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Study on Methods to Control Interstory Deflections

机译:控制壁垒偏转的方法研究

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One of the possibilities to prevent building pounding between two adjacent structures is to consider appropriate in-between separation distance. Another approach might be focused on controlling the relative displacements during seismic excitations. Although the majority of building codes around the world recommend the use of some equations of various distances between structures to avoid pounding; a lot of reports after earthquakes have obviously shown that safety situation or economic consideration is not always provided due to the collisions between buildings and high cost of land; respectively. The aim of the present paper is to focus the analysis on the properties of structures and conduct an in-depth analysis of available methods to control interstory deflections so as to prevent pounding. For this purpose, a numerical lumped mass model of the five-story building has been considered and its response under different earthquake records has been investigated. Firstly, the influence of the change in structural properties (story stiffness; mass and damping) has been examined. Then the application of tuned mass damper, base isolation and base isolation with rubber bumpers has been considered. The results of comparative analyses clearly indicate that using base isolation, with the addition of bumpers, can be selected as the best method to control building deflections and decrease absolute lateral displacement between two buildings so as to prevent their pounding during earthquakes .
机译:防止两个相邻结构之间撞击的可能性之一是考虑适当的分离距离。另一种方法可以集中在震动期间控制相对位移。虽然全球大部分建筑规范建议使用结构之间各种距离的一些方程来避免冲击;地震后的大量报道显然表明,由于建筑物与陆地成本高的碰撞,并不总是提供安全情况或经济考虑;分别。本文的目的是将分析对结构的性质进行了重点,并对可用方法进行了深入的分析,以控制壁炉型偏转,以防止冲击。为此目的,已经考虑了五层建筑的数值小块质量模型,并研究了不同地震记录下的反应。首先,研究了结构性变化(故事刚度;质量和阻尼)的影响。然后考虑了调谐质量阻尼器,基座隔离和基座隔离与橡胶保险杠的应用。比较分析结果清楚地表明,使用碱隔离,加入保险杠,可以选择控制建筑物偏转的最佳方法,并降低两个建筑物之间的绝对横向位移,以防止其在地震期间的冲击。

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