Minimal-waste design of timber layouts from non-standard reclaimed elements: A combinatorial approach based on structural reciprocity

Author:

Parigi Dario1ORCID

Affiliation:

1. Department of the Built Environment, Aalborg University, Aalborg, Denmark

Abstract

The use of timber allows reducing the environmental impact in the construction sector. However, as the demand for construction timber rises, the pressure on the world’s forest is increasing too. To maintain an adequate supply of timber from sustainable forests in the coming decades, the building industry must adopt practices that reduce the impact on forestry. Reuse is one of the principles of Circular Economy (CE). Among the technical challenges of reuse are the variability and the short size of the stock of elements coming either from demolition or from new construction, such as cut-offs and temporary scaffolding. This work presents a study for the design of structural configurations with short and non-regular sized elements that would normally be considered waste. The configurations are based on the principle of structural reciprocity and are generated by an optimization algorithm that allows minimizing the material waste and maximizing the stock elements use. A computational strategy based on the SPEA-II multi-objective method is employed for the investigation of optimal trade-offs between competing objective functions, such as structural lightness and optimal use of stock inventory. The goal of this work is demonstrating the feasibility of an industrial process, borrowing key elements from the Industry 4.0 paradigm, for a streamlined and economical production of standardized building components using non-standard reclaimed elements.

Publisher

SAGE Publications

Subject

Building and Construction,Architecture,Civil and Structural Engineering,Conservation

Reference17 articles.

1. Avoided impact quantification from recycling of wood waste in Singapore: an assessment of pallet made from technical wood versus virgin softwood

2. Transforming the bio-based sector towards a circular economy - What can we learn from wood cascading?

3. Rambøll (2020). Circular economy in construction - analysis of potentials for increased reuse and recycling of construction waste (original title in Danish: Cirkulær økonomi i byggeriet– analyse afpotentialer ved øgetgenbrug og genanvendelse af byggeaffald. https://backend.orbit.dtu.dk/ws/portalfiles/portal/218271061/2020_Cirkul_r_konomi_i_byggeriet_Prim_r_rapport.pdf

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