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基于地震模型土-不规则建筑-AMTMD相互作用系统的最优性能

Optimum properties of a soil-asymmetric building-active multiple tuned mass dampers interaction system based on a ground motion model

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【作者】 李春祥钟秋云王超

【Author】 LI Chun-xiang 1,ZHONG Qiu-yun1,WANG Chao 2(1.Department of Civil Engineering,Shanghai University,Shanghai 200072,China;2.Department of Civil Engineering,Shanghai Jiaotong University,Shanghai 200030,China)

【机构】 上海大学土木工程系上海交通大学土木工程系

【摘要】 基于地震模型下建立的土-不规则建筑-主动多重调谐质量阻尼器(AMTMD)相互作用系统的动力方程,定义AMTMD的最优参数准则为:设置AMTMD结构的最大平动和扭转角位移动力放大系数的最小值的最小化。定义AMTMD的有效性准则为:设置AMTMD结构的最大位移动力放大系数的最小值的最小化与未设置AMTMD结构的最大位移动力放大系数的比值。基于定义的二个准则,研究不规则建筑标准化偏心系数(NER)、扭转对侧向频率比(TTFR)、土对结构的刚度比(SRSS)和地震卓越频率系数(EDFR)对AMTMD最优频率间隔和有效性的影响,为软土地基不规则建筑的地震振动控制设计与实现提供参考。

【Abstract】 Based on the developed dynamic equations of a soil-asymmetric structure-active multiple tuned mass dampers(AMTMD)interaction system considering a ground motion model,the optimal parameter criterion of the AMTMD was defined as minimizing the minimum values of the maximum translational and torsional displacement dynamic magnification factors(DMF)of the asymmetric structure with the AMTMD.The effective criterion of the AMTMD was selected as the ratio of the minimization of the minimum values of the maximum displacement DMF of the asymmetric structure with the AMTMD to the maximum displacement DMF of the asymmetric structure without the AMTMD.Employing the above defined criteria,the parametric studies on the influences of the normalized eccentricity ratio(NER),torsional to translational frequency ratio(TTFR),stiffness ratio of soil relative to structure(SRSS),and earthquake dominant frequency ratio(EDFR)of the soil-asymmetric structure interaction system on the optimum frequency spacing and effectiveness of the AMTMD were then carried out.Through the extensive numerical analysis,the suggestions obtained herein would be useful for the design and implementation of the earthquake reduction of asymmetric structures built on soft soil foundation.

【基金】 上海市教育委员会科研创新项目(No.09-YZ-35)
  • 【文献出处】 振动与冲击 ,Journal of Vibration and Shock , 编辑部邮箱 ,2010年04期
  • 【分类号】TU311.3
  • 【被引频次】3
  • 【下载频次】90
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