CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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_id caadria2010_053
id caadria2010_053
authors Doumpioti, C.
year 2010
title Fibre composite systems: stress as growth-promoting agent
doi https://doi.org/10.52842/conf.caadria.2010.575
source Proceedings of the 15th International Conference on Computer Aided Architectural Design Research in Asia / Hong Kong 7-10 April 2010, pp. 575-584
summary The main intention of this paper is to propose a theoretical framework for an integrated design methodology which incorporates natural morhogenetic principles for the realisation of fibre composite structures. Stress, in these processes, becomes the driving force of shape modification and fibre articulation, while the material thresholds become a driver of generative evolution. The inferences and results of such an approach will be looked into using a case study of a composite monocoque shell bridge design.
series CAADRIA
email
last changed 2022/06/07 07:55

_id acadia10_258
id acadia10_258
authors Doumpioti, Christina; Greenberg, Evan L.; Karatzas, Konstantinos
year 2010
title Embedded Intelligence: Material Responsiveness in Façade Systems
doi https://doi.org/10.52842/conf.acadia.2010.258
source ACADIA 10: LIFE in:formation, On Responsive Information and Variations in Architecture [Proceedings of the 30th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 978-1-4507-3471-4] New York 21-24 October, 2010), pp. 258-262
summary This paper presents recent research for new mechanical systems and façade designs that are able to respond to environmental changes through local interactions, inspired by biological systems. These are based on a model of distributed intelligence founded on insect and animal collectives, from which intelligent behavior emerges through simple local associations. Biological collective systems integrate material form and responsiveness and have the potential to inform new architectural and engineering strategies. The proposed façade system uses integrated sensors and actuators that moderate their local environments through simple interactions with their immediate neighbors. Computational techniques coupled to manufacturing methods and material logics create an integral design framework leading to heterogeneous environmental and structural conditions, producing local responses to environmental stimuli, and ultimately, effective performance of the whole system.
series ACADIA
type normal paper
email
last changed 2022/06/07 07:55

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