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Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia

Decommissioning of the offshore platform as an artificial reef, known as Rigs-to-Reefs (R2R), has become a sustainable approach for oil companies. The platform was reused to serve the underwater ecosystem as an artificial reef for a new marine ecosystem which helps to tackle food security issue. Thi...

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Autores principales: Mohd, Mohd Hairil, Rahman, Mohd Asamudin A., Nazri, Muhammad Nadzrin, Tan, Chun Hong, Mohamad, Yuzwan, Lim, Chuin Siew, Mustapa, Baharim, Shaari, Hasrizal, Hii, Yii Siang, Kim, Do Kyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7673954/
https://www.ncbi.nlm.nih.gov/pubmed/33223970
http://dx.doi.org/10.1155/2020/4695894
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author Mohd, Mohd Hairil
Rahman, Mohd Asamudin A.
Nazri, Muhammad Nadzrin
Tan, Chun Hong
Mohamad, Yuzwan
Lim, Chuin Siew
Mustapa, Baharim
Shaari, Hasrizal
Hii, Yii Siang
Kim, Do Kyun
author_facet Mohd, Mohd Hairil
Rahman, Mohd Asamudin A.
Nazri, Muhammad Nadzrin
Tan, Chun Hong
Mohamad, Yuzwan
Lim, Chuin Siew
Mustapa, Baharim
Shaari, Hasrizal
Hii, Yii Siang
Kim, Do Kyun
author_sort Mohd, Mohd Hairil
collection PubMed
description Decommissioning of the offshore platform as an artificial reef, known as Rigs-to-Reefs (R2R), has become a sustainable approach for oil companies. The platform was reused to serve the underwater ecosystem as an artificial reef for a new marine ecosystem which helps to tackle food security issue. This paper presents the findings of the formulation of the reefing viability index to recognize an offshore region that can be used for R2R projects within the South China Sea. The combined effects of spatial data, numerical modelling, and geographic system (GIS) are proposed to study the relationship of spawning ground coral reefs, diversity, and planula larvae in the process of colonization to establish a map of the reef potential environment. Coral connectivity and spawning behaviour were studied to determine the possible source of coral seedling released during the spawning season, twice a year. A geographic reef viability index was established consisting of seven parameters which are coral larval density, pelagic larval length, sea currents, temperature, chlorophyll-a, depth, and substrate availability. The ocean hydrodynamic model was designed to resemble the pattern of larval scattering. By using the simulations and rankings, there were 95 (21%) sites which could probably be used for in situ reefing, whereas 358 (79%) sites were likely ideal for ex situ reefing. Validation of the viability index was carried out using media footage assessment of remotely operated vehicle (ROV).
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spelling pubmed-76739542020-11-19 Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia Mohd, Mohd Hairil Rahman, Mohd Asamudin A. Nazri, Muhammad Nadzrin Tan, Chun Hong Mohamad, Yuzwan Lim, Chuin Siew Mustapa, Baharim Shaari, Hasrizal Hii, Yii Siang Kim, Do Kyun ScientificWorldJournal Research Article Decommissioning of the offshore platform as an artificial reef, known as Rigs-to-Reefs (R2R), has become a sustainable approach for oil companies. The platform was reused to serve the underwater ecosystem as an artificial reef for a new marine ecosystem which helps to tackle food security issue. This paper presents the findings of the formulation of the reefing viability index to recognize an offshore region that can be used for R2R projects within the South China Sea. The combined effects of spatial data, numerical modelling, and geographic system (GIS) are proposed to study the relationship of spawning ground coral reefs, diversity, and planula larvae in the process of colonization to establish a map of the reef potential environment. Coral connectivity and spawning behaviour were studied to determine the possible source of coral seedling released during the spawning season, twice a year. A geographic reef viability index was established consisting of seven parameters which are coral larval density, pelagic larval length, sea currents, temperature, chlorophyll-a, depth, and substrate availability. The ocean hydrodynamic model was designed to resemble the pattern of larval scattering. By using the simulations and rankings, there were 95 (21%) sites which could probably be used for in situ reefing, whereas 358 (79%) sites were likely ideal for ex situ reefing. Validation of the viability index was carried out using media footage assessment of remotely operated vehicle (ROV). Hindawi 2020-10-21 /pmc/articles/PMC7673954/ /pubmed/33223970 http://dx.doi.org/10.1155/2020/4695894 Text en Copyright © 2020 Mohd Hairil Mohd et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Mohd, Mohd Hairil
Rahman, Mohd Asamudin A.
Nazri, Muhammad Nadzrin
Tan, Chun Hong
Mohamad, Yuzwan
Lim, Chuin Siew
Mustapa, Baharim
Shaari, Hasrizal
Hii, Yii Siang
Kim, Do Kyun
Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia
title Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia
title_full Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia
title_fullStr Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia
title_full_unstemmed Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia
title_short Reefing Viability Index for Rigs-to-Reefs (R2R) in Malaysia
title_sort reefing viability index for rigs-to-reefs (r2r) in malaysia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7673954/
https://www.ncbi.nlm.nih.gov/pubmed/33223970
http://dx.doi.org/10.1155/2020/4695894
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