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Effect of Difference-frequency Forces on the Dynamics of a Semi-submersible Type FVAWT in Misaligned Wave-wind Condition

机译:不对称波浪风条件下差频力对半潜式FVaWT动力学的影响

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摘要

With increasing interests in the development of offshore floating vertical axis wind turbines (FVAWTs), a large amount of studies on the FVAWTs have been conducted. This paper focuses on evaluating the effect of second-order difference-frequency force on the dynamics of a 5 MW FVAWT in misaligned wave-wind condition. The studied FVAWT is composed of a 5 MW Darrieus rotor, a semi-submersible floater and a catenary mooring system. Fully coupled nonlinear time domain simulations were conducted using the state-of-art code Simo- Riflex-DMS. Several misaligned wave-wind conditions were selected to investigate the global dynamic responses of the FVAWT, such as the platform motions, structural responses and mooring line tensions. It has been found that the wave-wind misalignment does not significantly affect the mean values of the global responses since the global responses are primarily wind-induced. And the second order differencefrequency force can contribute to a slightly larger mean value. The standard deviations and maximum values of the global responses are slightly more sensitive to the wave-wind misalignment and the second order difference-frequency force, especially at high significant wave height conditions.
机译:随着对海上浮动垂直轴风力涡轮机(FVAWT)的开发的兴趣日益增加,已经对FVAWT进行了大量研究。本文着重评估在风浪失调条件下二阶差频力对5 MW FVAWT动力学的影响。所研究的FVAWT由5兆瓦的Darrieus转子,半潜式浮子和悬链式系泊系统组成。使用最新代码Simo-Riflex-DMS进行了完全耦合的非线性时域仿真。选择了几种未对准的风浪条件来研究FVAWT的整体动力响应,例如平台运动,结构响应和系泊索张力。已经发现,由于整体响应主要是风引起的,因此波风未对准不会显着影响整体响应的平均值。而且二阶差分频率力可以贡献一个稍大的平均值。全局响应的标准偏差和最大值对波风未对准和二阶差分频率力更为敏感,尤其是在高有效波高条件下。

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