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Variational modelling of wave-structure interactions with an offshore wind-turbine mast

机译:波浪结构与海上风力发电机桅杆相互作用的变分建模

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摘要

We consider the development of a mathematical model of water waves interacting with the mast of an offshore wind turbine. A variational approach is used for which the starting point is an action functional describing a dual system comprising a potential-flow fluid, a solid structure modelled with nonlinear elasticity, and the coupling between them. We develop a linearized model of the fluid–structure or wave–mast coupling, which is a linearization of the variational principle for the fully coupled nonlinear model. Our numerical results for the linear case indicate that our variational approach yields a stable numerical discretization of a fully coupled model of water waves and an elastic beam. The energy exchange between the subsystems is seen to be in balance, yielding a total energy that shows only small and bounded oscillations amplitude of which tends to zero with the second-order convergence as the timestep approaches zero. Similar second-order convergence is observed for spatial mesh refinement. The linearized model so far developed can be extended to a nonlinear regime.
机译:我们考虑开发水波与海上风力涡轮机桅杆相互作用的数学模型。使用了一种变分方法,其起点是一个动作函数,描述了一个双重系统,该双重系统包括势能流体,具有非线性弹性模型的实体结构以及它们之间的耦合。我们开发了流体-结构或波浪-桅杆耦合的线性模型,这是完全耦合非线性模型的变分原理的线性化。我们在线性情况下的数值结果表明,我们的变分方法对水波和弹性梁的完全耦合模型产生了稳定的数值离散。子系统之间的能量交换被认为是平衡的,产生的总能量仅显示出小的且有界的振荡幅度,随着时间步长接近零,其二阶收敛趋于零。对于空间网格细化,观察到类似的二阶收敛。到目前为止开发的线性化模型可以扩展到非线性状态。

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