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Multiobjective optimal absorber system for torsionally coupled seismically excited structures

机译:扭转耦合地震激励结构的多目标最优吸收系统

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Few practical building structures can be modeled as planar structures, but in most of the research work on structural vibration control, only two-dimensional plane structural modeling has been considered, rendering these methods ineffective for the majority of practical building structures. This paper discusses multiobjective optimal design of an absorber system for torsionally coupled seismically excited buildings. This absorber system consists of four TMDs arranged in such a way that the system can control the torsional mode of vibration effectively in addition to the flexure modes. Nondimensionalized peak displacement, acceleration and rotation of the structure about its vertical axis have been considered as the three objective functions for multiobjective optimal design of the absorber system. A multiobjective version of the genetic algorithm has been used to obtain the design parameters of the absorber system.
机译:很少有可以将实际建筑结构建模为平面结构的模型,但是在有关结构振动控制的大多数研究工作中,仅考虑了二维平面结构建模,这使得这些方法对大多数实际建筑结构均无效。本文讨论了扭转耦合地震激励建筑物的减振系统的多目标优化设计。该吸收器系统由四个TMD组成,这些TMD的布置方式使得该系统除弯曲模式外,还可以有效地控制振动的扭转模式。结构的无量纲峰值位移,加速度和绕其垂直轴的旋转已被视为吸收器系统多目标优化设计的三个目标函数。遗传算法的多目标版本已用于获取吸收器系统的设计参数。

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