首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Optimality criteria based seismic design of multiple tuned-mass-dampers for the control of 3D irregular buildings
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Optimality criteria based seismic design of multiple tuned-mass-dampers for the control of 3D irregular buildings

机译:基于最优准则的多重调谐质量阻尼器抗震设计,用于控制3D不规则建筑物

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摘要

Multiple tuned mass dampers (MTMDs) tuned to various frequencies have been shown to efficiently control the seismic response of structures where multiple modes are dominant. One example is irregular structures that are found more vulnerable than their symmetric counterparts. With the technology of MTMDs available, design and optimal design methodologies are required for application. Such a methodology, in the form of an analysis/redesign (A/R) scheme, has been previously presented by the authors while limiting responses of interest to allowable values, i.e., performance-based design (PBD). In this paper, the A/R procedure is modified based on formal optimality criteria, making it more cost efficient, as well as more computationally efficient. It is shown that by using the methodology presented herein, a desired performance level is successfully targeted by adding near-optimal amounts of mass at various locations and tuning the TMDs to dampen several of the structure's frequencies. This is done using analysis tools only.
机译:已显示调谐到各种频率的多重调谐质量阻尼器(MTMD)可有效控制以多种模式为主的结构的地震响应。一个例子是不规则结构,它比对称结构更易受攻击。随着可用的MTMD技术的出现,需要应用设计和最佳设计方法。作者先前已经提出了这种以分析/重新设计(A / R)方案形式的方法,同时将感兴趣的响应限制为允许的值,即基于性能的设计(PBD)。在本文中,基于正式的最优标准对A / R程序进行了修改,使其更具成本效益,并且在计算效率上也更高。结果表明,通过使用本文介绍的方法,可以通过在各个位置添加近乎最佳的质量并调整TMD来衰减结构的多个频率来成功达到所需的性能水平。仅使用分析工具即可完成此操作。

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