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AuthorBruno, Welter Giraldes
AuthorWuppukondur, Ananth
AuthorAl-Mohannadi, Hamad S.
AuthorBashir, Khalid
AuthorAbdulla, Maryam
AuthorGiraldes, Eduardo W.
AuthorHeally, Sam
AuthorMello, Eduardo
AuthorMathew, Dinesh
AuthorRange, Pedro
AuthorMohammed, Aboobacker V.
AuthorVethamony, Ponnumony
AuthorBaldock, Tom
Available date2024-04-29T04:59:17Z
Publication Date2023-11-01
Publication NameOcean Engineering
Identifierhttp://dx.doi.org/10.1016/j.oceaneng.2023.115850
ISSN00298018
URIhttps://www.sciencedirect.com/science/article/pii/S0029801823022345
URIhttp://hdl.handle.net/10576/54349
AbstractIn this study, laboratory and in situ experiments were performed to assess the stability of the Mushroom Forest Artificial Reef (MFAR) against the hydrodynamic forces of waves and currents and its functionality to avoid sedimentation. Physical modelling was performed in wave flume (waves only) and a long channel (currents only) with a smooth flat bed and a sediment bed. The results illustrated the positive and negative aspects, and then some modifications were made to the in situ experiments. A total of 130 prototype units were produced and deployed at an offshore site in the Arabian Gulf. Sediment traps were installed at the top and base of the mushroom units, and underwater visual assessments were performed to evaluate the stability and sediment behaviour around the studied reefs. The results demonstrated the stability of the units under hydrodynamic loading, with meagre resistance to current displacement (drag forces), with high stability (95% remained vertical), with horizontal vortices leading the sedimentation patterns, and with 46 times less sedimentation at the top than at the base. Thus encouraging coral growth at the mushroom's top with fewer sedimentation risks. In conclusion, MFAR was validated as a blue engineering technology despite some limitations.
Languageen
PublisherElsevier
SubjectMushroom forest artificial reef
Subsea construction
Blue engineering
Environmental compensation
Physical modelling
R&D
Technology improvement
TitleEnhancing subsea asset performance: Investigating the biomimetic functionality of the Mushroom Reef design in hydrodynamics, stability, and sedimentation
TypeArticle
Issue Number2
Volume Number287
Open Access user License http://creativecommons.org/licenses/by/4.0/
ESSN1873-5258


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