d型结冰导体流固耦合的数值模拟

Yang Zhitao, You Yi, Yang Xiaogang, Liu Wensheng, He Cheng, N. Chun, L. Jun
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引用次数: 1

摘要

目前,对结冰导体气动响应和受力的数值模拟主要基于准定常准则,忽略了导体与流场的相互作用。本文对三种d形导体流固耦合模型进行了数值研究。讨论了减速速度、自由度和风攻角对结冰导线气动响应的影响。结果表明,转动自由度对横风振动有一定的影响。阻力系数平均值随风攻角的增大而减小,升力系数和弯矩系数随风攻角的增大而增大。当振动位移出现最大幅值时,相应的减速速度与最大气动力的减速速度并不完全一致。
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Numerical Simulation of Fluid-Structure Interaction of D-shape Iced Conductor
At present, the numerical simulation on the aerodynamic response and force of the iced conductor are mainly based on the quasi steady criterion, which ignored the interaction between the conductor and the flow field. This paper presents a numerical study of three kinds of fluid-structure interaction models for D-shape conductor. The effects of reduced velocity, degree of freedom and wind attack angle on aerodynamic response of the iced conductor are discussed. The results show that the rotational freedom has certain influence on the across-wind vibration. The mean value of drag coefficient decreases with the increase of wind attack angle, while the lift and moment coefficient increase with the increase of wind attack angle. When the maximum amplitude of vibration displacement occurs, the corresponding reduced velocity is not entirely consistent with that of the maximum aerodynamic force.
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CiteScore
1.70
自引率
8.30%
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