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A superelastic protective technique for mitigating the effects of vertical and horizontal seismic excitations on highway bridges

机译:一种减轻公路桥梁垂直和水平地震激励影响的超弹性防护技术

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摘要

Vertical component of seismic excitations tremendously affects the performance of bridges during the earthquakes. Several conducted studies identified the lack of engineering attention to the vertical seismic excitation as the main reason of various considerable bridge damages during the past earthquakes. Thus, in this article, an innovative system with superelastic properties is proposed for retrofitting and also new design of the bridges which can simultaneously mitigate the effects of vertical and horizontal seismic excitations. In order to investigate the efficiency of the new system, an evaluation is performed through many nonlinear time history analyses on a three-dimensional model of a detailed multi-span simply supported bridge using a suite of representative ground motions of the bridge region. The analyses are conducted separately on the pertinent issues that affect the performance of the new proposed system. As a part of the study, to identify the sensitivity of the new system and evaluate the overall seismic performance, several assessment parameters are utilized. The results show that the proposed system is efficient for reducing bridge responses as well as improving nonlinear performance of the columns during vertical and horizontal seismic excitations.
机译:地震激励的垂直分量极大地影响了地震期间桥梁的性能。几项进行的研究表明,对垂直地震激励的缺乏工程关注是过去地震中各种桥梁重大损坏的主要原因。因此,在本文中,提出了一种具有超弹性特性的创新系统进行改造,并提出了桥梁的新设计,可以同时减轻垂直和水平地震激励的影响。为了研究新系统的效率,通过使用一系列桥梁区域的代表性地震动,对详细的多跨简支桥梁的三维模型进行了许多非线性时程分析,从而进行了评估。对影响新提议系统性能的相关问题分别进行分析。作为研究的一部分,为了确定新系统的敏感性并评估整体地震性能,使用了多个评估参数。结果表明,所提出的系统可有效减少桥梁响应以及改善竖向和水平地震激励过程中柱的非线性性能。

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