空气动力学
转子(电动)
涡轮机
扭矩
流固耦合
有限元法
等几何分析
流体力学
涡轮叶片
联轴节(管道)
气动弹性
刀(考古)
离散化
计算流体力学
叶片单元动量理论
机械
旋转(数学)
计算机科学
结构工程
航空航天工程
机械工程
物理
工程类
数学
数学分析
热力学
人工智能
作者
A. Korobenko,Ming-Chen Hsu,Ido Akkerman,Johannes Tippmann,Yuri Bazilevs
标识
DOI:10.1142/s0218202513400034
摘要
A fluid–structure interaction (FSI) validation study of the Micon 65/13M wind turbine with Sandia CX-100 composite blades is presented. A rotation-free isogeometric shell formulation is used to model the blade structure, while the aerodynamics formulation makes use of the FEM-based ALE-VMS method. The structural mechanics formulation is validated by means of eigenfrequency analysis of the CX-100 blade. For the coupling between the fluid and structural mechanics domains, a nonmatching discretization approach is adopted. The simulations are done at realistic wind conditions and rotor speeds. The rotor-tower interaction that influences the aerodynamic torque is captured. The computed aerodynamic torque generated by the Micon 65/13M wind turbine compares well with that obtained from on-land experimental tests.
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