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首页> 外文期刊>The Structural Design of Tall and Special Buildings >Seismic retrofit of a high-rise steel moment-resisting frame using fluid viscous dampers
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Seismic retrofit of a high-rise steel moment-resisting frame using fluid viscous dampers

机译:使用流体粘性阻尼器对高层钢抗弯框架进行抗震改造

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摘要

The Tall Building Initiative project of Pacific Earthquake Engineering Research Center has been expanded to investigate the seismic performance and possible retrofit of existing tall buildings. A candidate 35-story steel building with representative details from the early 1970s was analyzed following several guidelines, which revealed a wide range of potential inadequacies. Thus, a two-level retrofit approach was examined that focused on achieving the collapse prevention limit state under the major basic safety earthquake (BSE-2E) hazard level prescribed by ASCE 41. This paper focused on a Level-2 retrofit that used fluid viscous dampers to augment Level-1 retrofits. For this approach, feasible damper locations and overall effective damping ratios were first evaluated through a series of preliminary studies, and then a two-phase design method was used to refine the distribution and mechanical properties of the dampers. Thorough assessments of the refined design were carried out following several design guidelines, including ASCE 41, FEMA 351, and FEMA P-58. The results indicated that the proposed retrofit method of using fluid viscous dampers could achieve the retrofit goal and provide a cost-effective means of improving the structural behavior and reducing economic losses in a major seismic event.
机译:太平洋地震工程研究中心的高层建筑计划项目已经扩展,以研究现有高层建筑的抗震性能和可能的改造。按照几项准则对一座具有1970年代初期代表性细节的35层钢结构候选建筑进行了分析,发现了许多潜在的不足之处。因此,研究了一种二级改进方法,该方法着重于在ASCE 41规定的主要基本安全地震(BSE-2E)危险等级下实现防塌极限状态。本文着重于使用流体粘性的二级改进阻尼器,以增强Level-1的改造。对于这种方法,首先通过一系列初步研究评估了可行的阻尼器位置和总体有效阻尼比,然后使用两阶段设计方法来完善阻尼器的分布和机械性能。按照包括ASCE 41,FEMA 351和FEMA P-58在内的几项设计指南,对完善的设计进行了全面评估。结果表明,所提出的使用流体粘性阻尼器的改造方法可以达到改造目的,并提供一种在重大地震事件中改善结构性能并减少经济损失的经济有效的手段。

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