HSE Consequences of FPSO Mooring Lines Pretension Uncertainty in Deep Waters Applications

J. B. Araujo, J. S. Sales, A. C. Fernandes, Ana Clara Thurler
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Abstract

The purpose of FPSO (Floating Production Storage and Offloading) mooring system is to keep the unit operating in site in order to attend the Health, Safety and Environment (HSE) requirements and to meet the production risers design requirements. The pretension specification is a design task and it is a key activity due to its influence on extreme loads and fatigue life for both the mooring lines and risers. It is surprising that the project pretension specifications are not always actually implemented in practice and followed during all the unit life. Some inaccurate methods are used to get the actual pretension and may cause significant errors, and this may cause pretensions values outside design allowable tolerances. A contemporary uncertainty analysis method that uses numerical simulations to estimate the consequences and propagation of the uncertainties in pretensions is applied. A case study is presented for the case of an operating FPSO moored by a spread system, offshore Brazil. A second investigation compares the uncertainty of pretensions measured by means of sensors with the uncertainties that arise from indirect measurements by top angles and as built data for mooring segments and anchor points. The paper finally shows the need of a Mooring Integrity Management (MIM) implementation of at least annual pretension measurements with a robust and higher precision system.
深水应用中FPSO系泊索预张力不确定性对HSE的影响
FPSO(浮式生产储存和卸载)系泊系统的目的是保持设备在现场运行,以满足健康、安全和环境(HSE)要求,并满足生产隔水管的设计要求。预张力规范是一项设计任务,也是一项关键活动,因为它对系泊索和立管的极端载荷和疲劳寿命都有影响。令人惊讶的是,项目预张力规范在实践中并不总是实际执行,并且在整个机组寿命期间都没有得到遵守。使用一些不准确的方法来获得实际的预紧力,并可能导致显著的误差,这可能导致预紧力值超出设计允许公差。采用现代的不确定性分析方法,利用数值模拟来估计不确定性的后果和传播。以巴西近海的一艘FPSO为例进行了案例研究。第二项调查比较了传感器测量的不确定性与间接测量的不确定性,这些不确定性是由顶部角度和系泊段和锚点的内置数据引起的。本文最后表明,需要一个具有鲁棒性和更高精度的系泊完整性管理(MIM)系统,至少每年进行一次预张力测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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