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Vessel/mooring/riser coupled dynamic analysis of a turret-moored FPSO compared with OTRC experiment

机译:与OTRC实验相比,塔架式FPSO的船/系泊/立管耦合动力分析

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摘要

A vessel/mooring/riser coupled dynamic analysis program in time domain is developed for the global motion simulation of a turret-moored, tanker based FPSO designed for 6000-ft water depth. The vessel and line dynamics are solved simultaneously in a combined matrix for the given environmental and boundary conditions. The vessel global motions and mooring tension are tested at the OTRC wave basin for the non-parallel wind-wave-current 100-year hurricane condition in the Gulf of Mexico. The same case is also numerically simulated using the developed coupled dynamic analysis program. The numerical results are compared with the OTRC 1:60 model-testing results with truncated mooring system. The system's stiffness and line tension as well as natural periods and damping obtained from the OTRC measurement reasonably match with numerically simulated static-offset and free-decay tests. The numerically predicted global vessel motions are also in good agreement with the measurements. It is underscored that the dynamic mooring tension can be underestimated when truncated mooring system is used.
机译:开发了时域中的船舶/系泊/立管耦合动态分析程序,用于针对塔底系泊的,基于油轮的FPSO进行全局运动仿真,该设计的水深为6000英尺。对于给定的环境和边界条件,可以同时在组合矩阵中求解船舶和管线动力学。在OTRC波浪盆地中,针对墨西哥湾非平行风浪-当前100年飓风条件,测试了船舶的整体运动和系泊张力。使用开发的耦合动态分析程序还可以对相同的情况进行数值模拟。将数值结果与采用截断式系泊系统的OTRC 1:60模型测试结果进行了比较。通过OTRC测量获得的系统的刚度和线张力以及自然周期和阻尼与数值模拟的静态偏移和自由衰减测试合理匹配。数值预测的全球船只运动也与测量结果非常吻合。要强调的是,当使用截断式系泊系统时,动态系泊张力可能会被低估。

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