Architecture in the digital age
proposal for a repertoire of project analysis in contemporaneity
DOI:
https://doi.org/10.46421/entac.v20i1.5898Keywords:
Project analysis., Digital architecture. , Analysis modelAbstract
Digital Architecture (DA) along with the Building Information Modeling (BIM) methodology have sparked a revolution in architectural design, enabling greater control of the process and an expansion of the formal and conceptual boundaries of project proposals. Although these practices are widely used in the field of Architecture Engineering and Construction (AEC), their theory is still in formation, partly due to the constant evolution of digital technologies. Concurrently, project analysis, which assesses the viability, risks, costs, and benefits of a project, is adapting to this new reality. In this context, this study aims to identify aspects of DA and digital design that are suitable for the development of a repertoire of project analysis for architecture conceived in a digital environment. To achieve this, an integrative review of the literature on project analysis and digital architecture was used as a methodology, resulting in a summary of the form creation process, the categorization of digital project models, and an analysis model for DA works.
References
OXMAN, R. Theory and design in the first digital age. Design Studies, v. 27, n. 3, p. 229-265, 2006.
BRASIL. Conceito BIM. Ministério dos Transportes. Departamento Nacional de Infraestrutura de Transportes. Conceito BIM. 2021.
In: GOVERNO FEDERAL (Brasil). Gov.br.
CELANI, G.; VAZ, C.; PUPO, R. Sistemas generativos de projeto: classificação e reflexão sob o ponto de vista da representação e dos
meios de produção. Revista Brasileira de Expressão Gráfica, v. 1, n. 1, 2013. p. 22-39.
SCHUMACHER, P. (2019). DIGITAL - The “Digital” in Architecture and Design. AA Files, London (76), 1–13. Acesso em: 14 ago. 2020.
CAVALCANTE, M. Maria Pitta Duarte. O projeto: diálogos da forma na orla de Maceió: edifícios verticais 1980 - 2012. 2014. Tese
(Doutorado em Arquitetura e Urbanismo). Universidade Presbiteriana Mackenzie, São Paulo, 2014. 392 f.
CHING, Francis DK. Arquitetura: forma, espaço e ordem. Bookman Editora, 2013
UNWIN, S. A Análise da Arquitetura. 3. ed. Porto Alegre: Bookman, 2013, pp. 292.
EISENMAN, P. Diez Edificios Canonicos. Barcelona: GG, 2000
GROAT, Linda N.; WANG, David. Architectural research methods. John Wiley & Sons, 2013.
CAVALCANTE, Lívia Teixeira Canuto; OLIVEIRA, Adélia Augusta Souto de. Métodos de revisão bibliográfica nos estudos científicos.
Psicol. Rev., Belo Horizonte, v. 26, n. 1, p. 83-102, abr. 2020.
OXMAN, R. Digital architecture as a challenge for design pedagogy: theory, knowledge, models and medium. Design Studies, v. 29,
Issue 2, Pages 99-120, 2008.
TOLEDO. A.M. A Arquitetura Digital e os Modelos de Geração da Forma: Representação, Concepção e Produção da Arquitetura
Contemporânea. Ímpeto, n. 6. 2016: Arquitetura e suas Reticências.
COCHRANE BRASIL. Como fazer uma Revisão Sistemática Cochrane. Cochrane Brasil. 2023.
ZARDO, P.; MUSSI, A. Q.; SILVA, J. L. da. Tecnologias digitais no processo de projeto contemporâneo: potencialidades e desafios à
profissão e à academia. Ambiente Construído, [S. l.], v. 20, n. 2, p. 425–440, 2020.
Tomczinski Novellini Brígitte, G. (2021). Projeto, padrões e tecnologia: Da linguagem de Alexander à programação e inteligência
artificial. PIXO - Revista de Arquitetura, Cidade e Contemporaneidade, 5(17).
RIEKSTINS, A. Teaching parametricism as a standard skill for architecture. Journal of Architecture and Urbanism, v. 42(1), 34–39,
KIM, K.; CHO, M. Development of the layout method for a high-rise housing complex using parametric algorithm. Journal of Asian
Architecture and Building Engineering. V.19. n.10. 01-40, 2020.
MANAVIS, A. et al. Parametric architectural design using shapes and structures. Journal of Graphic Engineering and Design, v. 13,
n. 4, p. 13–20, 2022.
ARIDAĞ, L. A Performative Research with The Eco-Parametric Architectural Design. Iconarp International J. of Architecture and
Planning, v. 9, n. 2, p. 565–583, 2021.
HENRIQUES, G. C.; FRANCO, J. M. Gridshells: integrating design with structural performance: formal and informal form finding. In:
SIGraDi 2020 23rd Conference of the Iberoamerican Society of Digital Graphics. p. 166-173, 2020
HARDING, J.; BRANDT-OLSEN, C. Biomorpher: Interactive evolution for parametric design. International Journal of Architectural
Computing, v. 16, n. 2, p. 144–163, 2018.
YU, R.; GU, N.; OSTWALD, M. Evaluating creativity in parametric design environments and geometric modelling environments.
Architectural Science Review, v. 61, n. 6, p. 443–453, 2018.
KIM, D. Y. A design methodology using prototyping based on the digital-physical models in the architectural design process.
Sustainability, v. 11, n. 16, 2019.
ZHANG, J. et al. BIM-based architectural analysis and optimization for construction 4.0 concept (a comparison). Ain Shams
Engineering Journal, v. 14, n. 6, p. 102110, 2023.
ZAVOLEAS, Y.; TAYLOR, M. From Cartesian to Topological Geometry: Challenging Flatness in Architecture. Nexus Network Journal,
v. 21, n. 1, p. 5–18, 2019.
HELM, J. BIM: vantagens e características. Archidaily. Maio de 2012.
VINICIUS, Y.; DULNIK, D. Analysis of the use of BIM platform for a residential project compatibility. Revista Técnico Científica do
CREA-PR, v. 32, p. 1–21, 2023.
CELANI, M. C. G. Beyond analysis and representation in CAD: a new computational approach to design education. Tese (Doutorado
em Arquitetura e Urbanismo) – Massachusetts Institute of Technology, Massachusetts, EUA, 2002.
SOUZA, E. Como o Design Generativo deve impactar a arquitetura? Archidaily. Junho de 2021.
AYDIN, S. et al. Assessment of Correlative Digital Drawing Features in the Design Processes of Unstructured Creativity.
Proceedings of the International Conference on Education and Research in Computer Aided Architectural Design in Europe, v. 1, n.
September, p. 231–240, 2023.
USPENSKYI, М.; NESTERENKO, V. Conditionality of Notion “Complexity” in Terminology of Contemporary Architectural Form-
Generation. Ukrainian Journal of Civil Engineering and Architecture, v. 1, n. 1 (013), p. 102–110, 2023.
STOTT, R. Serpentine Pavilion do BIG é inaugurado juntamente com outras 4 instalações temporárias. Archdaily. 08 de Junho de
IZUMI, B. Structural Concepts in Architectural Design, Models and Methods: Skandinavian-Japan Sasakawa Lectureship.
Norwegian University Of Science And Technology). Department of Architecture and Technology. Noruega, 2022.
POLO, A. Z. The Evolutionary Masterpiece: The Design Space. Viceversamagazine, no. 9, Junho de 2020.
NARESSI, A.L.M. Explicando o projeto de arquitetura por meio de maquetes: O uso da Prototipagem Rápida. Orientadora: Gabriela
Celani. 2010. Pesquisa (Iniciação Científica em Arquitetura e Urbanismo) - PIBIC, UNICAMP, 2010.
WALSH, N. P. Zaha Hadid Architects entre os selecionados para projetar nova cidade inteligente na Rússia. Archidaily. Nov. de
QUEIROZ, N.; NOME, C. Form finding e simulação para smart skins: otimização e projeto de fachadas paramétricas voltadas a
desempenho. Digitalfutures. [s.D.]
BASSANI, J. Linguagens da Arquitetura - Semântica, Sintática e Práxis. Projectare. Revista de Arquitetura e Urbanismo, n. 13, p. 27–
, 2022.
OMENA, T.H. FERREIRA, E.N.; REGES, L.; FIALHO, A.S. Os processos digitais de projeto e o ensino de arquitetura e urbanismo.
Brazilian Journal of Development, v. 6, n. 5, p. 32476-32495, 2020.
VIEIRA, D.; CALMON, J.L.; CAVALCANTE, M. C. Building Information Modeling (BIM) in Brazil’s Architecture, Engineering and
Construction (AEC) Industry: A Review and a Bibliometric Study. Journal of modern project management. v. Mai/Ago., 2017, p. 22–
, 2017.
ALWAN, Z.; ILHAN JONES, B. IFC-based embodied carbon benchmarking for early design analysis. Automation in Construction, v.
, Dez. 2021, p. 104505, 2022.