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基于单地震动记录IDA方法的结构倒塌分析 被引量:51
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作者 吕大刚 于晓辉 王光远 《地震工程与工程振动》 CSCD 北大核心 2009年第6期33-39,共7页
增量动力分析(Incremental Dynamic Analysis,IDA)作为静力Pushover分析的动力拓展,可以全面、准确地分析结构的性能变化,尤其可以很好地分析结构倒塌这一动力失稳问题。本文基于单地震动记录的IDA方法,提出了"折半取中"原则... 增量动力分析(Incremental Dynamic Analysis,IDA)作为静力Pushover分析的动力拓展,可以全面、准确地分析结构的性能变化,尤其可以很好地分析结构倒塌这一动力失稳问题。本文基于单地震动记录的IDA方法,提出了"折半取中"原则,以确定结构倒塌极限状态点。以一榀五层三跨钢筋混凝土框架结构为例,分别考虑钢筋强化模型、理想弹塑性模型和软化模型,对其进行倒塌分析。结果表明:钢筋的屈服后强化特性对结构抗倒塌能力具有显著的影响。 展开更多
关键词 增量动力分析 结构倒塌 “折半取中”原则 性能化地震工程
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The Role of Soil Investigation on Performance-based Design in Geotechnical Earthquake Engineering
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作者 Antonio Cavallaro Salvatore Grasso Michele Maugeri 《Journal of Civil Engineering and Architecture》 2010年第2期33-40,共8页
The spatial variability of geotechnical earthquake engineering critical parameters obtained by laboratory and in situ tests in the same area is affected by different measurements. The paper provides a brief synthesis ... The spatial variability of geotechnical earthquake engineering critical parameters obtained by laboratory and in situ tests in the same area is affected by different measurements. The paper provides a brief synthesis of ground motion and site effects analysis procedures within a Performance-Based Design framework. In particular it focuses about the influence on the evaluation of site effects in some active regions by different shear waves velocity measurements (Down Hole D-H and Seismic Dilatometer Marchetti Test SDMT). Moreover the variation of shear modulus and damping ratio with strain level and depth from different laboratory dynamic or cyclic tests for soil characterisation (Resonant Column Test RCT) was evaluated. The available data enabled one to compare the shear waves velocity profile obtained by laboratory and in situ tests (Cone Penetration Tests CPT) with empirical correlations proposed in literature. 展开更多
关键词 Seismic Dilatometer Marchetti Test (SDMT) shear wave velocity St. Giuliano di Puglia (Italy) seismic response analysis.
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Ground Motion and Site Effects on Performance-Based Design
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作者 Antonio Ferraro Salvatore Grasso Michele Maugeri 《Journal of Civil Engineering and Architecture》 2010年第7期34-41,共8页
The objective of Performance-Based Earthquake Engineering (PBEE) is the analysis of performance objectives with a specified annual probability of exceedance. Increasingly undesirable performance is caused by increas... The objective of Performance-Based Earthquake Engineering (PBEE) is the analysis of performance objectives with a specified annual probability of exceedance. Increasingly undesirable performance is caused by increasing levels of strong ground motion having decreasing annual probabilities of exceedance. The development of this methodology includes three steps: (1) evaluation of the distribution of ground motion at a site; (2) evaluation of the distribution of system response; (3) evaluation of the probability of exceeding decision variables within a given time period, given appropriate damage measures. The work has taken a systematic approach to determine the impact of increasing levels of detail in site characterization on the accuracy of ground motion and site effects predictions. Complementary studies have investigated the use of the following models for evaluating site effects: (1) amplification factors defined on the basis of generalized site categories, (2) one-dimensional ground response analysis, and (3) two-dimensional ground response analysis for surface topography on ground motion. The paper provides a brief synthesis of ground motion and site effects analysis procedures within a Performance-Based Design framework. It focuses about the influence on the evaluation of site effects in some active regions by different shear waves velocity measurements Down Hole (D-H), Cross Hole (C-H), Seismic Dilatometer Marchetti Test (SDMT) and by different variation of shear modulus and damping ratio with strain level and depth from different laboratory dynamic tests for soil characterization: Resonant Column Test (RCT), Cyclic Loading Torsional Shear Test (CLTST). 展开更多
关键词 Site effects Performance Based Design (PBD) ground motion soil non-linearity seismic response analysis
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