延性桥墩桥梁接缝间隙的最佳尺寸

IF 3.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Yoel Michael Habteghebriel, Ioannis G. Mikes, Andreas J. Kappos
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引用次数: 0

摘要

本研究提出了一种新的桥梁抗震设计思路,将最佳接缝间距作为桥梁的设计参数之一;该方法将接缝间隙的优化与桥墩耗能的“主流”抗震设计相结合。本研究的另一个贡献是评估桥梁结构对最佳接缝间隙大小选择的影响,重点关注墩高对延性桥墩的影响。研究发现,当以满足规范标准为目标时,在两个方向上设计最优间隙尺寸的桥梁可以显著降低桥墩配筋要求,同时,超过规定性能标准(极限状态)的安全裕度几乎不受影响。另一方面,所需的设计工作量不可避免地会增加。关于桥墩高度的影响,一个有趣的发现是,随着桥墩高度的增加,导致灵活性增加,从而导致更大的位移,桥梁的其他组成部分,如桥台-回填系统,往往成为确定最佳间隙的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Optimum joint gap size in bridges with Ductile Piers

Optimum joint gap size in bridges with Ductile Piers

The present study puts forward a novel approach for seismic design of bridges, wherein the optimum joint gap size is one of the design parameters of the bridge; the methodology integrates the optimization of the joint gap with a ‘mainstream’ seismic design for energy dissipation in the piers. Another contribution of this study is the assessment of the effect of bridge configuration on the selection of the optimum joint gap sizes, focusing on the effect of pier height for bridges with ductile piers. It is found that designing bridges for optimal gap sizes in both directions leads to a notable reduction in pier reinforcement requirements when the aim is to satisfy the Code criteria while, at the same time, the safety margin against exceeding the specified performance criteria (limit states) remains practically unaffected. On the other hand, the required design effort inevitably increases. Regarding the effect of pier height, an interesting finding is that as piers increase in height, leading to increased flexibility and, hence, larger displacements, other components of the bridge, such as the abutment-backfill system, tend to become the critical ones in identifying the optimum gaps.

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来源期刊
Bulletin of Earthquake Engineering
Bulletin of Earthquake Engineering 工程技术-地球科学综合
CiteScore
8.90
自引率
19.60%
发文量
263
审稿时长
7.5 months
期刊介绍: Bulletin of Earthquake Engineering presents original, peer-reviewed papers on research related to the broad spectrum of earthquake engineering. The journal offers a forum for presentation and discussion of such matters as European damaging earthquakes, new developments in earthquake regulations, and national policies applied after major seismic events, including strengthening of existing buildings. Coverage includes seismic hazard studies and methods for mitigation of risk; earthquake source mechanism and strong motion characterization and their use for engineering applications; geological and geotechnical site conditions under earthquake excitations; cyclic behavior of soils; analysis and design of earth structures and foundations under seismic conditions; zonation and microzonation methodologies; earthquake scenarios and vulnerability assessments; earthquake codes and improvements, and much more. This is the Official Publication of the European Association for Earthquake Engineering.
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