首页> 外文期刊>Ocean Engineering >Investigation of mooring damping effects on vortex-induced motion of a deep draft semi-submersible by coupled CFD-FEM analysis
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Investigation of mooring damping effects on vortex-induced motion of a deep draft semi-submersible by coupled CFD-FEM analysis

机译:通过耦合CFD-FEM分析对涡流诱导的涡流诱导的涡流诱导运动的旋转运动的调查

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摘要

The vortex-induced motion (VIM) of semi-submersible is gaining increasing attention from both industry and academia with the recent development of deep draft semi-submersible platforms. Field measurements of semisubmersibles reveal that the VIM responses are typically found to be smaller than those observed in model tests. The possible factors causing the VIM response reduction in the field measurements include Reynolds number, wave effects, mass ratios, and external damping from mooring lines. The objective of this study is to investigate the mooring-induced damping effects on VIM. The Finite Analytic Navier-Stokes (FANS) code is integrated with an in-house six degree-of-freedom (DoF) motion solver and an in-house nonlinear finite element (FEM) code MOORING3D, for the coupled CFD-FEM analysis of the VIM of a moored semi-submersible. The large eddy simulation (LES) turbulence model is used to provide accurate estimation of hydrodynamic loading. Simulations are performed for the 1:70 model of the platform under varying reduced velocities. Full-scale mooring systems with different water depths and mooring line numbers are designed to represent different levels of mooring damping effects. The simulated VIM response is compared with the experiments. The study reveals that mooring-induced damping is a critical factor contributing to the VIM response reduction in the field.
机译:半潜水的涡旋诱导的运动(Vim)正在增加工业和学术界的关注,并在最近的半潜水平台的发展中发展。半法的场测量揭示了Vim响应通常被发现小于模型测试中观察到的响应。导致vim响应降低现场测量的可能因素包括雷诺数,波效,质量比和从系泊线的外部阻尼。本研究的目的是研究对Vim的系泊诱导的阻尼效应。有限分析Navier-Stokes(风扇)代码与内部六个自由度(DOF)运动求解器和内部非线性有限元(FEM)代码Mooring3D集成在内,用于耦合的CFD-FEM分析停泊半潜水的vim。大型涡流仿真(LES)湍流模型用于提供水动力载荷的精确估计。在不同降低的速度下的平台的1:70模型执行模拟。具有不同水深和系泊线编号的全尺寸系泊系统旨在代表不同级别的系泊阻尼效果。将模拟的Vim响应与实验进行比较。该研究表明,系泊诱导的阻尼是有助于降低该领域的Vim反应的关键因素。

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