Allam, A; Elbeltagi, E; Abouelsaad, M N and E. El Madawy, M (2026) Integrated BIM-GA approach for slab formwork design optimization. Construction Innovation, 26(2), pp. 631-651. ISSN 1471-4175
Abstract
Purpose – Formwork design and construction for reinforced concrete buildings take significant time, effort and money. Construction procedures are time-consuming for designers and costly for the contractor. Poor engineering decisions have led to several workplace accidents in the construction industry. This paper aims to present an integrated building information modeling – genetic algorithm (BIM-GA) model to automate formwork design, 3D visualization and optimization. Design/methodology/approach – Data are precisely extracted from a 3D structural model and used to optimize formwork design based on available formwork components and prices. Optimization models are made using GA approach. A library of 3D formwork components was modeled and stored using Revit. The optimized design solution thereafter would be visualized automatically in Revit to readily acquire formwork quantities schedules and shop drawings. Findings – A case study illustrating the proposed approach demonstrated that using BIM will reduce formwork design, quantification and drawing time by more than 50% of the traditional approach with safer design and accurate results due to process automation and optimize cost for the given data. Originality/value – This research introduces an innovative integrated BIM and GA model for the optimization and automation of slab formwork design, which has significantly benefited the construction industry. The utilization of GA in the optimization process allows for the attainment of an optimal formwork design, ultimately leading to a reduction in construction cost and time.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | automation; BIM; formwork design; genetic algorithm; optimization |
| Index terms: | genetic algorithm, drawing, reinforced concrete, methodology, design optimization, 3D visualization, case study, building information modelling, quantification, designer, construction cost, formwork, design and construction, automation, construction industry |
| Subjects: | profession, data collection methods, financial and cost management, technical documentation, building materials, industry analysis, information systems, measurement and scaling, contractual arrangements, visualization, automation and robotics, design process, research methods, algorithms, building construction |
| Topics: | Design Practice, Digital Applications, Roles and Professions, Construction Technology, Cost Management, Research Practice, Construction Materials, Procurement |
| Descriptive scope: | 5 PCTEA |
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