首页> 外文期刊>Journal of Structural Engineering >Influence of Stiffness and Damping Parameters of Passive Seismic Control Devices in One-Sided Rocking of Masonry Walls
【24h】

Influence of Stiffness and Damping Parameters of Passive Seismic Control Devices in One-Sided Rocking of Masonry Walls

机译:被动式抗震装置刚度和阻尼参数对砌体墙体单侧摇摆的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This paper analyzes the influence of horizontal damped and undamped restraints in terms of the amplification of the response of rocking masonry walls subjected to seismic excitations. It also makes a practical contribution to the design of antiseismic devices conceived to control rocking motion, avoiding or at least limiting undesirable response amplifications that would lead to local or global failure. A horizontal restraint, simulating an elastoplastic steel tie-rod, was coupled with a damper, whose action is included in a proposed equation of motion. Parametric analyses were performed for three typical facades of masonry buildings, showing that, if the stiffness of tie-rod increases, the seismic vulnerability of a rocking facade is not necessarily reduced. Therefore, the calculation of rocking spectra is recommended in order to identify stiffness ranges in which amplification could occur. A simple method for calculating the design damping coefficient of a shock absorber is proposed and the consequent mitigation of vulnerability is demonstrated in various analysis configurations. Graphs plotting time-dependent ratios between the energy dissipated by the shock absorber and the seismic input energy are shown to be a useful tool for quantifying the effectiveness of the shock absorber itself in dissipating energy. The reduction of these time-dependent ratios occasionally observed for specific earthquake time ranges reveals that adverse frequencies are occasionally present in seismic excitation and allows for the identification of the optimal damping coefficient.
机译:本文从地震激励下摇摆砌体墙响应放大的角度分析了水平阻尼和无阻尼约束的影响。它还为设计旨在控制摇摆运动的抗震装置做出了实际贡献,避免或至少限制了可能导致局部或全局故障的不良响应放大。模拟弹塑性钢拉杆的水平约束装置与阻尼器耦合,阻尼器的作用包含在建议的运动方程中。对3种典型砌体建筑立面进行了参数分析,结果表明,如果拉杆刚度增加,摇摆立面的抗震脆弱性不一定会降低。因此,建议计算摇摆光谱,以确定可能发生放大的刚度范围。提出了一种计算减震器设计阻尼系数的简单方法,并在各种分析配置中演示了由此产生的脆弱性缓解方法。绘制减震器耗散的能量与地震输入能量之间随时间变化的比率的图表被证明是量化减震器本身在耗散能量方面的有效性的有用工具。在特定地震时间范围内偶尔观察到的这些瞬态比的降低表明,地震激励中偶尔会出现不利频率,并且可以确定最佳阻尼系数。

著录项

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