Considerations on the programmed functional life (one generation) of a green artificial reef in terms of the sustainability of the modified ecosystem

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Considerations on the programmed functional life (one generation) of a green artificial reef in terms of the sustainability of the modified ecosystemAuthor(s)
Date
2023-04Citation
L. Carral, J. Tarrío-Saavedra, J.J. Cartelle Barros, C.C. Fabal, A. Ramil, C. Álvarez-Feal, Considerations on the programmed functional life (one generation) of a green artificial reef in terms of the sustainability of the modified ecosystem, Heliyon 9 (2023) e14978. https://doi.org/10.1016/j.heliyon.2023.e14978
Abstract
[Abstract] The installation of artificial reefs serves to enhance marine ecosystems, although it also modifies them. These changes do not have to be irreversible, since it is possible to treat the functional life of an artificial reef (AR) as a variable factor to be determined, with the objective of contributing to the sustainability of the ecosystem.
The quest for sustainability does not end with the manufacture and installation of the AR units. It is also necessary to analyse the sustainability of the modified ecosystem, through the production of services. This leads to consider the medium-term return of the ecosystem to its initial state, once the functional life of the ARs expires.
This paper presents and justifies an AR design/composition for limited functional life. It is the result of acting on the base material, the concrete, with the objective of limiting the useful life to one social generation. Four different dosages were proposed for such a purpose. They were subjected to mechanical tests (compressive strength and absorption after immersion), including an innovative abrasion-resistant one. The results allow estimating the functional life of the four types of concrete from the design variables (density, compactness, and quantity of water and cement as well as its relation). To this end linear regression models and clustering techniques were applied. The described procedure leads to an AR design for limited functional life.
Keywords
Artificial reef
Sustainability ecosystem
Reversible process concept
Design for limited functional life
Linear regression model
Sustainability ecosystem
Reversible process concept
Design for limited functional life
Linear regression model
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CC BY-NC-ND Attribution-NonCommercial-NoDerivs 4.0 International license
ISSN
2405-8440