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Evaluating and improving the seismic performance of older tall buildings

机译:评估和改善高层高层建筑的抗震性能

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摘要

The seismic performance of new tall buildings located in regions of high seismic hazard has been recently investigated by Pacific Earthquake Engineering Research (PEER) Center under its Tall Buildings Initiative (TBI) program. The Tall Building Initiative has now expanded to assess the seismic performance of existing tall buildings. Buildings being considered are 20 stories or more in height, and constructed on the West Coast of the U.S. between about 1960 and 1990. During this period, several hundred tall buildings were constructed in California, but earthquake-resistant design procedures had not yet been fully developed. From these structures, a 35-story steel building, designed in 1968, and having representative details from that period, was selected for evaluation. In this paper, results of three-dimensional nonlinear analysis models developed to assess the seismic performance of this structure are presented. Two earthquake hazard levels are used for the evaluation. Structural analysis results are interpreted to assess the impact of suspected deficiencies on seismic response, and the ability of different evaluation guidelines, numerical models and analysis methods to identify seismic vulnerabilities. A feasible retrofit strategy was identified. Recommendations are offered for further research and guideline evaluation.
机译:太平洋地震工程研究(PEER)中心根据其高层建筑计划(TBI)计划最近对位于高地震危险区域的新高层建筑的抗震性能进行了研究。高层建筑计划现已扩展到评估现有高层建筑的抗震性能。所考虑的建筑物的高度为20层或以上,并于1960年至1990年之间在美国西海岸建造。在此期间,加利福尼亚建造了几百座高层建筑,但抗震设计程序尚未完全完成发达。从这些结构中,选择了一座于1968年设计的35层高的钢结构建筑,该建筑具有当时的代表性细节,用于评估。本文介绍了用于评估该结构抗震性能的三维非线性分析模型的结果。评估使用两个地震危险等级。解释结构分析结果以评估可疑缺陷对地震响应的影响,以及不同评估准则,数值模型和分析方法识别地震脆弱性的能力。确定了可行的改造策略。提供了建议,以供进一步研究和指南评估。

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