首页> 外文会议>International Conference on Vibration Problems >Vibration Control of Benchmark Building with Single and Multi-storey Stacked TMDs
【24h】

Vibration Control of Benchmark Building with Single and Multi-storey Stacked TMDs

机译:单层堆积TMDS基准建筑振动控制

获取原文

摘要

Tuned mass dampers (TMDs) placed in skyscrapers show huge deflections and accelerations as they absorb a lot of the energy from the main structure. The responses of these TMDs need to be controlled with some additional dampers to keep their motion in check. The current paper deals with the numerical study of a similar system (stacked TMD system) in which a TMD (secondary TMD) is used to control the main TMD (primary TMD), which, in turn, is used to control the structure. Primary TMD is also analogous to important equipment such as a server placed in a building which needs to be controlled. In this study, the response of a 76-storey Benchmark building is investigated under across-wind loads. Dynamic Time History Analysis of the building is performed in MATLAB 2010a using the wind time history data by state-space method. In addition to deflections, drift and acceleration responses are also evaluated. Two systems of primary TMD have been studied. One system consists of conventional TMD, i.e., single mass-stiffness-damping device. The second system consists of three mass-stiffness-damping systems connected in series (i.e., the mathematical model is similar to a multi-storey frame). Thus, in combination with secondary TMD, in all four systems are studied. It is found that all the four systems give fairly good and similar results for the structure (up to 57% overall response reduction). However, Single storey stacked TMD system reduces the response of Primary TMD the most. Thus, this is the most effective system. Also, it is observed that multi-storey or Multi DOF TMD can be used in place of single storey or Single DOF TMD to distribute the heavy TMD mass along the different DOFs.
机译:放置在摩天大楼的调谐质量阻尼器(TMDS)显示出巨大的偏转和加速,因为它们从主要结构中吸收了大量的能量。需要使用一些额外的阻尼器来控制这些TMDS的响应,以保持其动作在检查。目前的论文处理了类似系统(堆叠TMD系统)的数值研究,其中用于控制主TMD(初级TMD)的TMD(辅助TMD),反过来用于控制结构。主要TMD也类似于重要的设备,例如放置在需要控制的建筑物中的服务器。在这项研究中,在跨风负载下研究了76层基准建筑的响应。建筑物的动态时间历史分析在Matlab 2010A中使用状态空间方法数据执行。除了偏转,还评估漂移和加速度响应。已经研究了两个主要TMD系统。一个系统由传统TMD,即单个质量刚度阻尼装置组成。第二系统由串联连接的三个质量刚度阻尼系统(即,数学模型类似于多层帧)。因此,与次级TMD组合,在所有四种系统中都是在研究中。结果发现,所有四种系统对结构(总体反应的总体反应增长57%)提供了相当良好的良好和类似的结果。但是,单层堆叠TMD系统最多减少了主要TMD的响应。因此,这是最有效的系统。而且,观察到,可以使用多层或多DOF TMD代替单层或单独的DOF TMD以沿着不同的DOF分配重的TMD质量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号