Publication Cover
International Journal of Architectural Heritage
Conservation, Analysis, and Restoration
Volume 18, 2024 - Issue 2
1,749
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Assessment Methodology for Conservation Planning of Concrete Buildings: Ocean Swimming Pool (1960–2021) by Álvaro Siza in Portugal

, ORCID Icon, &
Pages 333-355 | Received 31 May 2022, Accepted 09 Nov 2022, Published online: 29 Nov 2022

References

  • ASTM. 2002. Standard test method for pulse velocity through concrete1. C597-02, American Society for Testing and Materials
  • Brencich, A., R. Bovolenta, V. Ghiggi, D. Pera, and P. Redaelli. 2020. Rebound hammer test: An investigation into its reliability in applications on concrete structures. Advances in Materials Science and Engineering 2020:1–11. doi:10.1155/2020/6450183.
  • Breysse, D. 2012. Nondestructive evaluation of concrete strength: An historical review and a new perspective by combining NDT methods. Construction and Building Materials 33:139–63. doi:10.1016/j.conbuildmat.2011.12.103.
  • CEN. 2000. Concrete - Part 1: Specification, performance, production and conformity. EN 206-1:2000, European Committee for Standardization
  • CEN. 2001. Metallic materials - Tensile testing - Part 1: Method of test at ambient temperature. EN 10002-1:2001, European Committee for Standardization.
  • CEN. 2012. Testing hardened concrete - Part 1: Shape, dimensions and other requirements for specimens and moulds. EN 12390-1:2012, European Committee for Standardization.
  • CEN. 2013. Testing concrete in structures - Part 2: Non-destructive testing - Determination of rebound number. EN 12504-2:2013, European Committee for Standardization.
  • CEN. 2019. Testing hardened concrete - Part 3: Compressive strength of test specimens. EN 12390-3:2019, European Committee for Standardization
  • CEN. 2020. Testing hardened concrete - Part 12: Determination of the carbonation resistance of concrete - Accelerated carbonation method. EN 12390-12:2020, European Committee for Standardization
  • Couvidat, J., C. Diliberto, E. Meux, S. Cotelle, C. Bojic, L. Izoret, and A. Lecomte. 2021. Greening effect of slag cement-based concrete: Environmental and ecotoxicological impact. Environmental Technology & Innovation 22. doi:10.1016/j.eti.2021.101467.
  • Croft, C., and S. Macdonald, eds. 2019. Concrete: Case Studies in Conservation Practice. Los Angeles: Getty Publications.
  • Di Biase, C., ed. 2009. Il degrado del calcestruzzo nell’architettura del Novecento. Santarcangelo di Romagna: Maggioli.
  • Ferrão, B. 1945. Perfis-Tipo e dimensionamento de suportes e revestimentos de alvenaria. Porto: Lopes da Silva.
  • Ferreira, T. C. 2018. Bridging planned conservation and community empowerment. In Preventive and planned conservation approaches applied to built heritage. Journal of Cultural Heritage Management and Sustainable Development, ed. K. Van Balen, S. Della Torre, F. Cardoso, and A. Vandersand, Vol. 8. 179–93. No. 2. Abingdon: Taylor and Francis. doi:10.1108/JCHMSD-05-2017-0029.
  • Ferreira, T. C. 2022. Siza Preserves Siza: Concrete conservation on the Ocean Swimming Pool (2018-2021). In Conserving Concrete/ Restaurer les Betons. Book of Extended abstracts, ed. T. C. Ferreira, and B. Gandini. Porto/ Paris: FAUP/ICOMOS France.
  • Ferreira, T. C., and E. Fernandes. 2021. Alvaro Siza’s Tectonic Shift in Leça da Palmeira: From Design to Conservation. In 16th International Docomomo Conference Tokyo Japan 2020+1. Inheritable Resilience: Sharing Values of Global Modernities. Tokyo: Docomomo.
  • Ferreira, T. C., E. Fernandes, and F. Barbosa. 2021. Construction culture between tradition and modernity: Three works by Álvaro Siza. In History of Construction Cultures, ed. J. Mscarenhas-Mateus, and A. P. Pires, 570–77. London, United Kingdom: CRC Press - Taylor & Francis Group.
  • Ferreira, T. C., and L. Urbano. 2022. No place is deserted. Álvaro Siza: Ocean Swimming Pool (1960-2021). Porto: FAUP/ Afrontamento.
  • Ganshirt, C. 2004. Piscina na praia de Leça da Palmeira. Lisbon: Blau.
  • Harboe, G., F. Espinosa de Los Monteros, S. Landi, and K. Normandin. 2021. The Cádiz Document InnovaConcrete Guidelines for the Conservation of Concrete Heritage. Cadiz: ICOMOS International.
  • ICOMOS Australia. 2013. The Burra Charter: The Australia. ICOMOS Charter for Places of Cultural Significance, ICOMOS.
  • ICOMOS France. 2018. Béton(s): Architectures en béton dans les Alpes: Restaurer les bétons, la masse et l’épiderme: Séminaire et colloque internationaux 23 & 24 nov. 2017, Grenoble. Paris: ICOMOS France.
  • ICOMOS ISC20C. 2017. Approaches to the conservation of Twentieth-Century Cultural Heritage Madrid – New Delhi document. ICOMOS ISC20C.
  • ISCARSAH. 2003. ICOMOS Charter – Principles for the analysis, Conservation and structural restoration of Architectural Heritage. Paris: ICOMOS.
  • ISO 13061-2. 2014. Physical and mechanical properties of wood - Test methods for small clear wood specimens - Part 2: Determination of density for physical and mechanical tests.
  • Kerr, J. S. 2013. Conservation plan. 7th ed. Sydney: ICOMOS Australia.
  • LNEC. 1993. Determination of the Young’s modulus in compression. Lisbon: Nacional Laboratory of Civil Engineering. (Portuguese specification E397)
  • Macdonald. 2022. Conservation (management) plans for modern heritage: Relevance, uses and challenges. In Recognising and Managing 20th Century Heritage: Current Issues and Experiences, ed. T. C. Ferreira, and S. Macdonald. Porto/ Paris: FAUP/ISC20C.
  • Macdonald, S., and A. P. Gonçalves. 2020. Conservation principles for concrete of cultural significance. Los Angeles: Getty Conservation Institute.
  • Macdonald, S., and G. Ostergren. 2011. Conserving Twentieth-Century built heritage: A bibliography. Los Angeles: Getty Conservation Institute.
  • Mota, R. 1972. Relatório de Estágio realizado sob a direção de A. Siza Vieira. Porto: ESBAP.
  • Ramos, L., M. Morais, M. Azenha, G. Masciotta, E. Pereira, T. C. Ferreira, and P. B. Lourenço. 2018. HeritageCARE: The new project for the preventive conservation of built cultural heritage in the South-West Europe. In Innovative built heritage models. Reflections on cultural heritage theories and practices, ed. K. Van Balen, and A. Vandersande, 135–45. London: CRC Press. doi:10.1201/9781351014793-16.
  • Silveira, D., A. Gonçalves, I. Flores-Colen, M. Veiga, I. Torres, and R. Rafael Travincas. 2021. Evaluation of in-service performance factors of renders based on in-situ testing techniques. Journal of Building Engineering 34:101806. doi:10.1016/j.jobe.2020.101806.
  • Siza, A., and B. Ferrão. 1967. Memória Descritiva. Processo completo do projecto, incluindo fases construídas e a construir.
  • Tosti, F., and C. Ferrante. 2020. Using ground penetrating radar methods to investigate reinforced concrete structures. surveys in Geophysics 41 (3):485–530. doi:10.1007/s10712-019-09565-5.
  • Vandesande, A., E. Verstrynge, and K. Van Balen, (Eds.). 2020. Preventive conservation - From climate and damage monitoring to a systemic and integrated approach, 1st ed. London: CRC Press. doi:10.1201/9781003004042
  • Vogler, N., P. Drabetzki, M. Lindemann, and H. Kühne. 2022. Description of the concrete carbonation process with adjusted depth-resolved thermogravimetric analysis. Journal of Thermal Analysis and Calorimetry 147 (11):6167–80. doi:10.1007/s10973-021-10966-1.