首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >STRUCTURAL INTEGRITY CONTROL OF AGEING OFFSHORE STRUCTURES: REPAIRING AND STRENGTHENING WITH GROUTED CONNECTIONS
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STRUCTURAL INTEGRITY CONTROL OF AGEING OFFSHORE STRUCTURES: REPAIRING AND STRENGTHENING WITH GROUTED CONNECTIONS

机译:老化海上结构的结构完整性控制:灌浆连接的修复和加固

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摘要

Structural integrity control (SIC) is an increasingly important element of offshore structures. Not only is it used in newly built and existing offshore structures (e.g. oil and gas (O&G) production & process facilities (P&PFs), wind turbine installations, etc.), but SIC is also essential for ageing offshore platforms which are subjected to an extension of their design service life. In these cases, SIC programs must be performed to assess the platforms. If any significant changes in structural integrity (SI) are discovered, then it is essential to implement an appropriate strengthening, modification and/or repair (SMR) plan. Currently, welded and grouted repairs are mostly used for SMR. Although a welded repair may typically restore a structure to its initial condition, if the damage is due to fatigue loading and welded repairs have been carried out, then historical evidence reveals that there is a high potential for the damage to reappear over time. On the other hand, mechanical connections are significantly heavier than grouted connections. Consequently, grouted repairs are widely used to provide additional strength, for instance, to handle situations such as preventing propagation of a dent or buckle, sleeved repairs, leg strengthening, clamped repair for load transfer, leak sealing and plugging, etc. This manuscript examines current developments in grouted connections and their comparative pros and cons in relation to welded or mechanical connections. It also provides recommendations for future research requirements to further develop SMR with grouted connections.
机译:结构完整性控制(SIC)是海上结构中越来越重要的元素。它不仅可用于新建和现有的海上结构(例如,石油和天然气(O&G)生产和加工设施(P&PF),风力涡轮机的安装等),而且SIC对于老化的海上平台也必不可少。延长其设计使用寿命。在这些情况下,必须执行SIC程序来评估平台。如果发现结构完整性(SI)有任何重大变化,则必须实施适当的加固,修改和/或修理(SMR)计划。目前,焊接和灌浆修补主要用于SMR。尽管焊接修补通常可以将结构恢复到其初始状态,但是如果损坏是由于疲劳载荷造成的,并且已经进行了焊接修补,那么历史证据表明,随着时间的流逝,损坏再次出现的可能性很高。另一方面,机械连接比灌浆连接要重得多。因此,灌浆修补被广泛用于提供额外的强度,例如,用于处理诸如防止凹痕或带扣蔓延,套筒修补,腿部加固,夹紧式负载传递的修补,泄漏密封和堵塞等情况。灌浆连接的最新发展及其相对于焊接或机械连接的优缺点。它还为将来的研究要求提供了建议,以进一步开发具有灌浆连接的SMR。

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