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Torsional Seismic Response Control Of Asymmetric-plan Systems By Using Viscous Dampers

机译:粘滞阻尼器控制非对称平面系统的扭转地震响应

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摘要

A new approach to locating viscous dampers optimally is herein presented in order to control the torsional seismic response of asymmetric-plan buildings. Firstly, the effects of the plan-wise distribution of supplemental damping on torsionally dynamic behavior have been investigated by using modal analysis techniques in the state space representation in order to highlight the main physical aspects of the problem. Optimal design criteria have then been carried out by evaluating the H_∞ and H_2 norms of the transfer function relating the maximum edge displacement to the input seismic excitation. These norms represent suitable performance indexes to investigate the optimal plan-wise distribution of extra-structural dampers by means of parametrical analysis on varying the dynamic characteristics of the asymmetric-plan system. The numerical constraints on the mechanical parameters related to the practical application of the proposed control strategy are taken into account. Simple design formulae to model the results for the H_2 norm are proposed and positively verified through broad numerical experimentation which compared the seismic response of asymmetric systems to synthetic and real excitations for different design strategies in a plan-wise arrangement of supplemental damping.
机译:为了控制非对称平面建筑物的扭转地震响应,本文提出了一种最佳定位粘性阻尼器的新方法。首先,通过在状态空间表示中使用模态分析技术,研究了附加阻尼的平面分布对扭转动力行为的影响,以突出问题的主要物理方面。然后,通过评估传递函数的H_∞和H_2范数(将最大边缘位移与输入地震激励相关联)来执行最佳设计准则。这些规范代表了适当的性能指标,可通过对不对称计划系统的动态特性进行参数分析来研究结构外阻尼器的最佳计划方向分布。考虑到与所提出的控制策略的实际应用相关的机械参数的数值约束。提出了一个简单的设计公式来对H_2范数的结果进行建模,并通过广泛的数值实验得到了肯定的验证,该实验将非对称系统对合成激励和真实激励的地震响应进行了比较,并在平面布置的补充阻尼中进行了比较。

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