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Time-domain analysis of substructure of a floating offshore wind turbine in waves

机译:波浪中漂浮式海上风力发电机下部结构的时域分析

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摘要

This paper aims to analyze the dynamic response of a floating offshore wind turbine (FOWT) in waves. Instead of modeling the incident random wave by the traditional wave spectrum and superposition theory, an impulse response function method was used to simulate the incident wave. The incident wave kinematics were evaluated by a convolution of the wave elevation at the original point and the impulse response function in the domain. To check the validity of current wave simulation method, the calculated incident wave velocities were compared with analytical solutions; they showed good agreement. The developed method was then used for the hydrodynamic analysis of the substructure of the FOWT. A direct time-domain method was used to calculate the wave-rigid body interaction problem. The proposed numerical scheme offers an effective way of modeling the incident wave by an arbitrary time series.
机译:本文旨在分析波浪中的浮式海上风力涡轮机(FOWT)的动态响应。代替传统的波谱和叠加理论对入射随机波进行建模,而是使用脉冲响应函数方法来模拟入射波。通过对原始点处的波高和域中的脉冲响应函数进行卷积来评估入射波运动学。为了验证电流波模拟方法的有效性,将计算出的入射波速度与解析解进行了比较。他们表现出良好的协议。然后将开发的方法用于FOWT下部结构的流体动力学分析。采用直接时域方法来计算刚体相互作用问题。所提出的数值方案提供了一种通过任意时间序列对入射波建模的有效方法。

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