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Comparative Study of Optimal Flat Double-Layer Space Structures with Diverse Geometries through Genetic Algorithm

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posted on 2024-10-10, 05:11 authored by Yaser Shahbazi, Mahsa Abdkarimi, Farhad Ahmadnejad, Mohsen Mokhtari Kashavar, Mohammad Fotouhi, Siamak Pedrammehr
This paper investigates the structural performance of flat double-layer grids with various constitutive units, addressing a notable gap in the literature on diverse geometries. Six common types of flat double-layer grids are selected to provide a comprehensive comparison to understand their structural performance. Parametric models are built using Rhino and Grasshopper plugins. Single- and multi-objective optimization processes are conducted on the considered models to evaluate structural mass and maximum deflection. The number of constitutive units, the structural depth, and the cross-section diameter of the members are selected as design variables. The analysis reveals that the semi-octahedron upon square-grid configuration excels in minimizing structural mass and deflection. Furthermore, models lacking a full pyramid form exhibit higher deflections. Sensitivity analyses disclose the critical influence of the design variables, particularly highlighting the sensitivity of structural mass to the number of constitutive units and cross-section diameter. These findings offer valuable insights and practical design considerations for optimizing double-layer grid space structures.

History

Journal

Buildings

Volume

14

Article number

2816

Pagination

1-14

Location

Basel, Switzerland

Open access

  • Yes

ISSN

2075-5309

eISSN

2075-5309

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

Issue

9

Publisher

MDPI

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