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FATIGUE AND ULTIMATE LIMIT STATE OF GROUTED TUBULAR JOINTS

机译:灌浆管接头的疲劳极限极限状态

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摘要

A joint industry project commenced in 1993 to develop a design manual for tubular joints, which are strengthened or repaired through chord grout filling. This project was carried out in two phases and was completed in the late 1990's. The project comprised the conduct of over 200 SCF and ultimate load tests on large scale as-welded and grouted tubular joints. In addition to the testing programme, studies on offshore deployment were carried out to ensure that complete chord grout filling was achievable for all practical scenarios. The primary reason for carrying out this project is the industry-wide recognition that chord grout filling represents an extremely cost-effective and mechanically efficient method to strengthen or repair tubular joints. Further, it has been recognised that double-skin joints (e.g. pile through leg with annulus grout-filled) are often present in structures and the enhanced strength and fatigue characteristics as a result could be exploited to permit more efficient new platform designs or better estimation of joint performance for existing installations. Although API RP2A and ISO recommendations permit the use of grouted joints, little guidance is provided. The guidance that is provided is based on public domain data and engineering principles. This project was carried out to generate a substantial amount of new data/information, leading to the creation of a detail design manual for grouted joints.
机译:一项联合工业项目始于1993年,目的是开发管状接头的设计手册,这些接头可以通过灌浆来加固或修复。该项目分两个阶段进行,并于1990年代后期完成。该项目包括进行200多个SCF以及对大型焊接和灌浆管状接头进行极限载荷测试。除了测试计划外,还进行了海上部署研究,以确保在所有实际情况下都可以完全填充弦浆。进行此项目的主要原因是在整个行业范围内认可和灌浆代表了一种成本效益高且机械效率高的方法,用于加固或修复管状接头。此外,已经认识到,结构中经常会出现双层皮肤接缝(例如,桩环式灌浆,环隙灌浆),因此可以利用增强的强度和疲劳特性来实现更高效的新平台设计或更好的评估现有装置的联合性能。尽管API RP2A和ISO建议允许使用灌浆接头,但提供的指导很少。提供的指南基于公共领域的数据和工程原理。进行该项目是为了生成大量新数据/信息,从而导致为灌浆缝创建详细的设计手册。

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