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Parametric design and geometric optimization for deployable domes based on the icosahedron frequency with hexagonal modules

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10.52842/conf.ecaade.2024.1.411
 
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hdl:2117/420587

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Avellaneda, O. F.Més informacióMés informacióMés informació
Christodoulou, MarilenaMés informacióMés informacióMés informació
Mendoza Ramos, Marisela
Document typeConference report
Defense date2024
Rights accessRestricted access - publisher's policy
All rights reserved. This work is protected by the corresponding intellectual and industrial property rights. Without prejudice to any existing legal exemptions, reproduction, distribution, public communication or transformation of this work are prohibited without permission of the copyright holder
Abstract
The systems of deployable structures domes with straight bars are directly related to the geometry of solids. They are lightweight, modular, and transformable systems. This research relates to the design of deployable structures with articulated straight bars, with the purpose of being habitable and offering a solution to the light and traditional architecture. In particular, it refers to the design of deployable domes with articulated straight bars, starting from the transformation of the icosahedron using deployable hexagonal modules. With the possibility of changing its scale when increasing its frequency. In addition, has aims at a parametric design method for deployable domes or shells with straight bars of equal articulated dimension, stabilized with a flexible or rigid architectural covering. The process is defined as quick assembly. The optimization method employed is based on transforming the icosahedron and varying its frequencies. The process consists of optimizing deployable hexagonal modules with bars of equal length following geodesic patterns. Using visual programming algorithms using Rhinoceros + Grasshopper, geometric optimization results are achieved with deployable hexagonal modules applied to different dome frequencies. The system offers efficient solutions to temporary shelters, portable greenhouses, scenarios for medium and large-scale events, and everything related to light and transformable architecture.
CitationAvellaneda, O.F.; Christodoulou, M.; Mendoza, M. Parametric design and geometric optimization for deployable domes based on the icosahedron frequency with hexagonal modules. A: International Conference on Education and Research in Computer Aided Architectural Design in Europe. "eCAADe 42nd Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe 2024), Nicosia, 11-13 September 2024, Volume 1, pp. 411–420". 2024, p. 411-420. ISBN 9789491207372. DOI 10.52842/conf.ecaade.2024.1.411 . 
URIhttp://hdl.handle.net/2117/420587
DOI10.52842/conf.ecaade.2024.1.411
DLD/2024/14982/01
ISBN9789491207372
Publisher versionhttps://papers.cumincad.org/
Other identifiershttps://papers.cumincad.org/cgi-bin/works/paper/ecaade2024_298
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  • Departament de Representació Arquitectònica - Ponències/Comunicacions de congressos [98]
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