Scripting Errors: A taxonomy of architectural bodies' deviations as a response to uncertainty and infinite future scenarios

Adilenidou, Y. 2019. Scripting Errors: A taxonomy of architectural bodies' deviations as a response to uncertainty and infinite future scenarios. PhD thesis UCL (University College London)

TitleScripting Errors: A taxonomy of architectural bodies' deviations as a response to uncertainty and infinite future scenarios
TypePhD thesis
AuthorsAdilenidou, Y.
Abstract

This design research focuses on the importance of error in the evolution of form and the logic of matter distribution describing its relationship to randomness and repetitive behaviour. While considering error as the path and the necessity for optimization, the question that arises is whether we can invent a process for creating an error system as a response to maximum efficiency and variation in architectural design, implemented in structure, fabrication, and formal investigation. How can we construct things when all is possible/uncertain in the future by planning a malleable present of various scales built elements that are able to adjust, adapt, and co-inhabit their environment? Through an analogy to the development process of an embryo into a full figure, and using computation and Cellular Automata systems as a model of growth and matter distribution combining randomness with finite data, a series of experiments establish a taxonomy of architectural bodies’ deviations and morphological errors. This results in a toolbox system that can be applied in various scales and conditions according to the parameters specified, providing alterations to body form and varied possibilities for interaction with the context—environment and other bodies—while responding to uncertainty and infinite future scenarios. Different body typologies are created starting from linear structural elements continuing to space dividers and larger surface components providing detail intensity, perforation, and lighting. Their proliferation guided through assemblage sets of differential grids leads to the build-up of big span structures and edifices such as a cathedral, drawing a reference to the detail resolution and the sculpting methodologies of the Gothic architecture and Gaudi’s Sagrada Familia. The research results are communicated through drawings, 3D visualizations, and fabrication prototypes, such as, one to one 3D printed components/tiles and finally a large-scale robotic 3D Concrete printed column prototype.

Year2019
Publication dates
Published28 Dec 2019
Web address (URL)https://discovery.ucl.ac.uk/id/eprint/10087925

Related outputs

Text to Matter_Text to Fabrication: Training Incorporeal Materials
Adilenidou, Y. 2026. Text to Matter_Text to Fabrication: Training Incorporeal Materials. in: Agkathidis, A., Hudert, M. and Medel-Vera, C. (ed.) Architecture in the AI Era for Research, Practice, and Pedagogy Springer Nature. pp. 23-30

Augmented (mate)Reality: Exploring hybrid materials from machine learning to physical production
Boccaletti, S. and Adilenidou, Y. 2024. Augmented (mate)Reality: Exploring hybrid materials from machine learning to physical production. SiGraDi_2024: biodigital_intelligent_systems. Barcelona, Spain 13 - 15 Nov 2024 Sociedad Iberoamericana de Gráfica Digital (SIGraDi).

The Machinic Ecology of Concrete
Yota Adilenidou 2023. The Machinic Ecology of Concrete. (AHRA) International Conference: The Machinic Ecology of Concrete. University of Portsmouth, UK 25 - 27 Oct 2023

IntraGothic XS to XL From microLab to macroCity
Yota Adilenidou 2022. IntraGothic XS to XL From microLab to macroCity. TRAITS of Postdigital Neobarogue Conference. Obergurgl, Austria 07 - 09 Dec 2022

Unprintable Forms: Complexity as a Robustness Factor for Robotic Fabrication and 3DCP Constraints through Error Elimination and Reinsertion
Adilenidou, Y., Zeeshan Yunus Ahmed, Freek Bos, Marjan Colletti, Kory Bieg, Danelle Briscoe and Clay Odom 2019. Unprintable Forms: Complexity as a Robustness Factor for Robotic Fabrication and 3DCP Constraints through Error Elimination and Reinsertion. 39th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA). The University of Texas at Austin School of Architecture, Austin, Texas 21 - 26 Oct 2019 CUMINCAD. https://doi.org/10.52842/conf.acadia.2019.168

Beginnings_City of Culture Galicia
Adilenidou, Y. 2016. Beginnings_City of Culture Galicia. Domes International Review of Architecture.

Error as Optimization: Using Cellular Automata Systems to Introduce Bias in Aggregation Models through Multigrids
Adilenidou, Y., Bob Martens, Gabriel Wurzer, Thomas Grasl, Wolfgang E Lorenz, Richard Schaffranek and T U Wien Faculty of Architecture and Urban Planning 2015. Error as Optimization: Using Cellular Automata Systems to Introduce Bias in Aggregation Models through Multigrids. 33rd International Conference on Education and research in Computer aided Architectural Design in Europe, eCAADe 2015. Vienna, Austria 16 - 18 Sep 2015 eCAADe (Education and research in Computer Aided Architectural Design in Europe). https://doi.org/10.52842/conf.ecaade.2015.2.601

The Geometry of the Error
Adilenidou, Y. 2014. The Geometry of the Error. in: Advances in Architectural Geometry 2014 Springer. pp. 337-351

Belgrade Designing Growth
Nikos Kalogirou, Stavros Vergopoulos and Adilenidou, Y. 2009. Belgrade Designing Growth. A.U.Th. / Papasotiriou Publications.

{+αθρ(0)ίσεις / synathr(0)isis}
Adilenidou, Y. and Sophia Vyzoviti 2008. {+αθρ(0)ίσεις / synathr(0)isis}. Papasotiriou Publications/TCG/SCM.

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