首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >VESSEL/STINGER/PIPELINE FULLY COUPLED ANALYSIS FOR PIPELAYING OPERATION
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VESSEL/STINGER/PIPELINE FULLY COUPLED ANALYSIS FOR PIPELAYING OPERATION

机译:船舶/ Stinger /管道全面耦合管道运行分析

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During pipelaying operations, dynamic performance of the stinger due to vessel motion has a strong impact on the stinger capacity estimation. However, the conventional stinger structural design is based on the maximum load on the roller boxes corresponding to a target top tension value. In addition, the installation analysis uses the uncoupled vessel motion Response Amplitude Operators (RAOs) to calculate the motion induced loads on the stinger and the pipeline. Since the maximum loads on the stinger are conservatively estimated by linearly superimposing maximum forces from different loading conditions, the conventional design and analysis approach leads to either over-design of the stinger structure or underestimation of the stinger capacity. To improve conventional pipelaying design and analysis methodologies, a time domain vessel/stinger/pipeline Fully Coupled Analysis (FCA) is presented in this study. The new analysis procedure significantly improved the stinger operation limit compared to the conventional design and analysis procedure.
机译:在管道期间,由于血管运动引起的刺刀的动态性能对STINER容量估计产生了强烈的影响。然而,传统的刺刀结构设计基于对应于目标顶部张紧值的辊子箱上的最大负荷。此外,安装分析使用未耦合的血管运动响应幅度算子(RAO)来计算Stinger和管道上的运动引起的负载。由于Stinger上的最大载荷保守地通过线性叠加来自不同负载条件的最大力,因此传统的设计和分析方法导致刺刀结构的过度设计或低估了STINER容量。为了改善传统的管道设计和分析方法,本研究介绍了时域血管/静脉/流水线完全耦合分析(FCA)。与传统的设计和分析程序相比,新分析程序显着改善了Stinger操作限制。

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