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Retrofit of suspension bridges in the Central and Eastern United States using distributed supplemental damping.

机译:在美国中部和东部使用分布式补充阻尼对悬索桥进行改造。

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摘要

The purpose of this investigation is to evaluate the use of distributed supplemental damping in the retrofit of suspension bridges in the central and eastern portions of the United States to decrease the seismic vulnerability of these bridges. Supplemental damping, a type of passive control, can be used to augment a structure's natural level of damping. This is achieved by installing devices such as fluid viscous dampers into the structure. Distributed damping refers to the placement of these devices at many points throughout a structure, rather than at a small number of discrete points. Three types of damping devices are considered: friction, hysteretic, and fluid viscous.; The study consists of two distinct phases. In phase I, a set of ground motion records is assembled. The set consists of both simulated and real recorded motions. The simulated ground motions used are based on previously developed synthetic motions characteristic of the Central and Eastern United States. The recorded ground motions consist of recordings of El Centro, Campano-Lucano, and San Fernando events. These motions were included due to their comparative value, high long-period motion content, and as a comparison to the long-period rich motions of the other records, respectively.; In the second phase, analytical methods are employed to evaluate the efficacy of the proposed retrofit. Finite element models of a realistic suspension bridge configuration are subjected to earthquake ground motions. Using these models, various types of damping devices are inserted throughout the suspension structure. Responses are calculated using nonlinear time history analyses of the finite element models.; The results of the investigation clearly indicate that the unretrofitted bridge is found to be vulnerable to seismic ground motions, even at very large epicentral distances. However, the use of distributed damping devices is effective in reducing response. A retrofit configuration is developed which substantially reduces the seismic demands on the superstructure and substructures. Of the three devices considered, friction and hysteretic damping devices are found to be the most effective, while fluid viscous devices prove difficult to implement.
机译:这项研究的目的是评估在美国中部和东部的悬索桥改造中使用分布式补充阻尼的情况,以减少这些桥梁的地震易损性。辅助阻尼是一种被动控制,可以用来增加结构的自然阻尼水平。这是通过将诸如流体粘性阻尼器之类的设备安装到结构中来实现的。分布式阻尼是指将这些设备放置在整个结构中的许多点,而不是少量的离散点。考虑了三种类型的阻尼装置:摩擦,滞后和流体粘性。该研究包括两个不同的阶段。在阶段I中,将收集一组地面运动记录。该集合包括模拟运动和实际运动。所使用的模拟地面运动基于美国中部和东部先前开发的合成运动特征。记录的地面运动包括El Centro,Campano-Lucano和San Fernando事件的记录。包括这些运动是由于它们的比较值,较高的长期运动内容以及分别与其他记录的长期富运动的比较。在第二阶段,采用分析方法来评估拟议改造的功效。实际悬索桥结构的有限元模型会经受地震地震动。使用这些模型,将各种类型的阻尼装置插入整个悬架结构。使用有限元模型的非线性时程分析来计算响应。调查结果清楚地表明,即使在震中距离很大的情况下,未改装的桥梁也容易受到地震地震动的影响。但是,使用分布式阻尼装置可有效降低响应。开发了一种改型配置,可大大减少对上部结构和下部结构的抗震要求。在所考虑的三个装置中,摩擦和滞后阻尼装置被认为是最有效的,而流体粘性装置被证明难以实施。

著录项

  • 作者

    Murphy, Thomas Paul.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Civil.; Transportation.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;综合运输;
  • 关键词

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