首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering >FLEXIBLE RISER FATIGUE PROCEDURE USING A LONG TERM DISTRIBUTION OF FPSO'S HEADING DIRECTION
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FLEXIBLE RISER FATIGUE PROCEDURE USING A LONG TERM DISTRIBUTION OF FPSO'S HEADING DIRECTION

机译:灵活的立管疲劳程序使用FPSO的标题方向的长期分布

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The intensive use of FPSOs in Campos Basin, offshore Brazil, has demanded more attention on the fatigue design of flexible risers. Field experience and a new set of environmental data collected in the last years have shown a large number of swell waves reaching the floating units in quartering and beam seas, which has amplified the motions at the risers' top connections. Hence, it is necessary to evaluate the occurrence probability of wave heading direction relative to the vessel, especially for beam seas, but also noting the probability increase of quartering seas considering the existence of bimodal and bi-directional wave spectra. The simultaneous environmental conditions - wind, current and bi-directional waves (sea and swell) - registered in Campos Basin, were condensed in a few hundreds environmental conditions to enable its utilization on a simulation program, where the FPSO, mooring lines and risers were modeled to obtain the mean heading and offsets. This new set of FPSO headings were then used to define a new proposal of load conditions to evaluate the fatigue life of flexible risers. This new procedure was then applied to a case study for the FPSO P-33 employing the tools available at PETROBRAS research center. The results have confirmed the importance of beam and quarter seas, which respectively cause heavy roll and vertical motions at the turret and then, affecting the fatigue of the risers.
机译:在巴西海上巴西坎多斯盆地的FPSO集约使用要求更多地关注柔性立管的疲劳设计。现场经验和在过去几年收集的一套新的环境数据显示了大量膨胀的波浪到达距离和光束海洋中的浮动装置,这在升级器的顶部连接中放大了动作。因此,有必要评估相对于船舶的波浪向导方向的发生概率,特别是对于梁海洋,还注意到考虑到双相和双向波谱的存在的季度海洋的概率增加。同时环境条件 - 风,电流和双向波(海和膨胀) - 在坎波斯盆地注册,在一些环境条件下凝结,以实现其在模拟程序上的利用,其中FPSO,系泊线和立管是建模以获得平均标题和偏移。然后,这种新的FPSO标题被用来定义负载条件的新提案,以评估柔性立管的疲劳寿命。然后将这种新程序应用于采用Petrobras研究中心的工具的FPSO P-33案例研究。结果证实了梁和四分之一海洋的重要性,分别在炮塔上引起重型辊和垂直运动,然后影响提升管的疲劳。

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