A Simplified Matrix Analysis Approach to Multi Storey Buildings Involving a Friction Damper

IF 0.6 Q4 ENGINEERING, CIVIL
K. Gharra, K. Khanlari, J. Asgari, Mohammad
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Abstract

Abstract Damping through friction tends to be one of the most efficient methods to suppress damage to structures from earthquakes. Realizing robust structures is therefore highly dependent on designing for the dynamic forces of friction- damped structures and exploring their reliability against natural disasters. This paper presents a simplified matrix analysis algorithm for multi-storey friction- damped buildings. We have analyzed the behavior of friction- damped systems more accurately by modeling the master-slave degree of freedom of the joints. First, the formulation of the problem is discussed, and a condensed general equation is derived. Then, an end- to- end solution is proposed to find the responses of structures. The displacement response of each storey has been carried out in both condensed and non-condensed general equations, and the results clearly show the accuracy of the proposed method. The numerical analysis and the results of the simulation of various friction- damped structures depicts the proposed approach consists with the commercial finite element method and is applicable for the analysis various types of structures. It is noted that the acceleration and displacement responses of the structures investigated under the proposed method and the traditional finite element method are so consistent that only a 1.5% difference is observed. Moreover, as a result of the proper allocation of degrees of freedom during the analysis, this method yields a reduction in computational costs especially in large buildings.
含摩擦阻尼器的多层建筑的简化矩阵分析方法
摘要摩擦阻尼往往是抑制地震对结构损伤的最有效方法之一。因此,实现结构的鲁棒性在很大程度上取决于摩擦阻尼结构的动力设计和对其抗自然灾害可靠性的探索。本文提出了一种多层摩擦阻尼建筑的简化矩阵分析算法。通过对关节主从自由度的建模,我们更准确地分析了摩擦阻尼系统的行为。首先,讨论了该问题的公式,导出了一个简明的一般方程。然后,提出了一种端到端的求解方法来求解结构的响应。在凝聚和非凝聚的一般方程中对各层的位移响应进行了计算,结果清楚地表明了该方法的准确性。数值分析和各种摩擦阻尼结构的模拟结果表明,所提出的方法与商业有限元方法相结合,适用于分析各种类型的结构。值得注意的是,在所提出的方法和传统有限元方法下研究的结构的加速度和位移响应非常一致,仅观察到1.5%的差异。此外,由于在分析过程中正确分配了自由度,这种方法降低了计算成本,尤其是在大型建筑中。
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来源期刊
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0.00%
发文量
21
审稿时长
29 weeks
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