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首页> 外文期刊>Journal of bridge engineering >Implications of Design Assumptions on Capacity Estimates and Demand Predictions of Multispan Curved Bridges
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Implications of Design Assumptions on Capacity Estimates and Demand Predictions of Multispan Curved Bridges

机译:设计假设对多跨弯桥承载力估算和需求预测的影响

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摘要

The paper presents a detailed seismic performance assessment of a complex bridge designed as a reference application of modern codes for the Federal Highway Administration. The assessment utilizes state-of-the-art assessment tools and response metrics. The impact of design assumptions on the capacity estimates and demand predictions of the multispan curved bridge is investigated. The level of attention to detail is significantly higher than can be achieved in a mass parametric study of a population of bridges. The objective of in-depth assessment is achieved through investigation of the bridge using two models. The first represents the bridge as designed (including features assumed in the design process) while the second represents the bridge as built (actual expected characteristics). Three-dimensional detailed dynamic response simulations of the investigated bridge, including soil-structure interaction, are undertaken. The behavior of the as-designed bridge is investigated using two different analytical platforms for elastic and inelastic analysis, for the purposes of verification. A third idealization is adopted to investigate the as-built bridge's behavior by realistically modeling bridge bearings, structural gaps, and materials. A comprehensive list of local and global, action and deformation performance indicators, including bearing slippage and inter-segment collision, are selected to monitor the response to earthquake ground motion. The comparative study has indicated that the lateral capacity and dynamic characteristics of the as-designed bridge are significantly different from the as-built bridge's behavior. The potential of pushover analysis in identifying structural deficiencies, estimating capacities, and providing insight into the pertinent limit state criteria is demonstrated. Comparison of seismic demand with available capacity shows that seemingly conservative design assumptions, such as ignoring friction at the bearings, may lead to an erroneous and potentially nonconservative response expectation. The recommendations assist be given to design engineers seeking to achieve realistic predictions of seismic behavior and thus contribute to uncertainty reduction in the ensuing design.
机译:本文介绍了一座复杂桥梁的详细抗震性能评估,该桥梁被设计为联邦公路管理局现代法规的参考应用。评估利用了最新的评估工具和响应指标。研究了设计假设对多跨弯桥的能力估计和需求预测的影响。对细节的关注程度明显高于对桥梁总体进行质量参数研究所能达到的程度。深入评估的目的是通过使用两种模型调查桥梁来实现的。第一个代表设计的桥梁(包括设计过程中假定的功能),第二个代表设计的桥梁(实际预期特性)。进行了所研究桥梁的三维详细动态响应仿真,包括土-结构相互作用。为了进行验证,使用两个不同的弹性和非弹性分析平台对桥的行为进行了研究。通过对桥梁支座,结构间隙和材料进行实际建模,采用第三种理想化方法来研究竣工桥梁的行为。选择了局部和全局,作用和变形性能指标的完整列表,包括轴承滑移和段间碰撞,以监视对地震地面运动的响应。比较研究表明,设计好的桥梁的侧向承载力和动力特性与已建成的桥梁的行为有很大不同。证明了推覆分析在识别结构缺陷,估计能力以及提供对相关极限状态标准的见解方面的潜力。将地震需求与可用容量进行比较表明,看似保守的设计假设(例如忽略轴承的摩擦力)可能会导致错误的响应以及潜在的非保守响应预期。这些建议有助于寻求现实地震行为预测的设计工程师,从而有助于减少后续设计的不确定性。

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