Experimental insights on biofouling growth in marine renewable structures.

Open research Europe Pub Date : 2024-06-19 eCollection Date: 2022-01-01 DOI:10.12688/openreseurope.14854.2
Pedro Almeida Vinagre, Gonçalo Fonseca, Mário Vieira
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Abstract

Background: Marine biofouling is a threat to industries working in the marine environment, representing significant costs associated with equipment impairment and loss of performance. In the Marine Renewable Energy (MRE) and other maritime sectors which operate at sea for long periods, an important aspect of biofouling is related to the type and frequency of inspections and biofouling removal procedures.

Methods: This study investigated important parameters of macrofouling ( e.g. composition, including the presence of non-indigenous species, thickness, and weight) from communities growing on samples that emulate tubular components of marine renewable devices. The trials were performed during short periods of submersion (one to eight weeks) in the seasons when the colonisation process should be most intensive (spring, summer, and autumn). Furthermore, the frictional resistance forces generated during the scraping of biofouling from those components were investigated.

Results: Overall, results provide insights on the growth rates and removal requirements of biofouling in marine components. The results show that, while biofouling growth in early colonization stages might not present great detrimental effects to wave energy components, the consequent marine corrosion (fostered by biofouling) and the settlement of non-indigenous species (NIS) should be factors of concern.

Conclusions: Performing biofouling-related maintenance activities after the peak of maximum growth and reproduction (during the warmer seasons in temperate to cold environments) is suggested to reduce the number and frequency of activities. NIS can be detected at very early stages in the colonization process, highlighting the importance of biofouling monitoring and the implementation of biosecurity risk assessment plans early in the operational stage of MRE projects.

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海洋可再生结构中生物污垢生长的实验启示。
背景:海洋生物污损对在海洋环境中工作的行业构成威胁,与设备损坏和性能损失相关的成本巨大。在海洋可再生能源(MRE)和其他长期在海上作业的海运部门,生物污损的一个重要方面与检查类型和频率以及生物污损清除程序有关:本研究调查了生长在模拟海洋可再生设备管状部件的样本上的大型污垢群落的重要参数(如成分,包括非本地物种的存在、厚度和重量)。试验是在定殖过程最密集的季节(春季、夏季和秋季)进行的短期浸没(一至八周)。此外,还研究了从这些部件上刮除生物污垢时产生的摩擦阻力:总之,研究结果提供了有关生物污垢在船舶部件中的生长速度和清除要求的见解。结果表明,虽然生物污垢在早期定殖阶段的生长可能不会对波浪能部件造成很大的不利影响,但随之而来的海洋腐蚀(由生物污垢促成)和非本地物种(NIS)的沉降应引起关注:结论:建议在最大生长和繁殖高峰期之后(温带至寒带环境中的温暖季节)开展与生物污损相关的维护活动,以减少活动的次数和频率。NIS 可在定殖过程的早期阶段检测到,这凸显了生物污损监测和在 MRE 项目运营阶段早期实施生物安全风险评估计划的重要性。
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