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ANALYSIS OF WIND-INDUCED VIBRATION RESPONSE OF BEAM STRING STRUCTURES

机译:梁弦结构的风力诱导振动响应分析

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Due to the comparative flexibility and relatively small integral stiffness,the analysis of wind-induced vibration response has become a key problem to the design of beam string structure (BSS). Taking an oneway BSS and a crossways BSS with the span 60 m and 60 m x 60 m respectively as computational examples,the autoregressive-type simulation method is used. The effectively artificial wind speed processes with remarkable time and space correlation are generated by programming Matlab,and then are transformed into wind load time history. Afterwards,nonlinear analysis is carried out based on the FEM model of these two examples established by ANSYS. The wind-induced vibration response and suggested values of windinduced vibration coefficient of vertical displacement are also given. The influences of dead load and cable pretension on wind-induced vibration coefficient of vertical displacement for one-way BSS are further investigated. The conclusions obtained may be useful to the design of wind resistance in similar projects.
机译:由于比较柔韧性和相对较小的整体刚度,对梁弦结构(BSS)设计的关键问题已成为一个关键问题。使用跨越60 m和60 m x 60 m的单一的BS和十字路口BSS分别作为计算示例,使用自回归型仿真方法。通过编程MATLAB生成具有显着时间和空间相关的有效的人工风速过程,然后转换为风力负载时间历史。然后,基于ANSYS建立的这两个示例的FEM模型进行非线性分析。还给出了风致振动响应和垂直位移的垂直位移振动系数的建议值。进一步研究了死载和电缆预紧对单向BSS的单向BS垂直位移的风引起的振动系数的影响。所获得的结论可用于类似项目的抗风性设计。

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