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Shake-table testing of a self-centering precast reinforced concrete frame with shear walls 被引量:11
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作者 Lu Xilin Yang Boya Zhao Bin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第2期221-233,共13页
The seismic performance of a self-centering precast reinforced concrete (RC) frame with shear walls was investigated in this paper. The lateral force resistance was provided by self-centering precast RC shear walls ... The seismic performance of a self-centering precast reinforced concrete (RC) frame with shear walls was investigated in this paper. The lateral force resistance was provided by self-centering precast RC shear walls (SPCW), which utilize a combination ofunbonded prestressed post-tensioned (PT) tendons and mild steel reinforcing bars for flexural resistance across base joints. The structures concentrated deformations at the bottom joints and the unbonded PT tendons provided the self-centering restoring force. A 1/3-scale model of a five-story self-centering RC frame with shear walls was designed and tested on a shake-table under a series of bi-directional earthquake excitations with increasing intensity. The acceleration response, roof displacement, inter-story drifts, residual drifts, shear force ratios, hysteresis curves, and local behaviour of the test specimen were analysed and evaluated. The results demonstrated that seismic performance of the test specimen was satisfactory in the plane of the shear wall; however, the structure sustained inter-story drift levels up to 2.45%. Negligible residual drifts were recorded after all applied earthquake excitations. Based on the shake-table test results, it is feasible to apply and popularize a self-centering precast RC frame with shear walls as a structural system in seismic regions. 展开更多
关键词 SELF-CENTERING shake-table test RC frame with shear walls PRECAST unbonded post-tensioning seismicperformance
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Shaking table experimental study of recycled concrete frame-shear wall structures 被引量:8
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作者 Zhang Jianwei Cao Wanlin +2 位作者 Meng Shaobin Yu Cheng Dong Hongying 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第2期257-267,共11页
In this study, four 1/5 scaled shaking table tests were conducted to investigate the seismic performance of recycled concrete frame-shear wall structures with different recycled aggregates replacement rates and concea... In this study, four 1/5 scaled shaking table tests were conducted to investigate the seismic performance of recycled concrete frame-shear wall structures with different recycled aggregates replacement rates and concealed bracing detail. The four tested structures included one normal concrete model, one recycled coarse aggregate concrete model, and two recycled coarse and fi ne aggregate concrete models with or without concealed bracings inside the shear walls. The dynamic characteristics, dynamic response and failure mode of each model were compared and analyzed. Finite element models were also developed and nonlinear time-history response analysis was conducted. The test and analysis results show that the seismic performance of the recycled coarse aggregate concrete frame-shear wall structure is slightly worse than the normal concrete structure. The seismic resistance capacity of the recycled concrete frame-shear wall structure can be greatly improved by setting up concealed bracings inside the walls. With appropriate design, the recycled coarse aggregate concrete frame-shear wall structure and recycled concrete structure with concealed bracings inside the walls can be applied in buildings. 展开更多
关键词 recycled concrete frame-shear wall concealed bracings shaking table test nonlinear time-history response analysis
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Research on Seismic Design of High-Rise Buildings Based on Framed-Shear Structural System
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作者 Wei Wang 《Frontiers Research of Architecture and Engineering》 2020年第3期87-90,共4页
Under the rapidly advancing economic trends,people’s requirements for the functionality and architectural artistry of high-rise structures are constantly increasing,and in order to meet such modern requirements,it is... Under the rapidly advancing economic trends,people’s requirements for the functionality and architectural artistry of high-rise structures are constantly increasing,and in order to meet such modern requirements,it is necessary to diversify the functions of high-rise buildings and complicate the building form.At present,the main structural systems of high-rise buildings are:frame structure,shear wall structure,frame shear structure,and tube structure.Different structural systems determine the size of the load-bearing capacity,lateral stiffness,and seismic performance,as well as the amount of material used and the cost.This project is mainly concerned with the seismic design of frame shear structural systems,which are widely used today. 展开更多
关键词 frame shear wall structure Displacement-based seismic design shear deformation
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Analysis of Construction Technology of Frame Shear Wall Structure
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作者 WANG Bo 《外文科技期刊数据库(文摘版)工程技术》 2021年第1期211-216,共6页
With the development of the construction industry and the continuous advancement of the urbanization process, the number of buildings is increasing, and the load-bearing and load-bearing design technology is improving... With the development of the construction industry and the continuous advancement of the urbanization process, the number of buildings is increasing, and the load-bearing and load-bearing design technology is improving. The application of reinforced concrete shear wall structure has gradually become the mainstream trend of the industry. It has great advantages in practicability and applicability and reduces the related economic costs. Combined with the application of frame shear wall structure in the construction process, this paper probes into the relevant construction technical points, analyzes the corresponding quality control measures and puts forward some opinions and suggestions for reference. 展开更多
关键词 frame shear wall STRUCTURE construction technology
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In-Plane Shear Performance of Wood-Framed Drywall Sheathing Wall Systems under Cyclic Racking Loading
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作者 Ali M. Memari Ryan L. Solnosky 《Open Journal of Civil Engineering》 2014年第1期54-70,共17页
A pilot study was conducted at Penn State University to determine whether the type of drywall joint compound would influence the shear strength of wood-frame stud walls sheathed with Gypsum Wall Board (GWB or drywall)... A pilot study was conducted at Penn State University to determine whether the type of drywall joint compound would influence the shear strength of wood-frame stud walls sheathed with Gypsum Wall Board (GWB or drywall). In this study, five 2438 mm by 2438 mm specimens were tested under in-plane cyclic racking loading following the CUREE loading protocol for light-frame wall systems. Three specimens were finished using non-cement based joint compound while the other two used cement based joint compound. Based on the experimental testing of the specimens, the results show that the use of cement based joint compound on drywall joints produces higher shear capacity for the wall system as compared to similar specimens finished with conventional non-cement based joint compound. The result of the study is particularly important for high seismic regions where interior stud walls in residential construction effectively take part in seismic resistance even though wood shear walls are normally used on exterior walls. 展开更多
关键词 frameS WOOD Structures STUDS shear Walls GYPSUM LATERAL Loads RESIDENTIAL
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锈蚀RC框架节点核心区剪切恢复力模型
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作者 郑山锁 刘立国 +3 位作者 董立国 杨松 李健 丛峻 《建筑科学与工程学报》 北大核心 2026年第1期162-172,共11页
为满足一般大气条件下在役RC框架结构抗震分析的需求,对12榀RC框架节点进行了人工加速腐蚀和拟静力加载试验,探究了锈蚀水平、轴压比变化对节点破坏模式、滞回性能以及核心区抗剪性能的影响;基于试验结果的多参数回归分析,建立了锈蚀RC... 为满足一般大气条件下在役RC框架结构抗震分析的需求,对12榀RC框架节点进行了人工加速腐蚀和拟静力加载试验,探究了锈蚀水平、轴压比变化对节点破坏模式、滞回性能以及核心区抗剪性能的影响;基于试验结果的多参数回归分析,建立了锈蚀RC节点核心区的剪切恢复力模型,并在OpenSEES软件中利用Joint2D和纤维梁柱单元建立了锈蚀RC节点的组合体数值模型。结果表明:锈蚀RC节点的破坏模式均为节点核心区的剪切破坏,锈蚀程度与轴压比的增大会削弱RC节点及其核心区的承载能力与变形能力,导致抗震性能发生劣化;提出的剪切恢复力模型能够较全面反映不同锈蚀程度和不同轴压比RC节点核心区的剪切滞回特性;建立的锈蚀RC节点组合体数值模型的荷载模拟相对误差基本不超过10%,变形模拟相对误差基本不超过20%,最终破坏时的累积耗能相对误差也基本控制在30%以内;基于锈蚀RC节点核心区剪切恢复力模型所建立的节点组合体数值模型能够较准确模拟往复加载作用下锈蚀RC节点的滞回性能,可用于一般大气环境下RC节点及框架的抗震分析评估。 展开更多
关键词 锈蚀RC框架节点 剪切恢复力模型 抗震性能 OPENSEES
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新型剪切耗能连接件在装配式框架梁柱节点中的抗震性能研究
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作者 郝进锋 曲明洋 刁法伟 《河南科学》 2026年第1期136-143,共8页
本文提出了一种新型装配式框架梁柱节点形式,在设计中融合了销轴连接系统与布设于梁端上下两侧的可更换耗能阻尼器,旨在提升结构的抗震性能、施工效率,并降低震后修复成本。基于ABAQUS软件建立了一个传统现浇节点模型及四个不同参数的... 本文提出了一种新型装配式框架梁柱节点形式,在设计中融合了销轴连接系统与布设于梁端上下两侧的可更换耗能阻尼器,旨在提升结构的抗震性能、施工效率,并降低震后修复成本。基于ABAQUS软件建立了一个传统现浇节点模型及四个不同参数的装配式节点模型,对各模型的损伤分布、滞回性能与耗能能力等抗震性能指标进行对比分析。研究结果表明:传统现浇节点主要发生梁端弯剪破坏,表现出脆性失效特征;而所提出的装配式节点则以阻尼器先行破坏为主,整体破坏模式具有明显延性特征。在循环荷载作用下,装配式节点展现出低屈服、高延性和良好的耗能能力。进一步研究不同参数的耗能连接构件对节点性能的影响发现,优化阻尼器的形式与尺寸可显著提升节点的承载力与延性,而混凝土强度和轴压比对其抗震性能影响相对较小。本研究可为附加耗能器配置下的装配式框架结构节点抗震设计提供理论依据与工程参考。 展开更多
关键词 装配式框架结构 剪切耗能连接件 抗震性能 有限元分析 延性破坏
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不同剪跨比钢筋混凝土框架振动台倒塌试验研究
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作者 张亮泉 张云波 +1 位作者 刘昊东 张昊宇 《世界地震工程》 北大核心 2026年第1期34-47,共14页
震害调查显示,薄弱层的破坏是造成钢筋混凝土框架结构倒塌的主要原因之一,且框架柱剪跨比与柱的破坏形式密切相关。实际地震动往往呈现三维特征,而三维地震动下不同剪跨比钢筋混凝土框架的抗倒塌性能仍有待研究。对此开展了三维地震动下... 震害调查显示,薄弱层的破坏是造成钢筋混凝土框架结构倒塌的主要原因之一,且框架柱剪跨比与柱的破坏形式密切相关。实际地震动往往呈现三维特征,而三维地震动下不同剪跨比钢筋混凝土框架的抗倒塌性能仍有待研究。对此开展了三维地震动下3个不同剪跨比的缩尺钢筋混凝土框架薄弱层振动台倒塌试验研究。试验结果表明:不同剪跨比的框架柱破坏形式存在明显差异,随着剪跨比的增大,柱子由锚固破坏和压剪破坏为主的脆性破坏变为延性较好的压弯破坏;对楼层加速度放大系数、柱平均轴力及平均动轴压比的分析表明,竖向地震动作用下柱轴力可能出现剧烈波动,使得框架柱更易发生受压和剪切破坏。基于试验结果给出如下抗倒塌建议:在竖向地震作用风险较高的地区,钢筋混凝土框架结构的薄弱层框架柱宜适当减小轴压比限值,或在轴压比计算时适当考虑竖向地震动的影响;当剪跨比较小时建议沿柱身全长配置加强箍筋,避免柱子在非箍筋加密区出现受压和剪切破坏;我国《建筑设计抗震规范》(GB 50011—2010)对RC框架的抗倒塌侧移角限值(1/50)均低于本次试验中各框架极限状态下的最大层间侧移角,具有较好的安全冗余度。 展开更多
关键词 RC框架结构薄弱层 剪跨比 振动台试验 三向地震动加载 倒塌机制
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钢框架-冷弯薄壁型钢剪力墙结构抗侧性能试验研究
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作者 石宇 高畅 +1 位作者 徐云鹏 张海宾 《工程力学》 北大核心 2026年第1期219-229,共11页
为了研究钢框架-冷弯薄壁型钢剪力墙结构的抗侧性能,对1个钢框架和3个钢框架-冷弯薄壁型钢剪力墙试件进行水平低周往复加载试验,对比了内填冷弯薄壁型钢剪力墙前后整体结构的抗侧性能,还考虑了镁晶板厚度、刚性斜撑对结构抗侧性能的影... 为了研究钢框架-冷弯薄壁型钢剪力墙结构的抗侧性能,对1个钢框架和3个钢框架-冷弯薄壁型钢剪力墙试件进行水平低周往复加载试验,对比了内填冷弯薄壁型钢剪力墙前后整体结构的抗侧性能,还考虑了镁晶板厚度、刚性斜撑对结构抗侧性能的影响。结果表明:钢框架与冷弯薄壁型钢剪力墙组合后具有良好的抗侧性能;对内填剪力墙增设刚性斜撑或增加镁晶板厚度均可提高墙体的抗剪承载力及弹性抗侧刚度,继而提升结构的整体抗侧性能。结合破坏特征,提出钢框架-冷弯薄壁型钢剪力墙结构2个受力阶段:前中期受力阶段主要由冷弯薄壁型钢剪力墙承担水平荷载,后期受力阶段主要由钢框架承担水平荷载。分析受力过程中水平剪力在钢框架和冷弯薄壁型钢剪力墙之间的分配关系及其变化情况,前期冷弯薄壁型钢剪力墙剪力分担率为70%~84%,后期钢框架剪力分担率增至72%~75%,表明此类结构是一种典型的双重抗侧力设防体系。 展开更多
关键词 钢框架 冷弯薄壁型钢剪力墙 拟静力试验 抗剪性能 剪力分配
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基于《抗规》和《隔标》的RC框架-剪力墙医疗建筑隔震设计对比分析
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作者 曾德民 蔡明果 +2 位作者 刘立德 王海萌 祁海啸 《建筑科学》 北大核心 2026年第1期148-158,共11页
分别按照《抗规》与《隔标》设计的隔震建筑的抗震性能与易损性对比研究尚不多见。以中震需保证正常使用的某RC框架-剪力墙高层医疗建筑为研究对象,基于以上规范隔震设计后,进行中震弹性和大震弹塑性计算,并比较其地震响应和地震易损性... 分别按照《抗规》与《隔标》设计的隔震建筑的抗震性能与易损性对比研究尚不多见。以中震需保证正常使用的某RC框架-剪力墙高层医疗建筑为研究对象,基于以上规范隔震设计后,进行中震弹性和大震弹塑性计算,并比较其地震响应和地震易损性及抗倒塌能力。层间位移角方面,中震时《抗规》设计比《隔标》设计大10%~20%,大震时大10%~30%。易损性和抗倒塌方面,《抗规》模型超越5个极限状态的概率均大于《隔标》模型,极罕遇地震下的倒塌率大于《隔标》,抗倒塌安全储备系数为1.55,小于《隔标》的1.92。结果表明,在《抗规》反应谱长周期取值约比《隔标》大30%的情况下,《抗规》设计的隔震模型地震响应通常大于《隔标》模型;《隔标》模型易损性及抗倒塌表现通常优于《抗规》模型。长周期反应谱取值差异对评价结果的影响需进一步研究。 展开更多
关键词 高层隔震结构 医疗RC框架-剪力墙 地震易损性 抗倒塌安全储备系数
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穿斗式木结构框架-剪力墙抗震性能试验研究
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作者 罗瑞 高永林 +2 位作者 赖正聪 苏何先 陶忠 《振动与冲击》 北大核心 2026年第2期284-292,共9页
为提高穿斗式木结构稳定性,提出框架间填充木剪力墙方案。设计制作两榀带有木剪力墙的两层两跨足尺穿斗式木框架试验模型,开展低周反复荷载试验研究其抗震性能。试验结果表明,木剪力墙显著提升了框架的初始刚度和承载力,但随着加载位移... 为提高穿斗式木结构稳定性,提出框架间填充木剪力墙方案。设计制作两榀带有木剪力墙的两层两跨足尺穿斗式木框架试验模型,开展低周反复荷载试验研究其抗震性能。试验结果表明,木剪力墙显著提升了框架的初始刚度和承载力,但随着加载位移增大,其与榫卯节点的协同工作性能劣化导致耗能效率降低,甚至加剧刚度退化。木剪力墙带檐架木框架因檐架的拉结作用,反向承载力较木剪力墙填充框架提升36.1%,耗能能力更优,但延性系数略低。两试验模型位移角均达1/14.5以上,延性系数大于3,表明穿斗式木结构具备良好的变形能力。研究为传统木结构的抗震安全性能提升积累了试验数据,奠定了试验基础。 展开更多
关键词 木剪力墙 穿斗式木框架 低周反复荷载试验 抗震性能 抗震安全性
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梯形爆破切口角度对高层框架—剪力墙结构倒塌过程的影响
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作者 赵国臣 张翼翔 +3 位作者 林世镔 姚颖康 刘昌邦 徐龙军 《江汉大学学报(自然科学版)》 2026年第1期16-26,共11页
爆破切口角度是影响高层框架—剪力墙结构倒塌过程的关键因素。以武汉某实际爆破拆除工程为研究对象,利用ABAQUS有限元软件建立爆破拆除倒塌过程的精细化模型,讨论切口角度对结构倒塌过程的影响,分析结构失稳倒塌运动特征、塌落体触地... 爆破切口角度是影响高层框架—剪力墙结构倒塌过程的关键因素。以武汉某实际爆破拆除工程为研究对象,利用ABAQUS有限元软件建立爆破拆除倒塌过程的精细化模型,讨论切口角度对结构倒塌过程的影响,分析结构失稳倒塌运动特征、塌落体触地速度和爆堆高度。结果表明:当切口角度较小时,上部结构倾覆较小,主要表现为渐进式倒塌模式,倒塌过程为上部结构依次压入下部空间,形成层间破坏逐步扩展的过程;当切口角度达到一定阈值后,结构倒塌以旋转倾覆为主,上部结构围绕切口旋转下落;切口角度在45°时,结构倒塌模式发生显著变化,触地速度陡然增大30%~40%,爆堆高度降低,后坐距离增大,表现为压实的堆积形态。 展开更多
关键词 高层框架—剪力墙结构 爆破切口角度 数值模拟 倒塌模式 触地速度
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钢板抗剪架基础补强方法在甘蔗制糖技改项目中的应用与验证
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作者 李伟霄 李天杨 +1 位作者 陈觅 李晋祺 《甘蔗糖业》 2026年第1期46-59,共14页
在当前甘蔗制糖行业以技术改造、绿色升级与数字化改造为主线推进的背景下,既有厂房在不停产或少停产条件下进行设备更新,常暴露出柱脚区域冲切与一向剪承载不足等问题。针对该类工况,本文提出一种以钢板抗剪架为核心的基础补强方法,通... 在当前甘蔗制糖行业以技术改造、绿色升级与数字化改造为主线推进的背景下,既有厂房在不停产或少停产条件下进行设备更新,常暴露出柱脚区域冲切与一向剪承载不足等问题。针对该类工况,本文提出一种以钢板抗剪架为核心的基础补强方法,通过“剪力栓钉-井字钢板-承压底板-外包混凝土”的协同受力重构柱脚荷载路径,并结合规范复核与三维有限元(采用Midas有限元计算软件FEA NX)开展对比分析与验证。结果表明:相较未加固状态,该方法通过刚度协调与传力路径重构,使冲切控制区与抗剪截面的最大应力值分别降至原状的29.8%与45.2%,显著削弱了应力集中效应;现场全过程沉降监测显示,在新设备运行荷载作用下,基础变形稳定且无明显差异沉降,各项变形指标均满足相关规范控制要求,验证了加固体系良好的刚度协调与整体承载性能。研究表明,该方案具有高效、经济、装配化施工、对生产干扰小等优势,适用于甘蔗制糖企业技改场景下的既有基础快速补强与推广应用。 展开更多
关键词 甘蔗制糖 技术改造 抗剪架 基础加固 有限元分析
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Y型双肢连梁偏心支撑组合框架力学性能试验研究
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作者 吴桢灏 庄亮东 王巍 《工程力学》 北大核心 2026年第3期249-263,288,共16页
既有研究表明:传统的Y型单肢连梁偏心支撑组合框架(简称“SY-EBCF”)是一种具有较高耗能效率的消能减震结构体系;但连梁的引入会压缩建筑空间,降低建筑功能。该文在SY-EBCF形式的基础上,提出了Y型双肢连梁偏心支撑组合框架(简称“DY-EBC... 既有研究表明:传统的Y型单肢连梁偏心支撑组合框架(简称“SY-EBCF”)是一种具有较高耗能效率的消能减震结构体系;但连梁的引入会压缩建筑空间,降低建筑功能。该文在SY-EBCF形式的基础上,提出了Y型双肢连梁偏心支撑组合框架(简称“DY-EBCF”),通过增加连梁数目,减小连梁尺寸,既能保证偏心支撑能够提供足够的承载力和刚度,又能最大限度的降低连梁对下部空间的占用。为研究DY-EBCF的力学性能,该文设计并制作了一个DY-EBCF试件,并对其开展了拟静力试验,分析了试件的失效模式、滞回曲线和截面应变发展规律。试验结果表明:连梁主要依靠腹板剪切变形耗散能量,在其失效退出工作前,DY-EBCF试件的滞回曲线饱满且稳定;拆除失效连梁后,试件的残余变形角为0.002 rad,小于规范限值(0.005 rad);余下的组合框架部分水平承载力虽降低至未拆卸连梁时的1/2,但结构仍具有稳定承载的能力。对比了DY-EBCF和SY-EBCF的试验结果,证明了DY-EBCF在耗能能力、刚度和变形能力方面具有更好的抗震性能。 展开更多
关键词 Y型偏心支撑组合框架 双肢连梁 建筑使用空间 试验研究 力学性能
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某设置屈曲约束支撑的多塔结构抗震性能分析
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作者 白亚琼 詹延杰 +2 位作者 乔洋 张凯 范新杰 《工程与试验》 2026年第1期98-103,共6页
屈曲约束支撑通过提高结构抗扭刚度有效改善了结构扭转效应,其轻量化设计在保证结构整体抗扭能力的同时还降低了结构自重。本工程设定中震不屈服的性能目标,采用动力弹塑性时程分析方法对屈曲约束支撑在中震作用下的性能目标进行校核,... 屈曲约束支撑通过提高结构抗扭刚度有效改善了结构扭转效应,其轻量化设计在保证结构整体抗扭能力的同时还降低了结构自重。本工程设定中震不屈服的性能目标,采用动力弹塑性时程分析方法对屈曲约束支撑在中震作用下的性能目标进行校核,符合预设的性能要求。通过对比分析多遇地震作用下结构的层间位移比、楼层剪力等计算结果,表明屈曲约束支撑能够为结构提供有效的抗侧刚度。通过对结构罕遇地震作用下的动力弹塑性分析,表明结构构件能够满足极限承载力要求,屈曲约束支撑屈服耗能满足大震不倒的设防目标。工程实践表明,该技术既解决了关键技术问题,又降低了工程造价,取得了良好的结构抗震性能和经济效益。 展开更多
关键词 高层建筑 屈曲约束支撑 抗震性能 抗扭刚度 多塔结构 框架-剪力墙结构
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基于剪切型多质点模型地铁车辆基地上盖框架结构分析研究
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作者 甘懿德 顾伟华 崔家春 《建筑结构》 北大核心 2026年第3期141-149,共9页
针对地铁车辆基地上盖框架结构,基于OpenSees提出了一种可以考虑抗震结构、15m单体隔震结构、9m单体隔震结构和9m整体隔震结构等多种结构方案的简化剪切型多质点模型以及相应的参数标定方法,并通过与框架推覆试验结果以及地铁车辆基地... 针对地铁车辆基地上盖框架结构,基于OpenSees提出了一种可以考虑抗震结构、15m单体隔震结构、9m单体隔震结构和9m整体隔震结构等多种结构方案的简化剪切型多质点模型以及相应的参数标定方法,并通过与框架推覆试验结果以及地铁车辆基地上盖框架单体有限元分析结果的对比分析,对所提出模型的准确性进行了验证。采用该模型分析不同结构方案减震效果。结果表明,对于盖上结构,三种隔震方案相比于抗震方案的层间剪力减震效果大致相当,小震、中震、大震下层间剪力降幅分别达到22%、32%、44%;对于盖下结构,15m单体隔震、9m单体隔震两种方案无明显层间剪力减震效果,而9m整体隔震方案相比于抗震方案平均可降低层间剪力30%以上。三种隔震方案对于层间位移角的减震效果基本相当,且随着地震加速度峰值的提高而增强,在大震作用时隔震方案可有效控制盖上结构层间位移角不超过限值。 展开更多
关键词 地铁车辆基地上盖框架结构 剪切型多质点模型 弹塑性地震时程分析 抗震设计
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An effective simplified model of composite compression struts for partially-restrained steel frame with reinforced concrete infill walls 被引量:2
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作者 Sun Guohua Chuang-Sheng Walter Yang +1 位作者 Gu Qiang Reginald DesRoches 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第2期403-415,共13页
To resolve the issue regarding inaccurate prediction of the hysteretic behavior by micro-based numerical analysis for partially-restrained(PR)steel frames with solid reinforced concrete(RC)infill walls,an innovati... To resolve the issue regarding inaccurate prediction of the hysteretic behavior by micro-based numerical analysis for partially-restrained(PR)steel frames with solid reinforced concrete(RC)infill walls,an innovative simplified model of composite compression struts is proposed on the basis of experimental observation on the cracking distribution,load transferring mechanism,and failure modes of RC infill walls filled in PR steel frame.The proposed composite compression struts model for the solid RC infill walls is composed ofαinclined struts and main diagonal struts.Theαinclined struts are used to reflect the part of the lateral force resisted by shear connectors along the frame-wall interface,while the main diagonal struts are introduced to take into account the rest of the lateral force transferred along the diagonal direction due to the complicated interaction between the steel frame and RC infill walls.This study derives appropriate formulas for the effective widths of theαinclined strut and main diagonal strut,respectively.An example of PR steel frame with RC infill walls simulating simulated by the composite inclined compression struts model is illustrated.The maximum lateral strength and the hysteresis curve shape obtained from the proposed composite strut model are in good agreement with those from the test results,and the backbone curve of a PR steel frame with RC infill walls can be predicted precisely when the inter-story drift is within 1%.This simplified model can also predict the structural stiffness and the equivalent viscous damping ratio well when the inter-story drift ratio exceeds 0.5%. 展开更多
关键词 PR connection steel frame infill walls shear connector hysteretic behavior STRUT
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Seismic behavior and mechanism analysis of innovative precast shear wall involving vertical joints 被引量:3
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作者 孙建 邱洪兴 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1536-1547,共12页
To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted ... To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted on two test walls. The test results confirm the feasibility of the novel joints as well as the favorable seismic performance of the walls, even though certain optimization measures should be taken to improve the ductility. The load-transferring mechanism subsequently is theoretically investigated based on the experimental study. The theoretical results show the load-transferring route of the novel joints is concise and definite. During the elastic stage, the vertical shear stress in the connecting steel frame(CSF) distributes uniformly; and each high-strength bolt(HSB)primarily delivers vertical shear force. However, the stress in the CSF redistributes when the walls develop into the elastic-plastic stage. At the ultimate state, the vertical shear stress and horizontal normal stress in the CSF distribute linearly; and the HSBs at both ends of the CSF transfer the maximum shear forces. 展开更多
关键词 precast shear wall vertical joint seismic behavior high-strength bolt connecting steel frame
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Study of the seismic response of a recycled aggregate concrete frame structure 被引量:2
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作者 Wang Changqing Xiao Jianzhuang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第4期669-680,共12页
Based on six-degree-of-freedom three-dimensional shaking table tests, the seismic response of a recycled aggregate concrete (RAC) frame was obtained. The analysis results indicate that the maximum story shear force ... Based on six-degree-of-freedom three-dimensional shaking table tests, the seismic response of a recycled aggregate concrete (RAC) frame was obtained. The analysis results indicate that the maximum story shear force and overturning moment reduce proportionally along the height of the model under the same earthquake wave. The story shear force, base shear coefficient and overturning moment of the structure increase progressively as the acceleration amplitude increases. The base shear coefficient is primarily controlled by the peak ground acceleration (PGA). The relationships between the PGA and the shear coefficient as well as between the PGA and the dynamic amplification factor are obtained by mathematical fitting. The dynamic amplification factor decreases rapidly at the elastic-plastic stage, but decreases slowly with the development of the elastic-plasticity stage. The results show that the RAC frame structure has reasonable deformability when compared with natural aggregate concrete frame structures. The maximum inter-story drift ratios of the RAC frame model under frequent and rare intensity 8 test phases are 1/266 and 1/29, respectively, which are larger than the allowable value of 1/500 and 1/50 according to Chinese seismic design requirements. Nevertheless, the RAC frame structure does not collapse under base excitations with PGAs from 0.066 g up to 1.170 g. 展开更多
关键词 recycled aggregate concrete (RAC) frame structure seismic response shear coefficient dynamicamplification factor
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Shear-resistant behavior of light composite shear wall
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作者 李升才 董毓利 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2768-2775,共8页
Shear test results for a composite wall panel in a light composite structure system are compared with test results for shear walls in Japan.The analysis results show that this kind of composite wall panel works very w... Shear test results for a composite wall panel in a light composite structure system are compared with test results for shear walls in Japan.The analysis results show that this kind of composite wall panel works very well,and can be regarded as a solid panel.The composite wall panel with a hidden frame is essential for bringing its effect on shear resistance into full play.Comprehensive analysis of the shear-resistant behavior of the composite wall panel suggests that the shear of the composite shear wall panel can be controlled by the cracking strength of the web shearing diagonal crack. 展开更多
关键词 composite shear wall shear test hidden frame shear design cracking strength shearing diagonal crack
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