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Potential of a repair system for grouted connections in offshore structures: Development and experimental verification

机译:海上结构中灌浆连接修复系统的潜力:开发和实验验证

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摘要

Grouted connections are intensively used in offshore rigs, platforms as well as jacket and monopile offshore wind turbine structures. Being located in remote offshore conditions, these connections can experience considerable adverse loading during their lifetimes. Degradation was reported inside similar connections, which were installed in the last three decades. Grouting in the offshore sites may often be proven difficult, which eventually leads to reduced load-bearing capacity of connections in the long run. Thus, repair and rehabilitation of such connections should be planned ahead to minimize operational delays and costs. In this study, scaled grouted connections were manufactured using a novel mould, whose integrity were monitored using digital image correlation (DIC). The connections were loaded under static load to visualize the main failure pattern using distributed fibre optic sensors and acoustic emission (AE) analysis. Grouted connections were then repaired using a cementitious injectable grout. The effectiveness of the grout injection was monitored using dye penetration technique. Finally, specimens are reloaded to identify the potential of such repair for grouted connections.
机译:灌浆连接集中在海上钻机,平台以及夹克和纪念碑上海风力涡轮机结构中使用。在远程近海条件下,这些连接可以在寿命期间遇到相当大的不利装载。报告了在过去三十年中安装的类似连接内部的降解。可以常常经常被证明在近海地点的灌浆,最终导致长期的连接承载能力降低。因此,应计划提前修复和恢复这些连接,以最大限度地减少运营延误和成本。在该研究中,使用一种新型模具制造缩放的灌浆连接,使用数字图像相关(DIC)监测其完整性。在静态负载下加载连接,以可视化分布式光纤传感器和声发射(AE)分析的主体故障模式。然后使用胶凝剂可注射灌浆修复灌浆连接。使用染料渗透技术监测灌浆注射的有效性。最后,重新加载标本以识别用于灌浆连接的修复的潜力。

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