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id caadria2016_249
authors Kuma, Taichi
year 2016
title Iterative design process between physical modelling and computational simulation for pre-tensioned grid shell structure
source Living Systems and Micro-Utopias: Towards Continuous Designing, Proceedings of the 21st International Conference on Computer-Aided Architectural Design Research in Asia (CAADRIA 2016) / Melbourne 30 March–2 April 2016, pp. 249-258
doi https://doi.org/10.52842/conf.caadria.2016.249
summary Grid shell structures are widely used in many types of buildings. In this paper the author proposes a new grid shell structure, which is pre-tensioned by stretchable membrane. Through iterative process between physical modelling and computational simulation, one pavilion is finally presented as a demonstration of the architectur- al performance of this structure.
keywords Material computation; form finding; pavilion; grid shell; active bending
series CAADRIA
email
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100%; open Ahlquist, S., Menges, A. (2011) Find in CUMINCAD Behaviour-based Computational Design Methodologies , Integrative processes for force defined material structures, ACADIA 11, Banff, 82–89

100%; open Fischer, J. (2012) Find in CUMINCAD Optimizing Digital Organic Freeform Modelling for Fabrication by Using Parameterization With Glass Fibre Reinforced Plastics , Proceedings of the 30th eCAADe Conference, Prague, 181–190

100%; open Kuma, T (2014) Find in CUMINCAD Shrink Film Architecture , CAADRIA 2014, Kyoto, 181–190

100%; open Lienhard J., Alpermann H., Gengnagel C. and Knippers J. (2013) Find in CUMINCAD Active Bending, a Review on structures where bending is used as a self-formation process , International Journal of Space Structures, 28(3&4), 187–196

100%; open Menges, A. (2012) Find in CUMINCAD Material Computation: Higher Integration in Morphogenetic Design , Architectural Design, 82(2)

100%; open Otto, F. (1995) Find in CUMINCAD Finding Form: Towards an Architecture of the Minimal , Edition Axel Menges, Berlin

100%; open Piker, D. (2013) Find in CUMINCAD Kangaroo: Form Finding with Computational Physics , Architectural Design, 83(2), 136–137

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