The increasing demand for new bridges highlights the need to digitalise bridge design and construction. In addition to the fragmented nature of the detailed design stage, where separate workflows are done for geometric modelling and finite-element analysis, the existing methods often require recreating complex bridge components from scratch due to limited interoperability and a lack of reusable parametric templates. This study presents a streamlined workflow that incorporates existing software tools such as Rhino.Inside.Revit and the SOFiSTiK–Rhinoceros interface. The proposed workflow uses Revit families of bridge components as input to simultaneously create geometric and analytical models, while maintaining the parametric control within the Revit environment. A comparative analysis with other parametric cross-section modelling methods, such as Grasshopper scripting and JavaScript object notation (JSON)-based definition, shows that only the proposed workflow supports parametricity within building information modelling (BIM) and allows for multiple configurations with lower technical barriers for use. While offering a methodological advancement for researchers by bridging parametric modelling and structural analysis within a BIM environment, the proposed workflow offers practical benefits to the practitioners, including enhanced efficiency, design reuse and improved coordination during detailed design. This approach aligns with the broader goals of digital transformation in infrastructure.
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25 August 2026
Research Article|
February 05 2026
A streamlined parametric workflow for enhanced bridge structural design and adaptability
Kantheepan Yogeeswaran
;
School of Engineering, Faculty of Applied Science,
The University of British Columbia
, Kelowna, Canada
Corresponding author Kantheepan Yogeeswaran (kantheepan.yogeeswaran@ubc.ca)
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Qian Chen
;
Qian Chen
School of Engineering, Faculty of Applied Science,
The University of British Columbia
, Kelowna, Canada
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M. Shahria Alam
;
M. Shahria Alam
School of Engineering, Faculty of Applied Science,
The University of British Columbia
, Kelowna, Canada
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Darryl Klassen
Darryl Klassen
WSP Canada
, Kelowna, Canada
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Corresponding author Kantheepan Yogeeswaran (kantheepan.yogeeswaran@ubc.ca)
Publisher: Emerald Publishing
Received:
June 25 2025
Accepted:
November 19 2025
Online ISSN: 1751-7664
Print ISSN: 1478-4637
Funding
Funding Group:
- Award Group:
- Funder(s): Natural Sciences and Engineering Research Council of Canada (NSERC) and WSP Canada
- Award Id(s): ALLRP 566761 – 21
- Funder(s):
- Funding Statement(s): The authors would like to acknowledge the contributions to this research work from both Natural Sciences and Engineering Research Council of Canada (NSERC) and WSP Canada under the Alliance grant ALLRP 566761 – 21.
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Proceedings of the Institution of Civil Engineers - Bridge Engineering (2026) 179 (4): 338–356.
Article history
Received:
June 25 2025
Accepted:
November 19 2025
Citation
Yogeeswaran K, Chen Q, Alam MS, Klassen D (2026), "A streamlined parametric workflow for enhanced bridge structural design and adaptability". Proceedings of the Institution of Civil Engineers - Bridge Engineering, Vol. 179 No. 4 pp. 338–356, doi: https://doi.org/10.1680/jbren.25.00038
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