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Optimum design of linear tuned mass dampers for structures with nonlinear behaviour

机译:具有非线性特性的结构的线性调谐质量阻尼器的优化设计

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This paper investigates the optimum design of tuned mass dampers (TMDs) for the seismic protection of inelastic structures. A single linear TMD is treated and is assumed to be applied to a single nonlinear degree of freedom system, described by the Bouc-Wen hysteretic model. The seismic load is modelled by a stationary filtered stochastic process to consider its intrinsic stochastic nature. The optimization problem is set by taking into consideration three different possible objective functions (OFs): the maximum of the peak structural displacement standard deviation, the average hysteretic dissipated energy of a protected building with reference to an unprotected one, and a functional damage that considers the two indexes previously described. Different numerical examples and parametric analysis are shown to confront the three optimization criteria and to determine the best tuning frequency and damping ratio of the TMDs to be used in the structure. Results confirm that the application of a TMD system reduces the amount of the hysteretic dissipated energy, which is a direct measure of damage in the structure, and so it is beneficial for the protection of buildings that develop a nonlinear behaviour under severe dynamic loadings.
机译:本文研究了用于非弹性结构地震防护的调谐质量阻尼器(TMD)的最佳设计。对单个线性TMD进行了处理,并假定将其应用到由Bouc-Wen磁滞模型描述的单个非线性自由度系统。通过静态滤波随机过程对地震载荷进行建模,以考虑其固有随机性。通过考虑三个不同的可能目标函数(OF)来设置优化问题:峰值结构位移标准偏差的最大值,受保护建筑物相对于未受保护建筑物的平均滞后耗能以及考虑到功能损害的功能前面描述的两个索引。展示了不同的数值示例和参数分析来面对这三个优化标准,并确定要在结构中使用的TMD的最佳调谐频率和阻尼比。结果证实,TMD系统的应用减少了滞后耗散的能量,这是结构损坏的直接量度,因此对于保护在严重动态载荷下表现出非线性行为的建筑物是有益的。

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