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SDOF-TMD控制系统能量响应特性与能量谱研究

Study on the Rules of SDOF-TMD Control System Energy Response and Spectrum

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【作者】 滕军鲁志雄董志君

【Author】 TENG Jun,LU Zhixiong,DONG Zhijun(Center for Bridge and Structural Engineering Research of Harbin Institute of Technology,Shenzhen Graduate School,Shenzhen China,518055)

【机构】 哈尔滨工业大学深圳研究生院桥梁与结构研究中心

【摘要】 目的研究弹性单自由度(SDOF)结构调谐质量阻尼(TMD)控制系统的能量响应特性和控制系统的能量谱变化规律.方法采用地震激励下结构位移均方值最小为优化目标的TMD最优参数表达式,基于相对能量计算公式,并考虑了TMD子结构的不同频率比、质量比和阻尼比等参数摄动来分析控制系统能量谱变化规律.结果在El centro地震作用下,TMD能较好地控制主结构的各项能量响应.TMD控制系统在短周期0~0.5 s和长周期3.2~4 s范围内,系统能量对TMD参数变化不敏感;在1.0~3.2 s范围内,质量比越大,其动能、势能和输入能的控制效果越好,且存在最优调谐频率比;控制系统的能量反应对TMD子结构的阻尼比变化不敏感.结论TMD需要积累较大的能量才能对结构有较好的控制效果,TMD子结构参数是影响TMD控制系统能量谱变化规律的重要指标.

【Abstract】 The purpose of this paper is to research the rules of control system energy response and energy spectrum for the single degree of freedom(SDOF) structure with TMD control.According to the optimal formula for TMD system with minimizing the structural displacement STD and based on the relative energy calculation formula,the process of TMD-control system energy recurs and the three factors are considered to influence the control system energy response varying,including the different frequency ratio,mass ratio and damping ratio of the TMD.The result shows that under the El centro seismic action the main energy can be controlled better with TMD and the parameters of TMD are the important indexes to affect the TMD-control system energy response.There are consistent relationship between the main structure displacement and system energy control.During the short period of 0~0.5 s and the long period 3.2~4 s,the control system energy is not sensitive to the TMD′s parameters varying;During the 1.0~3.2 s periods,the larger the mass ratio,the better the control effect of the energy spectrum is,that exists the optimizing tuned frequency ratio,and the system energy difference is not obvious with the usual TMD′s damping ratio range.

【关键词】 TMD能量谱地震反应控制系统
【Key words】 TMDenergy spectrumearthquake actioncontrol system
【基金】 国家自然科学基金项目(50478031)
  • 【文献出处】 沈阳建筑大学学报(自然科学版) ,Journal of Shenyang Jianzhu University(Natural Science) , 编辑部邮箱 ,2009年04期
  • 【分类号】TU352.11
  • 【被引频次】3
  • 【下载频次】108
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