling Systems Used in Construction Projects. Advances in Engineering Software, 90, 183-201. https://doi.org/10.1016/j.advengsoft.2015.08.009
Zhang, F., Chan, A.P.C., Darko, A. and Li, D. (2021) BIM-Enabled Multi-Level Assessment of Age-Friendliness of Urban Housing Based on Multiscale Spatial Framework: Enlightenments of Housing Support for “Aging-in-Place.” Sustainable Cities and Society, 72, Article ID: 103039. https://doi.org/10.1016/j.scs.2021.103039
Jalaei, F., Jalaei, F. and Mohammadi, S. (2020) An Integrated BIM-LEED Application to Automate Sustainable Design Assessment Framework at the Conceptual Stage of Building Projects. Sustainable Cities and Society, 53, Article ID: 101979. https://doi.org/10.1016/j.scs.2019.101979
Cheng, J.C.P. and Das, M. (2014) A BIM-Based Web Service Framework for Green Building Energy Simulation and Code Checking. Journal of Information Technology in Construction, 19, 150-168. https://www.itcon.org/2014/8
Choi, J. and Kim, I. (2017) A Methodology of Building Code Checking System for Building Permission Based on openBIM. 2017 Proceedings of the 34rd ISARC, Taipei, 28 June-1 July 2017, 945-950. https://doi.org/10.22260/ISARC2017/0131
Kincelova, K., Boton, C., Blanchet, P. and Dagenais, C. (2020) Fire Safety in Tall Timber Building: A BIM-Based Automated Code-Checking Approach. Buildings (Basel), 10, Article No. 121. https://doi.org/10.3390/buildings10070121
Patlakas, P., Livingstone, A., Hairstans, R. and Neighbour, G. (2018) Automatic Code Compliance with Multi-Dimensional Data Fitting in a BIM Context. Advanced Engineering Informatics, 38, 216-231. https://doi.org/10.1016/j.aei.2018.07.002
Narayanswamy, Liu, H. and Al-Hussein, M. (2019) BIM-Based Automated Design Checking for Building Permit in the Light-Frame Building Industry. Proceedings of the International Symposium on Automation and Robotics in Construction, Banff, 21-24 May 2019, 1042-1049. https://doi.org/10.22260/ISARC2019/0139
Häußler, M., Esser, S. and Borrmann, A. (2021) Code Compliance Checking of Railway Designs by Integrating BIM, BPMN and DMN. Automation in Construction, 121, Article ID: 103427. https://doi.org/10.1016/j.autcon.2020.103427
Khattra, S.K., Rai, H.S. and Singh, J. (2022) Towards Automated Structural Stability Design of Buildings—A BIM-Based Solution. Buildings (Basel), 12, Article No. 451. https://doi.org/10.3390/buildings12040451
Türkyılmaz, E. (2016) A Method to Analyze the Living Spaces of Wheelchair Users Using IFC. Procedia—Social and Behavioral Sciences, 222, 458-464. https://doi.org/10.1016/j.sbspro.2016.05.136