Topology and Shape-Optimization of 3D Pre-Stressed Concrete Structures (2024-09)¶
10.1016/j.engstruct.2024.118936
Shakur Emad, Shaked Adaya,
Journal Article - Engineering Structures, Vol. 321, No. 118936
Abstract
In this paper we introduce a computational framework for optimizing 3D prestressed concrete structures. The procedure combines shape optimization of prestressing cables with topology optimization of concrete, enabling novel design configurations of 3D beams and plates. Prestressing cables are modeled as B-spline curves that are embedded within a concrete continuum and whose control points serve as design variables. Concurrently, the distribution of concrete is determined by density-based topology optimization. A special filter enforces concrete cover around the cables, creating a coupling between the two sets of design variables. The optimization problem formulation mimics the design intent of prestressed concrete structures, separating the load-balancing part with respect to permanent loads from stiffness maximization with respect to live loads. Results show that material savings exceeding 30% can be achieved compared to solid prestressed members, strengthening the argument in favor of using prestressed concrete for reducing embodied CO2. The complete implementation in MATLAB is provided as supplementary material.
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3 References
- Li Yu, Wu Hao, Xie Xinjie, Zhang Liming et al. (2024-02)
FloatArch:
A Cable-Supported, Unreinforced, and Re-Assemblable 3D Printed Concrete Structure Designed Using Multi-Material Topology-Optimization - Ooms Ticho, Vantyghem Gieljan, Tao Yaxin, Bekaert Michiel et al. (2022-06)
The Production of a Topology-Optimized 3D Printed Concrete Bridge - Vantyghem Gieljan, Corte Wouter, Shakour Emad, Amir Oded (2020-01)
3D Printing of a Post-Tensioned Concrete Girder Designed by Topology-Optimization
2 Citations
- Wan Qian, Wang Li, Huang Xiaodong, Wu Hao et al. (2025-10)
Shape Optimization Based on Isogeometric Analysis for 3D Concrete Printing:
A Design Method for Printing-Friendly Structure - Lin Wenyu, Wang Li, Li Zhijian, Bai Gang et al. (2025-06)
Multi-Scale Fabrication and Challenges in 3D Printing of Special -Shaped Concrete Structures
BibTeX
@article{shak_shak_amir.2024.TaSOo3PSCS,
author = "Emad Shakur and Adaya Shaked and Oded Amir",
title = "Topology and Shape-Optimization of 3D Pre-Stressed Concrete Structures",
doi = "10.1016/j.engstruct.2024.118936",
year = "2024",
journal = "Engineering Structures",
volume = "321",
pages = "118936",
}
Formatted Citation
E. Shakur, A. Shaked and O. Amir, “Topology and Shape-Optimization of 3D Pre-Stressed Concrete Structures”, Engineering Structures, vol. 321, p. 118936, 2024, doi: 10.1016/j.engstruct.2024.118936.
Shakur, Emad, Adaya Shaked, and Oded Amir. “Topology and Shape-Optimization of 3D Pre-Stressed Concrete Structures”. Engineering Structures 321 (2024): 118936. https://doi.org/10.1016/j.engstruct.2024.118936.