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Innovative monitoring strategies for multifunctional artificial reefs

机译:多功能人工珊瑚礁的创新监测策略

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This paper is focused on topic of exploration structural health monitoring which serve for several purposes. However, optimization of design and construction of MFARs considering civil and environmental engineering means is poorly investigated. The aim of this paper is to describe define structural monitoring capabilities which were implemented to creation of Multifunctional artificial reefs (MFAR). Prospective reef will be capable to perform as a potential tool for marine biodiversity restoration and rehabilitation, coastal protection to prevent erosion of a shore line and a scientific platform with various sensors able to self-monitoring and sensing ambient environment. Main efforts have been dedicated to review of existing state of the art on Structural Health Monitoring (SHM) methods for offshore systems and computations of fluid-structure interaction to validate possible approaches. Suggestions in optimization of future sensors integration for monitoring structural health and environmental variables have been provided based on data from state of the art and simulation results. Delivered artificial reef design will serve as a base for future manufacturing of the artificial reef modules to help provide insight in how human-made construction may affect marine and coastal ecosystems.
机译:本文专注于勘探结构健康监测的主题,该主题用于多种目的。然而,考虑民用和环境工程手段的MFAR的设计和构建的优化也很糟糕。本文的目的是描述为创建多功能人工珊瑚礁(MFAR)而实施的结构监测能力。潜在礁将能够作为海洋生物多样性恢复和康复,沿海保护的潜在工具,以防止岸线的侵蚀和一个能够自我监测和传感环境环境的各种传感器的科学平台。主要努力一直致力于审查现有技术的结构健康监测(SHM)方法,用于近海系统和流体结构相互作用的计算,以验证可能的方法。基于来自现有技术和仿真结果的数据,提供了在未来传感器中优化未来传感器的集成。交付人工礁设计将作为未来制造人工礁模块的基础,以帮助提供人性化建筑如何影响海洋和沿海生态系统的洞察力。

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