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FIRST IN PLACE REPLACEMENT OF A TLP TOP TENDON CONNECTOR FLEX BEARING

机译:首先更换TLP顶筋连接器挠性轴承

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Tension Leg Platform (TLP) tendons typically are installed for the life of the platform and incorporate elastomeric flex bearings. The Allegheny TLP, owned and operated by ENI Petroleum, was installed in Gulf of Mexico Green Canyon Block 254A, in 1999. It was designed for a service life of 20 years and currently ENI wants to extend the operating life of the platform. A baseline inspection showed significant degradation of the top tendon connector (TTC) flex bearing and it was concluded that the flex bearings needed to be replaced if the platform was to continue to operate safely. SBM and BHGE came up with a solution for replacing the TTC including the flex bearing, which was accepted by ENI. This involved ballasting the TLP to reduce the tendon pretensions, installing a temporaiy buoyancy module, and using a hydraulic tool, first of its kind in the world, to take the load off of the old TTC and gradually release the tendon to free stand. The tool was then retrieved with the old TTC, onboard the installation vessel. A second identical tool with the new TTC was then lowered on to the porch and the tendon stretched to the lock-off position by the tool and locked in position with the new TTC. This was done on all six (6) tendons and the platform was de-ballasted to the original tendon pre-tensions. Development of the tendon de-tensioning tool required new designs, extensive shop testing, and planning. The final offshore campaign took place during July 2018 and was completed in three (3) weeks. This represented a successful conclusion to a three (5) year effort. This paper highlights lessons learned in completing a complex first time ever project and makes recommendations for the design of future TLP's.
机译:通常在平台使用寿命内安装张力腿平台(TLP)腱,并包含弹性挠性轴承。由ENI Petroleum拥有和运营的Allegheny TLP,于1999年安装在墨西哥湾格林峡谷254A号区块中。该设备的使用寿命为20年,目前ENI希望延长该平台的使用寿命。基线检查显示顶部肌腱连接器(TTC)挠性轴承明显退化,并且得出的结论是,如果平台要继续安全运行,则需要更换挠性轴承。 SBM和BHGE提出了一种替代TTC的解决方案,包括ENI接受的挠性轴承。这涉及对TLP进行压载以减少肌腱的预应力,安装临时浮力模块,并使用世界上首例的液压工具来减轻旧TTC的负担,并逐渐将肌腱释放至自由站立状态。然后使用旧的TTC在安装船上取回该工具。然后将另一只与新TTC相同的工具放到门廊上,并用该工具将肌腱拉伸至锁定位置,并用新TTC锁定在适当位置。在所有六(6)个肌腱上均完成了此操作,并将平台压载到原始的肌腱预应力上。肌腱拉紧工具的开发需要新的设计,广泛的车间测试和计划。最后的海上战役于2018年7月进行,并在三(3)周内完成。这代表了三(5)年努力的成功结论。本文重点介绍了完成一个复杂的首次项目所学到的经验教训,并为将来的TLP的设计提出了建议。

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