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NUMERICAL PERFORMANCE EVALUATION OF A BI-DIRECTIONAL ROLLER SEISMIC ISOLATION BEARINGS

机译:双向滚子地震隔离轴承的数值评价

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Base isolation systems (BISs) are devices that mitigate the harmful effects of earthquakes on structures. Nowadays, designers are implementing this technology to bridge and building special projects located in areas of high seismic risk to improve their performance under earthquake excitations. However, high cost, uncertainty and lack of knowledge in the design have limited its massive use, specially in developing countries. According to the mechanical behavior, BISs are clasiffied in elastomeric bearings, sliding bearings and roller bearings. In this work, the performance of a bi-directional roller bearings system was evaluated;;thus, the main objective of this publication is to show the efficiency of a bi-directional roller bearing in improving the structural seismic response of multicolumn systems by means of reducing accelerations and displacements. A numerical code in Matlab was written to simulate the response of the structures under base excitations, the finite element method (FEM) in conjunction with frame elements was used to solve the governing equations. The validation of the numerical model was done by direct comparisons between experimental and numerical data.
机译:基本隔离系统(BISS)是减轻地震对结构的有害影响的装置。如今,设计人员正在实施这项技术,以弥合在高地震风险范围内的特殊项目,以提高地震激励下的性能。然而,设计的高成本,不确定性和缺乏知识,特别是在发展中国家的大量使用。根据机械行为,BISS在弹性体轴承中侵入,滑动轴承和滚子轴承。在这项工作中,评估了双向滚子轴承系统的性能;因此,本出版物的主要目的是借助于通过减少加速和流离失所。写入MATLAB中的数值代码来模拟基础激发下的结构的响应,用于解决帧元件的有限元方法(FEM)来解决控制方程。通过在实验和数值数据之间的直接比较来完成数值模型的验证。

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