Hybrid Verification of a Deepwater FPSO Using Truncated Model Tests and Numerical Simulations

Xiangbo Liu, C. T. Liong, Nitesh Kumar, Kie Hian Chua, A. Magee, Y. Choo
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Abstract

This paper presents verification of a deep water FPSO with a semi-taut mooring system using model tests and numerical modelling commonly referred to as the hybrid method. The vessel under investigation is a FPSO of 310m in length and 47m in beam with an internal turret mooring system of 12 lines in 2000m water depth. Two configurations of the mooring systems i.e. inline and bisecting are investigated for sea-states up to 1000yr return period. A full depth mooring system has been developed for the FPSO and model tests will be carried out to verify the model. Due to limitations to the size of the model basins, the model tests will be carried out for a truncated mooring setup. Non-linear horizontal stiffness of a single mooring line and the complete mooring system with truncation is compared to that of the existing full depth mooring system. Discrepancies in the vertical forces due to truncation of line length will be discussed in the paper. A numerical model of the truncated set-up will be calibrated using model test results.
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利用截断模型试验和数值模拟对深水FPSO进行混合验证
本文介绍了采用模型试验和通常称为混合方法的数值模拟方法对具有半紧系泊系统的深水FPSO进行验证。正在调查的船舶是一艘FPSO,长310米,宽47米,内部有12条线的转塔系泊系统,水深2000米。研究了两种系泊系统配置,即直列系泊系统和等分系泊系统,用于海况长达1000年的回归期。FPSO已经开发了全深度系泊系统,并将进行模型测试以验证模型。由于模型盆的大小限制,模型试验将在截断系泊装置中进行。将单根系泊线和截断的完整系泊系统的非线性水平刚度与现有的全深系泊系统进行了比较。由于线长截断而引起的垂直力的差异将在本文中讨论。截断装置的数值模型将使用模型试验结果进行校准。
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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