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Reduced-order modelling of vortex-induced vibration of catenary riser

机译:悬链立管涡激振动的降阶建模

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摘要

A new reduced-order model capable of analyzing the vortex-induced vibration of catenary riser in the ocean current has been developed. This semi analytical-numerical approach is versatile and allows for a significant reduction in computational effort for the analysis of fluid-riser interactions. The incoming current flow is assumed to be steady, uniform, unidirectional and perpendicular to the riser plane of initial equilibrium curvatures. The equations of riser 3-D motion are based on a pinned-pinned, tensioned-beam or flexural cable, modelling which accounts for overall effects of riser bending, extensibility, sag, inclination and structural nonlinearities. The unsteady hydrodynamic forces associated with cross-flow and in-line vibrations are modelled as distributed van der Pol wake oscillators. This hydrodynamic model has been modified in order to capture the effect of varying initial curvatures of the inclined flexible cylinder and to describe the space-time fluctuation of lift and drag forces. Depending on the vortex-excited in-plane/out-of-plane modes and system fluid-structure parameters, the parametric studies are carried out to determine the maximum response amplitudes of catenary risers, along with the occurrence of uni-modal lock-in phenomenon. The obtained results highlight the effect of initial curvatures and geometric nonlinearities on the nonlinear dynamics of riser undergoing vortex-induced vibration.
机译:已经开发了一种新的降阶模型,该模型能够分析洋流中悬链上升流的涡激振动。这种半解析数值方法是通用的,可以大大减少用于分析流体与立管相互作用的计算量。假定流入的电流稳定,均匀,单向且垂直于初始平衡曲率的立管平面。立管3-D运动方程基于固定销,张紧梁或挠性电缆,该模型考虑了立管弯曲,可延展性,下垂,倾斜和结构非线性的整体影响。与横流和管道内振动相关的非稳态流体动力被建模为分布式范德波尔尾波振荡器。对该流体力学模型进行了修改,以捕获倾斜的柔性圆柱体的初始曲率变化的影响,并描述提升力和阻力的时空波动。根据涡旋激发的平面内/平面外模式和系统流体结构参数,进行参数研究以确定悬链立管的最大响应振幅以及单模锁定的发生现象。所得结果突出了初始曲率和几何非线性对立管经历涡激振动的非线性动力学的影响。

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