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Effect of Lead-Rubber Bearing Isolators in Reducing Seismic Damage for a High-Rise Building in Comparison with Normal Shear Wall System
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作者 Mahmoud Fakih Jaafar Hallal +1 位作者 Hassan Darwich Hala Damerji 《Structural Durability & Health Monitoring》 EI 2021年第3期247-260,共14页
Seismic earthquakes are a real danger for the construction evolution of high rise buildings.The rate of earthquakes around the world is noteworthy in a wide range of construction areas.In this study,we present the dyn... Seismic earthquakes are a real danger for the construction evolution of high rise buildings.The rate of earthquakes around the world is noteworthy in a wide range of construction areas.In this study,we present the dynamic behavior of a high-rise RC building with dynamic isolators(lead-rubber-bearing),in comparison with a traditional shear wall system of the same building.Seismic isolation has been introduced in building construction to increase the structural stability and to protect the non-structural components against the damaging effects of an earthquake.In order to clarify the influence of incorporating lead rubber bearing isolators in the seismic response and in reducing seismic damages;a comparative study is performed between a fixed base system(shear wall system)and an isolated base system(Lead Rubber Bearing)on an irregular high rise reinforced concrete(RC)building located in Beirut consisting of 48 storeys almost asymmetric orthogonally.For this purpose,a non-linear analysis of a real earthquake acceleration record(EI Centro seismic signal)is conducted,so that the mode shapes,the damping ratio and the natural frequencies of the two models are obtained using ETABS software.The results prove a substantial elongation of the building period,as well as a reduction in the building displacement,the roof acceleration,the inter-storey drift ratio and the base shear force of isolated building relative to fixed-base building.This study proves that this technology is applicable to high rise buildings with acceptable results. 展开更多
关键词 seismic damage non-linear time history analysis high-rise RC building seismic response analysis lead rubber bearing
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顶层空旷多层砌体结构的弹塑性地震反应分析
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作者 朱炎兵 韩兵康 胡再龙 《振动与冲击》 EI CSCD 北大核心 2004年第4期135-138,i011,共5页
将顶层空旷多层砌体结构简化为串并朕多质点分析模型 ,利用动力弹塑性时程分析方法对其进行了数值分析。系统地研究了顶层空旷多层砌体结构层数、顶层边墙与中柱刚度比和顶层横墙间距等参数变化时这种结构地震作用的一些变化规律。
关键词 顶层 多层砌体结构 弹塑性地震反应 横墙 弹塑性时程分析 地震作用 层数 质点 数值分析 简化
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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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