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Temporal evolution of seismic fragility curves for concrete box-girder bridges in California

机译:加利福尼亚混凝土箱梁桥地震脆性曲线的时间演变

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Fragility analyses is a powerful tool for the seismic risk assessment of highway bridges. Multispan continuous concrete box-girder bridges account for the bulk of the California bridge inventory. Although several studies have looked at the seismic response and fragility of individual box-girder bridges, very little research has explored the fragility of the box-girder bridge class holistically. Exacerbating this situation is the lack of considerations of design details unique to the era in which the bridges were designed and constructed, in their fragility development. This paper addresses this gap by investigating the influence of evolution of seismic design principles and details on the seismic performance of multispan continuous concrete box-girder bridge class, as well as the failure probability through the development of fragility curves across three design eras demarcated by the 1971 San Fernando and 1989 Loma Prieta earthquakes. Detailed nonlinear analytical models capturing the bridge characteristics within a design era are developed and nonlinear time history analysis is employed to develop analytical fragility curves. Significant improvement in performance is seen in modern bridges designed according to capacity design principles. (C) 2015 Elsevier Ltd. All rights reserved.
机译:易损性分析是评估公路桥梁地震风险的有力工具。多跨连续混凝土箱梁桥占加州桥梁库存的大部分。尽管有几项研究着眼于单个箱梁桥的地震响应和易损性,但很少有研究从整体上探讨箱梁桥类的易碎性。使这种情况恶化的是,在桥梁的脆弱性发展过程中,缺乏桥梁设计和建造时代所独有的设计细节。本文通过调查抗震设计原理和细节的演变对多跨连续混凝土箱梁桥抗震性能的影响以及通过在三个设计时代划分的脆弱性曲线的发展来确定破坏概率,从而解决了这一空白。 1971年圣费尔南多(San Fernando)和1989年洛马普里塔(Loma Prieta)地震。开发了在设计时代捕获桥梁特性的详细非线性分析模型,并采用了非线性时程分析来绘制易碎性分析曲线。在根据能力设计原则设计的现代桥梁中,可以看到性能的显着提高。 (C)2015 Elsevier Ltd.保留所有权利。

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