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Reusing Timber Formwork in Building Construction

Testing, Redesign, and Socio-Economic Reflection

Dados Bibliográficos

ID22018294
AutoresArno Pronk (0000-0001-9933-4243, Eindhoven University of Technology), Stijn Brancart (0000-0002-0208-9980, Delft University of Technology), Fred Sanders (0000-0003-1180-4656)
Ano2022
Volume7
Fascículo2
Páginas81-96
Data de publicação2022-04-28
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoUrban Planning (JOURNAL)
Identificadores do periódicoISSN: 2183-7635 • E-ISSN: 2183-7635
EditoraCogitatio (PUBLISHER • PT)
DOI10.17645/up.v7i2.5117
OpenAlexW4225000147
IdiomaEN
Citações recebidas2
Referências citadas13

In 2018, the construction sector was responsible for 39% of the worldwide energy and process-related carbon dioxide emissions (Global Alliance for Buildings and Construction et al., 2019). This is partly due to the embodied carbon, which represents the carbon emissions related to building construction and material production (LETI, 2020). While zero energy buildings and zero energy renovations start to get the operational carbon down, the circular economy aims to do this by closing material loops and stimulating the reuse of discarded materials in building construction (Ellen McArthur Foundation et al., 2015). Although it is not a new phenomenon, material reuse does require a substantially different approach and is at this point not yet common in the building industry. This is especially true for load-bearing components. This article presents a pilot project for the reuse of discarded timber formwork for the construction of the façade and (load-bearing) substructure of a new house. Through this pilot case and by reflecting on a series of similar cases, it studies the remaining challenges for material reuse but also proposes and assesses redesign strategies that will allow upscaling the reuse of timber formwork. The project shows that although waste, material, and money can be saved by using reclaimed materials, it does complicate the design and construction process and, as such, does not necessarily reduce the total project budget. Moreover, for reuse to become a current practice, new design approaches and collaborations will need to be established. Finally, socio-economic factors must be considered to increase the acceptance of reclaimed materials in new building construction

Architectural engineering · Circular economy · Civil engineering · Construction waste · Embodied Energy · Formwork · Reuse · Waste management · Computer Science · Engineering · Environmental Impact and Sustainability · Sustainable Building Design and Assessment · Sustainable Supply Chain Management

  • Challenges of Energy Renovation

    Open Access•Tineke van der Schoor, Fred Sanders•Urban Planning•2022

  • Robust modeling of material flows to end‐uses under uncertainty

    Open Access•R L Anspach, Stephen Allen et al.•Journal of Industrial Ecology•2024

  • Socio-economic and environmental barriers for a holistic asset lifecycle approach to achieve circular economy

    Open Access•Rabia Charef, Eshmaiel Ganjian et al.•Technological Forecasting and…•2021

Obras citantes distintas2
Citações por ano0,5
Intervalo de citações2022 - 2024 (3)
Velocidade de citaçãorecent
Altamente citadoNão
Tipos de citaçãoNeutras: 2
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