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Coupled aero-hydro-servo-elastic methods for floating wind turbines

机译:浮动风力涡轮机的空气-水-伺服-弹性耦合方法

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To meet the demand of the development of floating wind turbines, coupled aero-hydro-servo-elastic methods were developed and then were programmed as an integrated code DARwind (short for Dynamic Analysis for Response of Wind Turbines) for simulating floating wind turbines. This paper first presents the theoretical background, including Kane's dynamical equations in combination with the Cardan angles method, the hybrid coordinate dynamic analysis method, and the adjacent array approach for kinematics and kinetics. The blade element/momentum method with aerodynamic corrections was used for aerodynamic simulation. Potential-flow theory, the second-order wave forces and the Morison formula with the strip theory were used for hydrodynamics, and a quasi-static mooring modelling approach was developed for the catenary mooring system. A generator-torque controller and a full-span rotor-collective blade-pitch controller were adopted for control strategies. The code was then verified by a series of code-to-experiment comparisons, including the mooring system, the structural elasticity, the aerodynamic performance, the hydrodynamic performance and the control strategy. The comparisons demonstrated that the coupled aero-hydro-servo-elastic methods have a satisfactory ability to perform fully coupled simulations for floating wind turbines. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了满足浮动风力涡轮机的发展需求,开发了耦合的气动-水-伺服-弹性方法,然后将其编程为用于模拟浮动风力涡轮机的集成代码DARwind(风力涡轮机响应的动态分析的缩写)。本文首先介绍了理论背景,包括凯恩动力方程与Cardan角方法,混合坐标动力学分析方法以及运动学和动力学的相邻数组方法相结合。带有空气动力学校正的叶片单元/动量法用于空气动力学模拟。将势流理论,二阶波浪力和带条理论的Morison公式用于流体力学,并为悬链式系泊系统开发了准静态系泊建模方法。控制策略采用了发电机转矩控制器和全跨距转子总叶片桨距控制器。然后通过一系列的代码与实验的比较,包括系泊系统,结构弹性,空气动力性能,流体动力性能和控制策略,对代码进行了验证。比较表明,耦合的空气-水-伺服-弹性方法具有令人满意的能力,可以对浮动风力涡轮机执行完全耦合的模拟。 (C)2018 Elsevier Ltd.保留所有权利。

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