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Study on Rigid-Flexible Coupling Effects of Floating Offshore Wind Turbines 被引量:1
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作者 CHEN Jia-hao HU Zhi-qiang +1 位作者 LIU Ge-liang WAN De-cheng 《China Ocean Engineering》 SCIE EI CSCD 2019年第1期1-13,共13页
In order to account for rigid-flexible coupling effects of floating offshore wind turbines, a nonlinear rigid-flexible coupled dynamic model is proposed in this paper. The proposed nonlinear coupled model takes the hi... In order to account for rigid-flexible coupling effects of floating offshore wind turbines, a nonlinear rigid-flexible coupled dynamic model is proposed in this paper. The proposed nonlinear coupled model takes the higher-order axial displacements into account, which are usually neglected in the conventional linear dynamic model. Subsequently,investigations on the dynamic differences between the proposed nonlinear dynamic model and the linear one are conducted. The results demonstrate that the stiffness of the turbine blades in the proposed nonlinear dynamic model increases with larger overall motions but that in the linear dynamic model declines with larger overall motions.Deformation of the blades in the nonlinear dynamic model is more reasonable than that in the linear model as well.Additionally, more distinct coupling effects are observed in the proposed nonlinear model than those in the linear model. Finally, it shows that the aerodynamic loads, the structural loads and global dynamic responses of floating offshore wind turbines using the nonlinear dynamic model are slightly smaller than those using the linear dynamic model. In summary, compared with the conventional linear dynamic model, the proposed nonlinear coupling dynamic model is a higher-order dynamic model in consideration of the rigid-flexible coupling effects of floating offshore wind turbines, and accord more perfectly with the engineering facts. 展开更多
关键词 FLOATING OFFSHORE WIND TURBINE dynamic stiffening effect nonlinear coupled dynamic model DARwind
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计入柔性梁动力刚化/软化效应的一种新方法
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作者 张劲夫 《机械科学与技术》 CSCD 北大核心 2017年第8期1161-1166,共6页
提出柔性梁的动力刚化/软化效应的本质是柔性梁的大范围运动所导致的梁内轴向力对于梁的横向弹性振动所产生的影响效应。给出了柔性梁动力学建模中计入动力刚化/软化效应的一种新方法:通过考虑大范围运动所导致的梁内轴向力对于梁的横... 提出柔性梁的动力刚化/软化效应的本质是柔性梁的大范围运动所导致的梁内轴向力对于梁的横向弹性振动所产生的影响效应。给出了柔性梁动力学建模中计入动力刚化/软化效应的一种新方法:通过考虑大范围运动所导致的梁内轴向力对于梁的横向弹性振动所产生的影响,来达到动力学建模中计入柔性梁动力刚化/软化效应的目的。这种方法同目前已有的计入柔性梁动力刚化/软化效应的方法相比,具有直观、简单、物理概念清晰和符号运算简便的优点。通过对一旋转柔性梁的横向弹性振动的动力学建模和计算为例,具体演示了如何应用本文的方法计入柔性梁的动力刚化效应,同时也说明了本文方法在应用实施上的便捷性。最后,将本文的计算结果同相关文献的对应结果相比较,验证了本文方法的正确性。 展开更多
关键词 柔性梁 动力刚化/软化效应 轴向内力 横向振动
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