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Towards the fully-coupled numerical modelling of floating wind turbines

机译:朝向浮动风力涡轮机的完全耦合数值模型

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The aim of this study is to model the interactions between fluids and solids using fully nonlinear models. Nonlinearity is important in the context of floating wind turbines, for example, to model breaking waves impacting on the structure and the effect of the solid's elasticity. The fluid- and solid-dynamics equations are solved using two unstructured finite-element models, which are coupled at every time step. Importantly, the coupling ensures that the action-reaction principle is satisfied at a discrete level, independently of the order of representation of the discrete fields. To the authors' knowledge, the present algorithm is novel in that it can simultaneously handle: (i) nonmatching fluid and solid meshes, (ii) different polynomial orders of the basis functions on each mesh, and (iii) different fluid and solid time steps. First, results are shown for the flow past a fixed actuator-disk immersed in a uniform flow and representing a wind turbine. The present numerical results for the velocity deficit induced by the disk are shown to be in good agreement with the semi-analytical solution, for three values of thrust coefficients. The presence of a non-zero fluid viscosity in the numerical simulation affects wake recovery and fluid entrainment around the disk. Second, the dynamic response of a cylindrical pile is computed when placed at an interface between air and water. The results qualitatively demonstrate that the present models are applicable to the modelling of multiple fluids interacting with a floating solid. This work provides a first-step towards the fully coupled simulation of offshore wind turbines supported by a floating spar.
机译:本研究的目的是使用完全非线性模型来模拟流体和固体之间的相互作用。例如,非线性在浮动风力涡轮机的背景下是重要的,以模拟影响结构的断裂波和固体弹性的效果。使用两个非结构化的有限元模型来解决流体和固态动力学方程,其在每次步骤时耦合。重要的是,耦合确保了行动反应原理以离散水平满足,独立于离散场的表示顺序。为了作者的知识,本算法是新颖的,因为它可以同时处理:(i)非匹配流体和固体网格,(ii)每个网格上的基础函数的不同多项式令,(iii)不同的流体和固定时间脚步。首先,示出了用于流过固定致动器盘的流动的结果,其浸入均匀流动并表示风力涡轮机。对于三个推力系数的三个值,磁盘诱导的速度缺陷的现有数值结果显示为良好的一致性。数值模拟中的非零流体粘度的存在影响磁盘周围的唤醒恢复和流体夹带。其次,当放置在空气和水之间的界面处时计算圆柱形桩的动态响应。结果表明,本模型适用于与浮动固体相互作用的多个流体的建模。这项工作为浮动翼梁支撑的海上风力涡轮机的完全耦合模拟提供了第一步。

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