非线性悬吊质量摆对输电塔减振控制的研究

侯洁;霍林生;李宏男

振动与冲击 ›› 2014, Vol. 33 ›› Issue (3) : 177-181.

PDF(1668 KB)
PDF(1668 KB)
振动与冲击 ›› 2014, Vol. 33 ›› Issue (3) : 177-181.
论文

非线性悬吊质量摆对输电塔减振控制的研究

  • 侯洁,霍林生,李宏男
作者信息 +

Research on Seismic Control of Transmission Towers with Nonlinear Suspending Mass Pendulum

  • HOU Jie HUO Lin-sheng LI Hong-nan
Author information +
文章历史 +

摘要

针对悬吊质量摆减控制研究中小摆角线性分析的局限性,本文提出考虑悬吊质量摆大摆角非线性特性来计算结构体系动力响应的方法,将传统分析中的悬吊质量摆的线性刚度修正为非线性。以一输电塔为例,通过线性和非线性计算结果对比可知,当摆角过大时线性计算方法不满足线性小摆角条件,而非线性计算方法则可很好模拟质量摆在大摆角下的响应。通过参数分析讨论了正弦激励周期、摆长及质量比对输电塔减震率的影响。选取三条不同场地地震记录,计算输电塔附加质量摆体系的地震响应,结果表明在不同场地条件下,输电塔均具有明显的减震效果。

Abstract

Due to the limitation of linear analysis of suspended pendulum control system with small swing angle, this paper proposed the method of analyzing the structural dynamic response considering the nonlinear property of pendulum, in which the linear stiffness of pendulum is revised to be nonlinear. Taking a 500 KV transmission tower as a numerical example and comparing the results at linear and nonlinear conditions, it can be found that the swing angle of pendulum may exceed the limitation of linear assumption and the nonlinear analysis can simulate the structural dynamic system with large swing angles of pendulum perfectly. The parameters of control system including excitation periods, pendulum length and mass ratio were studied on the influence of the seismic reduction ratio of transmission tower. Three seismic records were used to calculate the response of transmission tower with suspended pendulum. The results showed that the mitigation effect of suspended pendulum on structural response is very obvious under different seismic excitations.



关键词

非线性响应 / 悬吊质量摆 / 输电塔 / 减震率

Key words

nonlinear response / suspending mass pendulum / transmission tower / seismic response reduction ratio

引用本文

导出引用
侯洁;霍林生;李宏男. 非线性悬吊质量摆对输电塔减振控制的研究[J]. 振动与冲击, 2014, 33(3): 177-181
HOU Jie HUO Lin-sheng LI Hong-nan. Research on Seismic Control of Transmission Towers with Nonlinear Suspending Mass Pendulum[J]. Journal of Vibration and Shock, 2014, 33(3): 177-181

PDF(1668 KB)

856

Accesses

0

Citation

Detail

段落导航
相关文章

/