id |
caadria2013_256 |
authors |
De Oliveira Barata, Eduardo; Dirk Anderson and Dagmar Reinhardt |
year |
2013 |
title |
A Minimal Tension Canopy – Through Investigations of Self-Organised Systems |
doi |
https://doi.org/10.52842/conf.caadria.2013.147
|
source |
Open Systems: Proceedings of the 18th International Conference on Computer-Aided Architectural Design Research in Asia (CAADRIA 2013) / Singapore 15-18 May 2013, pp. 147-156 |
wos |
WOS:000351496100015 |
summary |
The dynamics of a physics-based algorithm which acquires its complex organization through a number of localised interactions applied over a prescribed network can be described as a self-organised system. This in turn has the capacity to define explicit form and space based upon behavioural computational processes with an embedded structural logic. This paper discusses the way in which physics based algorithms can be used to inform the organisation of a compressional structure in a case study. Its structure is based on Hooke’s law of elasticity; which establishes a three dimensional catenary logic through a number of localised interactions applied over an entire network. This is applied to a project with specific constraints to site, boundary conditions and maximising solar gain whilst maintaining structural rigidity. The methodological approach describes the design to assembly process in which the project has been developed. This includes the applied generative design tools in order to establish the self-organised logic, the form finding process, the techniques of design documentation, the fabrication process and the logistics of construction and assembly. |
keywords |
Digital fabrication and construction, Generative, Parametric, Simulation |
series |
CAADRIA |
email |
|
full text |
file.pdf (6,631,542 bytes) |
references |
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2022/06/07 07:55 |