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Influence of Vertical Irregularity on the Seismic Behavior of Base Isolated RC Structures with Lead Rubber Bearings under Pulse-Like Earthquakes
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作者 Ali Mahamied Amjad AYasin +2 位作者 Yazan Alzubi Jamal Al Adwan Issa Mahamied 《Structural Durability & Health Monitoring》 EI 2023年第6期501-519,共19页
Nowadays,an extensive number of studies related to the performance of base isolation systems implemented in regular reinforced concrete structures subjected to various types of earthquakes can be found in the literatu... Nowadays,an extensive number of studies related to the performance of base isolation systems implemented in regular reinforced concrete structures subjected to various types of earthquakes can be found in the literature.On the other hand,investigations regarding the irregular base-isolated reinforced concrete structures’performance when subjected to pulse-like earthquakes are very scarce.The severity of pulse-like earthquakes emerges from their ability to destabilize the base-isolated structure by remarkably increasing the displacement demands.Thus,this study is intended to investigate the effects of pulse-like earthquake characteristics on the behavior of low-rise irregular base-isolated reinforced concrete structures.Within the study scope,investigations related to the impact of the pulse-like earthquake characteristics,irregularity type,and isolator properties will be conducted.To do so,different values of damping ratios of the base isolation system were selected to investigate the efficiency of the lead rubber-bearing isolator.In general,the outcomes of the study have shown the significance of vertical irregularity on the performance of base-isolated structures and the considerable effect of pulse-like ground motions on the buildings’behavior. 展开更多
关键词 Reinforced concrete low-rise structure vertical irregularity the influence of pulse-like earthquake characteristics lead rubber bearing isolators nonlinear response history analysis
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Numerical Analysis of Seismic Elastomeric Isolation Bearing in the Base-Isolated Buildings
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作者 M. Jabbareh Asl M. M. Rahman A. Karbakhsh 《Open Journal of Earthquake Research》 2014年第1期1-4,共4页
Base isolation concept is currently accepted as a new strategy for earthquake resistance structures. According to different types of base isolation devices, laminated rubber bearing which is made by thin layers of ste... Base isolation concept is currently accepted as a new strategy for earthquake resistance structures. According to different types of base isolation devices, laminated rubber bearing which is made by thin layers of steel shims bonded by rubber is one of the most popular devices to reduce the effects of earthquake in the buildings. Laminated rubber bearings should be protected against failure or instability because failure of isolation devices may cause serious damage on the structures. Hence, the prediction of the behaviour of the laminated rubber bearing with different properties is essential in the design of a seismic bearing. In this paper, a finite element modeling of the laminated rubber bearing is presented. The procedures of modeling the rubber bearing with finite element are described. By the comparison of the numerical and the experimental, the validities of modelling and results have been determined. The results of this study perform that there is a good agreement between finite element analysis and experimental results. 展开更多
关键词 base-Isolated Structure SEISMIC isolation bearing LAMINATED rubber bearing Finite Element Analysis
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Simulation of the response of base-isolated buildings under earthquake excitations considering soil flexibility 被引量:10
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作者 Sayed Mahmoud Per-Erik Austrell Robert Jankowski 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2012年第3期359-374,共16页
The accurate analysis of the seismic response of isolated structures requires incorporation of the flexibility of supporting soil. However, it is often customary to idealize the soil as rigid during the analysis of su... The accurate analysis of the seismic response of isolated structures requires incorporation of the flexibility of supporting soil. However, it is often customary to idealize the soil as rigid during the analysis of such structures. In this paper, seismic response time history analyses of base-isolated buildings modelled as linear single degree-of-freedom (SDOF) and multi degree-of-freedom (MDOF) systems with linear and nonlinear base models considering and ignoring the flexibility of supporting soil are conducted. The flexibility of supporting soil is modelled through a lumped parameter model consisting of swaying and rocking spring-dashpots. In the analysis, a large number of parametric studies for different earthquake excitations with three different peak ground acceleration (PGA) levels, different natural periods of the building models, and different shear wave velocities in the soil are considered. For the isolation system, laminated rubber bearings (LRBs) as well as high damping rubber bearings (HDRBs) are used. Responses of the isolated buildings with and without SSI are compared under different ground motions leading to the following conclusions: (1) soil flexibility may considerably influence the stiff superstructure response and may only slightly influence the response of the flexible structures; (2) the use of HDRBs for the isolation system induces higher structural peak responses with SSI compared to the system with LRBs; (3) although the peak response is affected by the incorporation of soil flexibility, it appears insensitive to the variation of shear wave velocity in the soil; (4) the response amplifications of the SDOF system become closer to unit with the increase in the natural period of the building, indicating an inverse relationship between SSI effects and natural periods for all the considered ground motions, base isolations and shear wave velocities; (5) the incorporation of SSI increases the number of significant cycles of large amplitude accelerations for all the stories, especially for earthquakes with low and moderate PGA levels; and (6) buildings with a linear LRB base-isolation system exhibit larger differences in displacement and acceleration amplifications, especially at the level of the lower stories. 展开更多
关键词 base-isolated buildings rubber bearings EARTHQUAKES soil-structure interaction
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Multi dimensional Seismic Response Analysis of Base Isolated Frame Structure with 3D Isolator 被引量:1
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作者 XiongShishu HuangLiting ChenJinfeng SuJingsu 《Journal of China University of Geosciences》 SCIE CSCD 2005年第1期66-71,78,共7页
The three dimensional lead rubber dish spring bearing (3DB) is proposed in this paper. The 3DB is composed of lead rubber bearing (LRB) and dish spring bearing (DSB) with damper in series. The 3DB put forward in t... The three dimensional lead rubber dish spring bearing (3DB) is proposed in this paper. The 3DB is composed of lead rubber bearing (LRB) and dish spring bearing (DSB) with damper in series. The 3DB put forward in this paper is effective in the resolution of difficulties in strong vertical capacity and vertical damping of three dimensional isolation bearings. It effectively suppresses rocking motions as well. The analytical model and motion equations of multi dimensional seismic responses of 3D base isolated frame structures are established. Taking a five storey frame structure as an example, an extensive simulation analysis is carried out. The results show that the 3D base isolated structure with the proposed 3DB is effective in 3D isolation; it can reduce seismic responses by 50 % compared to a non isolated structure. Therefore, the 3D isolation problem in building can be solved easily and effectively with the 3DB proposed in this paper. 展开更多
关键词 D base isolator multi earthquake seismic responses lead rubber bearing dish spring bearing.
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Substructure design optimization and nonlinear responses control analysis of the mega-sub controlled structural system (MSCSS) under earthquake action 被引量:1
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作者 Mustapha Abdulhadi Zhang Xun′an +1 位作者 Buqiao Fan Muhammad Moman 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2021年第3期687-704,共18页
The newly proposed mega sub-controlled structure system(MSCSS)and related studies have drawn the attention of civil engineers for practice in improving the performance and enhancing the structural effectiveness of meg... The newly proposed mega sub-controlled structure system(MSCSS)and related studies have drawn the attention of civil engineers for practice in improving the performance and enhancing the structural effectiveness of mega frame structures.However,there is still a need for improvement to its basic structural arrangement.In this project,an advanced,reasonable arrangement of mega sub-controlled structure models,composed of three mega stories with different numbers and arrangements of substructures,are designed to investigate the control performance of the models and obtain the optimal model configuration(model with minimum acceleration and displacement responses)under strong earthquake excitation.In addition,the dynamic parameters that affect the performance effectiveness of the optimal model of MSCSS are studied and discussed.The area of the relative stiffness ratio RD,with different mass ratio MR,within which the acceleration and displacement of the optimal model of MSCSS reaches its optimum(minimum)value is considered as an optimum region.It serves as a useful tool in practical engineering design.The study demonstrates that the proposed MSCSS configuration can efficiently control the displacement and acceleration of high rise buildings.In addition,some analytical guidelines are provided for selecting the control parameters of the structure. 展开更多
关键词 mega sub-controlled structure system(MSCSS) optimal model viscous damper dynamic parameters control effectiveness response control rubber bearing
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Nonlinear analysis of r.c. framed buildings retrofitted with elastomeric and friction bearings under near-fault earthquakes
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作者 Mirko Mazza 《Earthquake Science》 CSCD 2015年第5期365-377,共13页
Reinforced concrete (r.c.) framed buildings designed in compliance with inadequate seismic classifi- cations and code provisions present in many cases a high vulnerability and need to be retrofitted. To this end, th... Reinforced concrete (r.c.) framed buildings designed in compliance with inadequate seismic classifi- cations and code provisions present in many cases a high vulnerability and need to be retrofitted. To this end, the insertion of a base isolation system allows a considerable reduction of the seismic loads transmitted to the super- structure. However, strong near-fault ground motions, which are characterised by long-duration horizontal pulses, may amplify the inelastic response of the superstructure and induce a failure of the isolation system. The above considerations point out the importance of checking the effectiveness of different isolation systems for retrofitting a r.c. framed structure. For this purpose, a numerical inves- tigation is carried out with reference to a six-storey r.c. framed building, which, primarily designed (as to be a fixed-base one) in compliance with the previous Italian code (DM96) for a medium-risk seismic zone, has to be retrofitted by insertion of an isolation system at the base for attaining performance levels imposed by the current Italian code (NTC08) in a high-risk seismic zone. Besides the (fixed-base) original structure, three cases of base isolation are studied: elastomeric bearings acting alone (e.g. HDLRBs); in-parallel combination of elastomeric and friction bearings (e.g. high-damping-laminated-rubber beatings, HDLRBs and steel-PTFE sliding bearings, SBs); friction bearings acting alone (e.g. friction pendulum bearings, FPBs). The nonlinear analysis of the fixed-base and base-isolated structures subjected to horizontal com- ponents of near-fault ground motions is performed for checking plastic conditions at the potential critical (end) sections of the girders and columns as well as critical conditions of the isolation systems. Unexpected high val- ues of ductility demand are highlighted at the lower floors of all base-isolated structures, while re-centring problems of the base isolation systems under near-fault earthquakes are expected in case of friction beatings acting alone (i.e. FPBs) or that in combination (i.e. SBs) with HDLRBs. 展开更多
关键词 R.c. base-isolated structures Elastomericbearings Friction bearings Nonlinear dynamic analysis
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隔震支座布置形式对坡地吊脚楼结构抗震性能的影响研究
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作者 李瑞锋 刘立平 +2 位作者 尹力 韩树旺 李英民 《地震工程与工程振动》 CSCD 北大核心 2024年第1期148-157,共10页
以坡地吊脚楼为研究对象,针对结构不等高嵌固的特点,分别设计了无隔震、基础隔震和第二层柱底隔震(层间隔震)这3种三维吊脚框架结构算例。开展算例模型的弹性反应谱分析和弹塑性动力时程分析,考察隔震支座布置形式对吊脚框架结构动力响... 以坡地吊脚楼为研究对象,针对结构不等高嵌固的特点,分别设计了无隔震、基础隔震和第二层柱底隔震(层间隔震)这3种三维吊脚框架结构算例。开展算例模型的弹性反应谱分析和弹塑性动力时程分析,考察隔震支座布置形式对吊脚框架结构动力响应、破坏模式以及地震倒塌概率等抗震性能的影响规律。结果表明:将隔震技术运用于坡地吊脚框架结构中可以控制结构动力响应,为改善吊脚框架结构抗震性能提供了新途径;设置基础隔震可改善结构刚度分布的不均匀性,降低吊脚柱之间剪力差异,提高吊脚短柱安全储备,但不同标高处隔震支座的变形存在差异;与基础隔震相比,层间隔震对结构损伤控制的能力更优,层间隔震模型上部楼层变形更为均匀,地震倒塌概率更低,但在层间隔震结构设计中应考虑适当减小吊脚柱间侧向刚度的差异。 展开更多
关键词 吊脚框架结构 隔震支座 抗震性能 动力响应 地震倒塌概率
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考虑橡胶隔震支座速度相关性的隔震桥梁地震响应研究
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作者 康艳武 罗媛媛 +1 位作者 高金勇 杨洋 《温州大学学报(自然科学版)》 2024年第1期54-62,共9页
研究了橡胶支座在桥梁工程隔震结构中的速度相关性,以及在两种不同级别地震作用下的橡胶支座响应变化.通过即时子结构试验,对隔震桥梁工程中采用三种不同阻尼的橡胶支座,在小震和大震环境中的地震反应进行了速度相关性分析.发现在大震... 研究了橡胶支座在桥梁工程隔震结构中的速度相关性,以及在两种不同级别地震作用下的橡胶支座响应变化.通过即时子结构试验,对隔震桥梁工程中采用三种不同阻尼的橡胶支座,在小震和大震环境中的地震反应进行了速度相关性分析.发现在大震情况下,结构响应受到了速度相关性强烈影响,高阻尼比的支座影响更加明显;不同阻尼的橡胶支座的速度相关性对整体抗震结构的地震响应起到关键作用.通过三种支座模型比较分析,发现速度无关的模型与本文研究的速度相关性模型相比,后者结果更接近试验值. 展开更多
关键词 隔震技术 速度相关性 地震响应 橡胶支座
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柔性直流换流阀LRB隔震性能分析
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作者 朱东 高湛 +1 位作者 程亮 赵李源 《山西建筑》 2024年第1期59-62,共4页
以一柔性直换流阀为研究对象,进行了铅芯橡胶隔震支座(LRB)基础隔震设计,通过ANSYS有限元模拟得到隔震前后结构的动力响应,对比分析了LRB隔震性能,结果显示:该柔性直流换流阀LRB隔震方案隔震性能优异,可显著降低震中换流阀结构应力和加... 以一柔性直换流阀为研究对象,进行了铅芯橡胶隔震支座(LRB)基础隔震设计,通过ANSYS有限元模拟得到隔震前后结构的动力响应,对比分析了LRB隔震性能,结果显示:该柔性直流换流阀LRB隔震方案隔震性能优异,可显著降低震中换流阀结构应力和加速度响应,提高柔性直流换流阀结构的安全性。 展开更多
关键词 柔性直流换流阀 铅芯橡胶隔震支座 基础隔震 地震响应
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多跨连续梁拱组合体系桥梁抗震性能分析
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作者 王坤林 付旺旺 +2 位作者 席利飞 袁少洋 周俊福 《公路交通技术》 2024年第5期47-54,共8页
为了解相邻结构、行波效应和减隔震体系对多跨连续梁拱组合体系桥梁内力的影响,以某连续梁拱组合体系桥梁为实例,通过有限元软件建立抗震计算模型,并采用反应谱法和动力时程分析法对其进行地震反应分析。结果表明:1)连续梁拱组合体系桥... 为了解相邻结构、行波效应和减隔震体系对多跨连续梁拱组合体系桥梁内力的影响,以某连续梁拱组合体系桥梁为实例,通过有限元软件建立抗震计算模型,并采用反应谱法和动力时程分析法对其进行地震反应分析。结果表明:1)连续梁拱组合体系桥梁在顺桥向地震作用下2种分析方法的计算结果大致相同,前者计算结果略大于后者,反应谱法的计算结果偏于安全;2)相邻结构对过渡墩的内力影响较大,对其他墩柱的内力影响较小,建议考虑相邻结构的影响;3)考虑行波效应后,各孔控制截面的位移、弯矩有少量增大,固定墩的内力显著增大,且随着波速的增大,结构的地震响应逐渐趋于一致激励下的地震响应;4)采用摩擦摆隔震支座后,结构的内力和位移响应均大幅降低,且各墩的受力更加均匀,建议大跨径桥梁采用减隔震体系,以降低结构的地震响应。 展开更多
关键词 梁拱组合体系桥 抗震分析 反应谱法 动力时程分析法 相邻结构 行波效应 摩擦摆隔震支座
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减隔震支座对高墩大跨连续刚构桥减震效果分析
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作者 陈俊伟 《山西交通科技》 2024年第4期62-67,共6页
为更好地降低高墩大跨连续刚构桥在强震作用下的地震响应,提高其抗震性能,以某(120+220+120)m高墩大跨连续刚构桥为工程背景,首先简述了两种常用桥梁减隔震支座(铅芯橡胶支座(LRB)和环向钢丝绳组合阻尼支座(GSQZ))构造及力学性能,然后... 为更好地降低高墩大跨连续刚构桥在强震作用下的地震响应,提高其抗震性能,以某(120+220+120)m高墩大跨连续刚构桥为工程背景,首先简述了两种常用桥梁减隔震支座(铅芯橡胶支座(LRB)和环向钢丝绳组合阻尼支座(GSQZ))构造及力学性能,然后采用非线性时程分析法研究不同减隔震支座对高墩大跨连续刚构桥抗震性能的影响。研究结果表明:两种减隔震支座对梁端及主墩处减震效果较明显,对跨中部位减震效果较弱,安装减震支座会对主墩横桥向内力减震更佳,对主墩纵向内力减震效果有限;LRB方案的减震效果相对优于GSQZ方案,但是两者在刚构桥中的减震率均不高,实际设计中应结合阻尼器使用。 展开更多
关键词 高墩大跨连续刚构桥 隔震支座 动态时程分析 地震响应 减震效果
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不同层隔震结构在近断层地震作用下动力响应分析 被引量:23
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作者 韩淼 张文会 +2 位作者 朱爱东 孙一林 李进波 《振动与冲击》 EI CSCD 北大核心 2016年第5期120-124,共5页
选用天然橡胶支座(LNR)与铅芯橡胶支座(LRB)作为两栋8层钢筋混凝土结构的隔震装置,对其分别输入172条近断层地震波,计算隔震层设置在基础或以上每一层时隔震结构的动力响应,分析近断层地震动对不同层隔震结构动力响应的影响。分析结果表... 选用天然橡胶支座(LNR)与铅芯橡胶支座(LRB)作为两栋8层钢筋混凝土结构的隔震装置,对其分别输入172条近断层地震波,计算隔震层设置在基础或以上每一层时隔震结构的动力响应,分析近断层地震动对不同层隔震结构动力响应的影响。分析结果表明:隔震结构输入能量小于非隔震结构输入能量,LRB隔震结构的输入能量小于LNR隔震结构的输入能量;随着隔震层的上移,隔震支座位移减小,顶层最大加速度增大。近断层地震动特征参数与不同层隔震结构动力响应参数均存在相关性,但相关程度不同。隔震结构设计要根据建筑结构动力响应的需求,同时考虑隔震层位置与地震动特征参数的影响。 展开更多
关键词 近断层地震动 隔震结构 橡胶支座 动力响应
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三维基础隔震结构多维地震反应的非线性分析 被引量:19
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作者 熊世树 陈金凤 +1 位作者 梁波 苏经宇 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2004年第12期81-84,共4页
提出了一种铅芯橡胶碟簧三维隔震支座 (3DB) ,它由铅芯叠层橡胶支座LRB和加有阻尼材料的碟形弹簧支座DSB串联组成 ,3DB能有效解决三维隔震支座竖向阻尼的难题 ,并可以有效地抑制摇摆 .建立了 3DB三维隔震框架结构多维地震反应的非线性... 提出了一种铅芯橡胶碟簧三维隔震支座 (3DB) ,它由铅芯叠层橡胶支座LRB和加有阻尼材料的碟形弹簧支座DSB串联组成 ,3DB能有效解决三维隔震支座竖向阻尼的难题 ,并可以有效地抑制摇摆 .建立了 3DB三维隔震框架结构多维地震反应的非线性分析模型及其运动方程 ,并以一栋平面为L形的五层 3DB三维基础隔震框架结构为例 ,对其多维地震反应进行了计算机仿真分析 .结果表明 ,本系统的三维隔震效果十分明显 ,地震反应降低了 5 0 %以上 . 展开更多
关键词 三维隔震 三维隔震支座 多维地震反应 铅芯橡胶支座 碟形弹簧支座
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橡胶支座基础隔震建筑地震作用实用计算方法 被引量:17
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作者 苏经宇 韩淼 +1 位作者 周锡元 曾德民 《振动工程学报》 EI CSCD 1999年第2期229-236,共8页
在分析国内外橡胶支座基础隔震建筑地震作用计算方法的基础上,提出了计算橡胶支座基础隔震建筑地震作用的实用计算方法。该文建议的方法考虑了地运动参数和结构参数等多种因素与结构动力特征的相互关系,计算结果与时程分析的结果比较... 在分析国内外橡胶支座基础隔震建筑地震作用计算方法的基础上,提出了计算橡胶支座基础隔震建筑地震作用的实用计算方法。该文建议的方法考虑了地运动参数和结构参数等多种因素与结构动力特征的相互关系,计算结果与时程分析的结果比较接近,能够满足工程设计的要求。 展开更多
关键词 橡胶支座 基础隔震 地震作用 实用计算方法
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我国首栋橡胶垫隔震住宅楼动力分析 被引量:42
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作者 徐忠根 周福霖 《世界地震工程》 CSCD 1996年第1期38-42,共5页
介绍了我国首栋橡胶垫隔震的钢筋混凝土框架住宅楼的动力特性分析,并计算了在模拟地震作用下的地震反应。对于基础隔震的结构,其第一振型——上部结构基本为平动,在各振型中起着主要作用。从与非隔震对比楼的动力反应比较可见,基础隔震... 介绍了我国首栋橡胶垫隔震的钢筋混凝土框架住宅楼的动力特性分析,并计算了在模拟地震作用下的地震反应。对于基础隔震的结构,其第一振型——上部结构基本为平动,在各振型中起着主要作用。从与非隔震对比楼的动力反应比较可见,基础隔震作用的效果极为显著。 展开更多
关键词 基底隔震 橡胶垫 动力反应 住宅楼 动力分析
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组合基础隔震在建筑工程中的应用 被引量:28
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作者 魏陆顺 周福霖 刘文光 《地震工程与工程振动》 CSCD 北大核心 2007年第2期158-163,共6页
隔震作为一种新的抗震技术,已广泛应用于新建和加固的建筑工程,同时,许多新型式的支座得到了开发和应用。组合基础隔震是一种新的隔震设计思想,能充分应用不同类型隔震支座的特性,有效降低上部结构地震反应。本文介绍了组合基础隔震在... 隔震作为一种新的抗震技术,已广泛应用于新建和加固的建筑工程,同时,许多新型式的支座得到了开发和应用。组合基础隔震是一种新的隔震设计思想,能充分应用不同类型隔震支座的特性,有效降低上部结构地震反应。本文介绍了组合基础隔震在某一工程中的应用,工程中使用的支座包括普通橡胶隔震支座、铅芯橡胶隔震支座和弹性滑板支座三种类型,对全部使用支座进行了常规检测,结构计算采用等效线性法、能量包络法和时程反应分析等方法,计算结果表明:组合基础隔震能有效降低上部结构的反应,隔震层的变形控制在安全范围之内。 展开更多
关键词 组合基础隔震 橡胶隔震支座 弹性滑板支座 工程应用
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橡胶垫减震结构的动力反应 被引量:9
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作者 王斌 蒋东红 刘之洋 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 1999年第4期418-421,共4页
对多层框架橡胶垫减震结构在弹塑性范围内进行了地震反应的动力分析,详细介绍了进行动力分析的方法和结构的动力特性,计算了结构在地震波作用下各层的位移、加速度和剪力等地震反应·从与抗震结构动力反应比较可见,减震结构采用... 对多层框架橡胶垫减震结构在弹塑性范围内进行了地震反应的动力分析,详细介绍了进行动力分析的方法和结构的动力特性,计算了结构在地震波作用下各层的位移、加速度和剪力等地震反应·从与抗震结构动力反应比较可见,减震结构采用橡胶隔震垫后,改善了上部结构的动力特性,地震反应明显小于通常的抗震结构;此外,不同的场地对建筑物减震的效果有所不同,在Ⅰ、Ⅱ、Ⅲ类场地下,减震结构同抗震结构相比有二度以上的减震效果;在弹塑性范围内对结构进行动力分析比只在弹性范围内分析,能够更准确地反映实际情况,从而提供较为准确的设计依据· 展开更多
关键词 减震结构 建筑物 橡胶垫 动力反应 抗震结构
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SMA-橡胶支座隔震系统的动力响应研究 被引量:16
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作者 庄鹏 薛素铎 李彬双 《振动与冲击》 EI CSCD 北大核心 2006年第3期85-89,共5页
利用形状记忆合金(SMA)超弹性滞回特性,提出了一种SMA-橡胶支座,并建立了这种新型隔震支座力学模型。通过一个单自由度SMA-橡胶支座隔震体系动力响应的仿真分析,详细研究了SMA-橡胶支座的动力性态和隔震性能。结果表明,SMA-橡胶支座具... 利用形状记忆合金(SMA)超弹性滞回特性,提出了一种SMA-橡胶支座,并建立了这种新型隔震支座力学模型。通过一个单自由度SMA-橡胶支座隔震体系动力响应的仿真分析,详细研究了SMA-橡胶支座的动力性态和隔震性能。结果表明,SMA-橡胶支座具有良好的隔震和耗能效果。 展开更多
关键词 SMA-橡胶支座 隔震 动力响应 仿真分析
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铅芯叠层橡胶支座基础隔震结构双向地震反应分析 被引量:16
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作者 王建强 管品武 姚谦峰 《地震工程与工程振动》 CSCD 北大核心 2005年第1期133-137,共5页
本文对铅芯叠层橡胶支座双向耦合恢复力模型进行了改进,采用基础隔震结构动力分析程序DABIS对铅芯叠层橡胶支座基础隔震结构进行了单向及双向地震反应对比分析。结果表明,在单向和双向地震作用下,基础隔震结构的加速度反应和位移反应较... 本文对铅芯叠层橡胶支座双向耦合恢复力模型进行了改进,采用基础隔震结构动力分析程序DABIS对铅芯叠层橡胶支座基础隔震结构进行了单向及双向地震反应对比分析。结果表明,在单向和双向地震作用下,基础隔震结构的加速度反应和位移反应较为接近,但在双向地震作用下,支座的最大位移明显大于单向地震作用时的支座最大位移,因而在确定支座最大位移时应考虑双向地震作用的影响。 展开更多
关键词 铅芯叠层橡胶支座 恢复力模型 基础隔震结构 双向地震反应 DABIS
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LRB-DSB三维隔震系统的隔震效果分析 被引量:7
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作者 郭阳照 潘毅 +2 位作者 吴体 李静文 王子超 《西南交通大学学报》 EI CSCD 北大核心 2018年第6期1195-1204,共10页
为研究叠层橡胶支座-碟形弹簧支座(LRB-DSB)串联组合式三维隔震系统的隔震效果,对LRB-DSB三维隔震系统之构成、原理和设计理论进行综合分析;结合算例,运用整体结构法对基于LRB-DSB的三维隔震结构、基于LRB的水平隔震结构和非隔震结构的... 为研究叠层橡胶支座-碟形弹簧支座(LRB-DSB)串联组合式三维隔震系统的隔震效果,对LRB-DSB三维隔震系统之构成、原理和设计理论进行综合分析;结合算例,运用整体结构法对基于LRB-DSB的三维隔震结构、基于LRB的水平隔震结构和非隔震结构的动力特性及其在三维地震激励下的动力响应进行对比.结果表明:LRB-DSB三维隔震系统的竖向刚度较LRB水平隔震系统适当降低,基于LRB-DSB的三维隔震结构的竖向自振周期可较基于LRB的水平隔震结构和非隔震结构延长1.2倍;基于LRB-DSB的三维隔震结构在水平向和竖向均能起到良好的隔震效果,弥补了基于LRB的隔震结构仅能起到水平隔震效能的不足. 展开更多
关键词 三维隔震 叠层橡胶支座 碟形弹簧支座 地震响应
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