FORM-FINDING

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Bibliography

Charest, P. et al. (2019) ‘Patchwork Gridshells: Using Modularity to Facilitate Prefabrication and Simplify Construction’, Journal of the International Association for Shell and Spatial Structures, 60(3), pp. 176–188. doi: 10.20898/j.iass.2019.201.025.
Pone, S. et al. (2013) ‘Construction and form-finding of a post-formed timber grid-shell’, Structures and Architecture. Edited by P. Cruz, pp. 245–252. doi: 10.1201/b15267-32.
Bouhaya, L. (2010) Optimisation structurelle des gridshells.
‘PARTICLE-SPRING METHOD FOR FORM FINDING GRID SHELL STRUCTURES CONSISTING OF FLEXIBLE MEMBERS’ (2011).
Goldbach, A.-K. et al. (2020) ‘CAD-Integrated Parametric Lightweight Design With Isogeometric B-Rep Analysis’, Frontiers in Built Environment, 6, p. 44. doi: 10.3389/fbuil.2020.00044.
Naicu, D., Harris, R. and Williams, C. (2014) ‘TIMBER GRIDSHELLS: DESIGN METHODS AND THEIR APPLICATION TO A TEMPORARY PAVILION’, p. 10.
Paoli, C. (no date) ‘Past and Future of Grid Shell Structures’, p. 63.
Peloux, L. D. et al. (no date) ‘From shape to shell: a design tool to materialize freeform shapes using gridshell structures’, p. 11.
Liuti, A. and Pugnale, A. (no date) ‘Erection of post-formed gridshells by means of inflatable membrane technology’, p. 10.
Liuti, A. (2017) ‘The Airshell prototype: a timber gridshell erected through a pneumatic formwork’, p. 11.
Labonnote, N. et al. (no date) ‘EXPERIMENTAL AND NUMERICAL STUDY OF THE STRUCTURAL PERFORMANCE OF A TIMBER GRIDSHELL’, p. 9.
Harris, R. and Roynon, J. (no date) ‘The Savill Garden Gridshell Design and Construction’, p. 7.
Edemskaya, E. and Agkathidis, A. (2016) ‘Rethinking Complexity: Vladimir Shukhov’s Steel Lattice Structures’, Journal of the International Association for Shell and Spatial Structures, 57(3), pp. 201–208. doi: 10.20898/j.iass.2016.189.806.
Dyvik, S. H. et al. (2016) ‘Modular kinematic timber gridshell; a simple scheme for constructing advanced shapes’, p. 11.
du Peloux, L. et al. (2016) ‘Construction of a Large Composite Gridshell Structure: A Lightweight Structure Made with Pultruded Glass Fibre Reinforced Polymer Tubes’, Structural Engineering International, 26(2), pp. 160–167. doi: 10.2749/101686616X14555428758885.
D’Amico, B., Kermani, A. and Zhang, H. (2014) ‘A FORM FINDING METHOD FOR POST FORMED TIMBER GRID SHELL STRUCTURES’. doi: 10.13140/2.1.3949.8888.
Collins, M. and Cosgrove, T. (2016) ‘Considerations for the Design of Bending Active Timber Gridshells’, p. 7.
Li, J.-M., Universität Stuttgart and Institut für Tragkonstruktionen und Konstruktives Entwerfen (2017) Timber Shell Structures Form-finding and structural analysis of actively bent grid shells.
POULSEN, E. (2015) Structural design and analysis of elastically bent gridshells.
da Sousa, P. (ed.) (2016) ‘Specialised algorithms for different project stages in a postformed timber gridshell design’. doi: 10.1201/b20891.
Dragos-Iulian Naicu (2012) Geometry and Performance of Timber Gridshells.
M.H. Toussaint (2007) A Design Tool for Timber Gridshells.
Bertin, T. B. (2013) Evaluating the Use of Particle-Spring Systems in the Conceptual Design of Grid Shell Structures.
Vaulot, L. K.-L. (2016) Form-Finding of Elastic Gridshells.
Mesnil, R. (2013) Stability of Elastic Grid Shells.
D’Amico, B. (2015) Timber Grid-shell Structures: form-finding, analysis and optimisation.
TANG, G. (2017) The Novel Use of Deployable and Actively-Bent Gridshells as Reusable, Reconfigurable and Intuitive Concrete Shell Formwork.
Knippers, J. (no date) ‘Form-finding of grid shells with continuous elastic rods’, p. 7.
D’Amico, B., Kermani, A. and Zhang, H. (2014) ‘Form finding and structural analysis of actively bent timber grid shells’, Engineering Structures, pp. 195–207. Available at: https://linkinghub.elsevier.com/retrieve/pii/S014102961400580X (Accessed: 16 April 2020).
Tareq Alzawawi et al. (2015) ‘GRIDSHELL RESEARCH’.
‘Parametric Form Finding in Contemporary Architecture’ (no date).
Wendland, D. (no date) ‘MODEL-BASED FORMFINDING PROCESSES: FREE FORMS IN STRUCTURAL AND ARCHITECTURAL DESIGN’, p. 12.
Raj, R. P. and Guest, S. D. (2006) ‘USING SYMMETRY FOR TENSEGRITY FORM-FINDING’, JOURNAL OF THE INTERNATIONAL ASSOCIATION FOR SHELL AND SPATIAL STRUCTURES, 47(3), p. 8.
Ingold, L. and Rinke, M. (no date) ‘SERGIO MUSMECI’S SEARCH FOR NEW FORMS OF CONCRETE STRUCTURES’, p. 8.
Harding, J. and Shepherd, P. (no date) ‘Structural Form Finding using Zero-Length Springs with Dynamic Mass’, p. 8.
Bletzinger, K.-U. (no date) ‘FORMFINDING AND OPTIMIZATION’, p. 28.

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