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Seismic Performance of Reinforced Concrete Bridges Allowed to Uplift During Multi-Directional Excitation.

机译:钢筋混凝土桥梁在多向激励过程中的抗震性能。

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摘要

The behavior of bridges subjected to recent moderate and large earthquakes has led to bridge design detailed for better seismic performance, particularly through wider bridge foundations to handle larger expected design forces. Foundation uplift, which is not employed in conventional bridge design, has been identified as an important mechanism, in conjunction with structural yielding and soil-structure interaction that may dissipate energy during earthquakes. Preventing uplift through wider foundations looks past the technical and economical feasibility of allowing foundation uplift during seismic events. The research presented in this thesis is part of a larger experimental and analytical investigation to develop and validate design methods for bridge piers on shallow foundations allowed to uplift during seismic events.;Several analytical and some experimental studies have been performed to assess rocking and or uplift of shallow foundation systems, however they have evaluated systems with a limited range of footing dimensions and seismic excitations. As such, there is an uncertainty in the information needed to base a performance evaluation and develop design methods. The purpose of this study is to investigate, through experimental and analytical studies, the seismic performance of uplifting bridge piers on shallow foundations when considering different ground motions and footing dimensions. As well as to identify key differences in performance evaluation criteria for conventional and uplifting bridge pier systems.;The experimental study dynamically tested a single reinforced concrete bridge column specimen with three adjustable footing configurations grouped by footing dimension, and tested for various combinations of one, two, and three components of seismic excitation. Groups one and two evaluated uplifting systems where the column was limited to elastic loading levels while group three considered inelastic column loading levels. All test groups remained stable and exhibited some rocking and or uplift during testing. Analytical models were developed and validated using the experimental testing results to predict local and global footing and column response. Reliable estimates of forces and displacements during elastic and inelastic response were achieved. To assess the seismic performance of a range of bridge pier systems allowed to uplift a parametric investigation using the validated analytical models was performed in which the column was modeled per conventional design criteria to ensure adequate strength and flexural ductility. The parameters varied include footing width, ground motion excitation, and elastic or inelastic column response. Response of the uplifting bridge pier systems was found to be sensitive to the structural periods, magnitude of excitation, and footing width.
机译:近期遭受中,大地震的桥梁的行为导致桥梁设计进行了详细设计,以提高抗震性能,特别是通过扩大桥梁基础来应对更大的预期设计力。与传统的桥梁设计中未采用的地基隆起结合结构屈服和土-土相互作用可能被认为是一种重要的机制,在地震过程中可能会耗散能量。防止通过更宽的基础进行抬升看起来超出了在地震事件中允许基础抬升的技术和经济可行性。本文所进行的研究是较大的实验和分析研究的一部分,旨在开发和验证在地震事件中允许隆升的浅层基础上的桥墩的设计方法。;已经进行了数次分析和一些实验研究,以评估晃动和隆起浅基础系统,但是他们评估了有限范围的立足尺寸和地震激励系统。因此,基于性能评估和开发设计方法所需的信息存在不确定性。这项研究的目的是通过实验和分析研究,在考虑不同的地面运动和立足尺寸的情况下,研究浅层基础上抬高的桥墩的抗震性能。以及确定常规和提升桥墩系统的性能评估标准中的主要差异。;实验研究动态地测试了单个钢筋混凝土桥柱标本,该标本具有按脚基尺寸分组的三种可调式基脚配置,并测试了其中一种的各种组合,地震激励的两个和三个组成部分。第一组和第二组评估了提升系统,其中柱子被限制在弹性载荷水平,而第三组则考虑了非弹性柱子载荷水平。所有测试组保持稳定,并在测试过程中表现出一些摇摆和/或隆起。使用实验测试结果开发并验证了分析模型,以预测局部和全局立足点和柱响应。获得了弹性和非弹性反应期间力和位移的可靠估计。为了评估允许提升的一系列桥墩系统的抗震性能,使用经过验证的分析模型进行了参数研究,在该模型中,按照常规设计标准对立柱进行了建模,以确保足够的强度和挠曲延性。变化的参数包括基础宽度,地震动激励以及弹性或非弹性柱响应。发现抬升式桥墩系统的响应对结构周期,激励幅度和基础宽度敏感。

著录项

  • 作者

    Espinoza, Andres Oscar.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 333 p.
  • 总页数 333
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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