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Numerical simulation of the seismic behavior of building structures equipped with friction energy dissipators

机译:装有耗能器的建筑结构抗震性能的数值模拟。

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This paper presents a new algorithm to simulate the seismic response of N-story building frames incorporating friction energy dissipators; a device per floor is considered. The frames with the dissipators are described by 2D lumped masses models with two degrees of freedom per floor, namely the horizontal displacements of the main structure and of the dissipators. The proposed algorithm consists of a modification of the linear acceleration method; the main innovation consists of checking at each calculation instant the sliding or sticking condition at each floor, hence, the number of "active" degrees of freedom changes continuously, ranging in between N (there is sticking condition at every dissipator) and 2N (there is sliding condition at every dissipator). Some results given by this algorithm are compared to experimental results from ad-hoc testing and to numerical results obtained with the ADINA software package. In both cases, agreement is satisfactory while the proposed method is more computationally efficient.
机译:本文提出了一种新算法,用于模拟结合了摩擦耗能器的N层建筑框架的地震响应。考虑每层设备。带有耗散器的框架由2D集总质量模型描述,每层具有两个自由度,即主体结构和耗散器的水平位移。所提出的算法是对线性加速方法的一种改进。主要创新在于在每个计算瞬间检查每层地板的滑动或粘附状况,因此,“活动”自由度的数量连续变化,范围在N(每个耗散器都有粘附状况)和2N(有是每个耗散器的滑动状态)。将该算法给出的一些结果与临时测试的实验结果以及使用ADINA软件包获得的数值结果进行了比较。在这两种情况下,一致性都令人满意,而所提出的方法在计算上更有效。

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