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1.
荆亚涛  吴波 《地震学刊》2009,(4):392-398
针对单层框架和三层框架,通过高温数值分析,初步考察了不同受火方式下结构的变形特征。研究发现:①火灾蔓延对结构高温变形影响较大,此时节点的水平位移总体上小于结构全层/全部受火时的相应结果;②受火区间仅对相邻跨或相邻层有一定影响,而对隔跨或隔层影响相对较小;③非对称局部受火情况下,单层框架边节点的水平位移可能比全层受火时更大。  相似文献   

2.
为进一步研究真实火灾工况下钢管混凝土组合框架的抗火性能,基于有限元软件ABAQUS建立了单层单跨圆形钢管混凝土柱-组合梁平面框架经历火灾全过程的数值分析模型。通过合理选取热工参数,进行了组合框架在ISO-834标准升降温曲线下的热传分析,研究了组合框架钢管混凝土柱与组合梁截面温度场的变化规律;在热传模型的基础上,通过合理选取材料本构模型、单元类型、边界条件以及网格划分等,对经历常温加载、升温、降温以及火灾后的钢管混凝土柱-组合梁平面框架的力学性能进行初步探讨。结果表明,由于钢筋混凝土楼板在受火过程中的吸热与约束作用使组合框架在受火后仍具有较高承栽力。该方法可进一步完善钢管混凝土结构抗火分析理论,也可供实际工程应用参考。  相似文献   

3.
建立了局部火灾下多层多跨矩形钢管混凝土柱-钢梁平面框架温度场和力学性能分析的有限元模型。在考虑楼板影响的基础上,研究了保护层厚度不同时钢管混凝土框架结构的温度场分布规律。研究了不同受火工况条件下钢管混凝土框架结构的变形和破坏规律、耐火极限状态、受火梁的内力状态以及结构耐火极限的规律。分析表明,梁保护层厚度影响钢梁温度分布形式;火灾下,框架结构发生了受火梁的整体屈曲破坏。  相似文献   

4.
设置防屈曲支撑的钢管混凝土框架是一种新型钢管混凝土减震结构。采用有限元软件Opensees对设置防屈曲支撑的单层单跨钢管混凝土减震框架进行数值模拟,研究了框架梁柱线刚度比、防屈曲支撑初始刚度以及钢管混凝土柱轴压比等设计参数对该减震结构抗震性能的影响。研究结果表明:1数值模拟和试验结果吻合较好,验证了有限元模型的正确性;2梁柱线刚度比在0.1~0.3之间变化时,钢管混凝土减震框架的抗震性能较好;3BRB耗能支撑的初始刚度K1在40~80kN/mm变化时,减震框架的耗能减震效应较明显;4在合理的钢管混凝土柱轴压比范围内,当轴压比较大时,在钢管混凝土框架中设置防屈曲支撑能明显地提高结构的耗能能力和改善结构的强度退化现象。  相似文献   

5.
地震区多层异形框架柱-框架结构体系应用研究   总被引:4,自引:0,他引:4  
异形框架柱-框架结构是由异形框架柱、普通矩形框架柱和框架梁组成的现浇钢筋混凝土框架结构.对等效长宽比不同的竖向异形截面构件分别按柱计算和按墙计算的差别进行了计算分析,基于周期、层间位移值、基底剪力及倾覆弯矩等主要动力指标和构件在水平力作用下变形特点认为长宽比为3~6的异形截面竖向构件在以框架为主体的多层结构中按异形框架柱进行计算和设计是可行的,并给出了该类构件按框架柱设计和按剪力墙设计的区分原则.振动台试验证明了异形框架柱-框架结构体系的安全性能.文中所给的2个工程实例可为类似结构设计提供参考.  相似文献   

6.
为研究型钢混凝土(SRC)异形柱框架在输入地震动作用下的非线性反应,采用Opensees平台建立有限元模型进行数值模拟。经试验结果和Sap2000计算结果的验证,Opensees的计算结果较为合理。根据计算结果,给出SRC异形柱框架在El Centro波、Taft波和兰州波作用下的位移、加速度、基底剪力等时程曲线,并对其进行了分析。结果表明,SRC异形柱框架在地震作用下的变形整体上呈剪切型,位移曲线沿高度呈倒三角分布;随着输入地震动加速度峰值的增大,SRC异形柱框架的加速度反应动力放大系数逐渐减小,基底剪力的增长速度为先快后慢。  相似文献   

7.
通过对一榀异形柱框架的低周反复试验,研究了框架在水平反复荷载作用下的位移延性及在竖向荷载作用下框架柱截面曲率的延性性能,分析了框架柱柱脚截面曲率延性与结构位移延性的关系,给出了异形柱截面极限曲率的确定方法,分析了延性对框架抗震性能的影响,针对提高异形柱框架的延性提出了相应的建议。结果表明:框架拥有良好的延性。  相似文献   

8.
地铁车站结构作为现代城市交通工程的重要组成部分,其抗震问题已成为城市工程抗震和防灾减灾研究的重点与难点。以深圳地铁3号线四期低碳城单拱大跨车站为研究对象,采用近场波动有限元方法,建立三维土-结构相互作用整体有限元分析模型。选取3条人工波和3条天然波作为输入地震动,分析水平单向地震动、水平与竖向双向地震动作用下单拱大跨地铁车站结构三维地震响应规律。研究结果表明,双向地震动作用下单拱大跨无柱结构及矩形框架有柱结构的水平位移及层间位移均略小于单向地震动作用下,但矩形框架有柱结构在竖向地震动作用下的中柱轴压比明显增加,说明单拱大跨车站结构可有效降低双向地震动作用下中柱轴压比变大的风险;双向地震动作用下的结构峰值弯矩大于单向地震动作用下,说明进行结构设计时应适当考虑竖向地震动作用的影响;单拱大跨无柱结构拱顶弯矩明显小于矩形框架有柱结构顶板跨中弯矩,改善了常规矩形框架结构顶板受力性能,但由于单拱大跨无柱结构缺少中柱竖向支撑作用,其底板及侧墙底部弯矩明显大于矩形框架有柱结构,尤其在双向地震动作用下更明显,因此单拱大跨无柱结构需加强底板及侧墙的厚度与配筋,以抵抗较大的弯矩响应。  相似文献   

9.
根据考虑几何和材料非线性及温度沿杆件截面高度线性分布等因素对钢结构常温和高温响应影响的基本方程,用自行编制的计算程序对单层双跨钢框架进行结构非线性温度响应研究,分析了弯曲应变、屈强比、梁柱刚度比、初始弹性模量等因素对结构响应的影响,并研究了温度步长、保护层厚度对结构耐火时间的影响。由计算结果发现,弯曲应变、初始弹性模量、梁柱线刚度比对梁跨中挠度及边柱柱顶水平位移影响较大,而对柱顶竖向位移影响不明显;当结构有防火保护层时,时间步长对结构耐火时间的影响不大,而保护层厚度对结构耐火时间的影响较明显。  相似文献   

10.
为检验抗侧刚度比和支撑布置方式等因素对具有不同总层数的屈曲约束支撑钢框架的抗震性能影响,借助SAP2000软件,探讨6层、12层、18层屈曲约束支撑钢框架结构在抗侧刚度比分别为1、2、3、4、5共五种工况及倒V型和单斜向两种支撑布置方式下的抗震性能。结果表明,屈曲约束支撑钢框架结构基底剪力-顶点位移曲线呈典型的双线性特征;随抗侧刚度比的增大,结构的层间位移角总体上呈降低趋势,基底剪力及支撑轴力增大,顶点水平位移变小,框架所分担的剪力降低;倒V型布置支撑较单斜向布置具有略大的基底剪力、谱加速度,较小的顶点位移、层位移、层间剪力和框架剪力分担率。分析表明,总体上来看,倒V型布置较单斜向布置时支撑框架结构具有略优的抗震性能;抗侧刚度比较支撑布置方式对支撑框架结构抗震性能的影响更为显著。  相似文献   

11.
为了分析受火后混凝土框架结构的残余力学性能,基于纤维模型的思路,将梁、柱构件截面划分成多个纤维,可以考虑构件截面的不均匀温度场分布以及受火损伤后材料力学性能的变化。以ABAQUS通用有限元软件为开发平台,利用Python编程语言对其进行二次开发,将SAP2000建立的模型文件导入到ABAQUS中,对基于纤维模型的混凝土框架进行受火后的温度场分析和非线性力学分析。通过一个多层多跨三维混凝土框架火灾反应的实例,对该框架在受火后的力学反应进行了分析,可为评估混凝土框架结构受火后的残余力学性能提供参考。  相似文献   

12.
纤维增强混凝土异形柱框架抗震性能的试验研究   总被引:6,自引:1,他引:5  
通过薄弱部位应用纤维增强的混凝土异形柱框架和同条件下无纤维异形柱框架的拟静力试验研究,对比了两榀框架的破坏特征、出铰顺序、承载能力和延性、滞回特性、耗能能力及刚度退化等抗震性能指标。研究表明:应用纤维增强的异形柱框架承载能力和整体刚度显著提高,薄弱部位破坏程度减轻,耗能能力有所增强,纤维可以改善异形柱框架薄弱部位的抗震性能,提高异形柱框架结构的整体抗震能力。  相似文献   

13.
Current seismic design requirements for special concentrically braced frames (SCBFs) in chevron configurations require that the beams supporting the braces be designed to resist the demands resulting from the simultaneous yielding of the tension brace and degraded, post-buckling strength of the compression brace. Recent research, including large-scale experiments and detailed finite-element analyses, has demonstrated that limited beam yielding is not detrimental to chevron braced frame behavior and actually increases the story drift at which the braces fracture. These findings have resulted in new expressions for computing beam demands in chevron SCBFs that reduce the demand in the tension brace to be equal to the expected compressive capacity at buckling of the compression brace. In turn, the resultant force on the beam is reduced as is the required size of the beam. Further study was undertaken to investigate the seismic performance of buildings with SCBFs, including chevron SCBFs with and without yielding beams and X-braced frames. Prototype three- and nine-story braced frames were designed using all three framing systems, that is, chevron, chevron with yielding beams, and X SCBFs, resulting in six building frames. The nonlinear dynamic response was studied for ground motions simulating two different seismic hazard levels. The results were used to characterize the seismic performance in terms of the probability of salient damage states including brace fracture, beam vertical deformation, and collapse. The results demonstrate that the seismic performance of chevron SCBFs with limited beam yielding performs as well as or better than the conventionally designed chevron and X SCBFs.  相似文献   

14.
钢管混凝土结构已经广泛应用于我国高层和超高层建筑中,为研究该类结构的抗震性能,分别采用分离模量法和统一模量法对某13层钢管混凝土框架结构进行抗震性能分析,研究不同地震波作用下组合框架的模态和多遇地震下的弹性动力时程,对比组合框架顶点位移反应、加速度反应、层间侧移及动力放大系数等。研究结果表明,分离模量法和统一模量法建模方法在分析钢管混凝土框架抗震动力特性上总体相差不大,但前者可以考虑材料弹塑性,从而对结构弹塑性进行分析,而后者在弹塑性阶段需要用全曲线表达式,尚需进一步的研究。  相似文献   

15.
Post‐tensioned (PT) self‐centering moment frames were developed as an alternative to welded moment‐resisting frames (MRFs). Lateral deformation of a PT frame opens gaps between beams and columns. The use of a composite slab in welded MRFs limits the opening of gaps at the beam‐to‐column interfaces but cannot be adopted in PT self‐centering frames. In this study, a sliding slab is used to minimize restraints to the expansion of the PT frame. A composite slab is rigidly connected to the beams in a single bay of the PT frame. A sliding device is installed between the floor beams and the beams in other bays, wherever the slab is allowed to slide. Many shaking table tests were conducted on a reduced‐scale, two‐by‐two bay one‐story specimen, which comprised one PT frame and two gravitational frames (GFs). The PT frame and GFs were self‐centering throughout the tests, responding in phase with only minor differences in peak drifts that were caused by the expansion of the PT frame. When the specimen was excited by the 1999 Chi‐Chi earthquake with a peak ground acceleration of 1.87g, the maximum interstory drift was 7.2% and the maximum lateral force was 270 kN, equal to 2.2 times the yield force of the specimen. Buckling of the beam bottom flange was observed near the column face, and the initial post‐tensioning force in the columns and beams decreased by 50 and 22%, respectively. However, the specimen remained self‐centering and its residual drift was 0.01%. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

16.
This article analyses the response of steel-moment resisting frames subjected to near-field ground motions. In near-field areas high damage and a relevant number of collapsed steel buildings arose even when both design and detailing had been performed in perfect accordance with the code provisions. These circumstances are related to the characteristics of the motion that in such areas shows large-amplitude pulses along the fault-normal component. The response of two steel moment resisting frames characterized by different stiffness levels and subjected to seven different accelerograms recorded in stations located in near-field areas is discussed in the following. The frames have been also analyzed by modelling the real behavior of semi-rigid joints between beams and columns and taking into account the presence of passive dampers (shear link devices). The non-linear dynamic analysis has been performed with the aim of acquiring a quantitative knowledge on the effects of near-field ground motions on frame buildings and on their damage.  相似文献   

17.
半刚性连接钢框架抗震性能的模型试验研究   总被引:3,自引:0,他引:3  
通过两榀1/2比例的一跨两层半刚性连接钢框架模型的低周反复荷载试验,研究了框架模型的破坏机制、、出饺顺序、滞回特性、耗能能力等抗震性能。从而得出结论:具有腹板双角钢的顶底角钢连接的钢框架由于节点连接刚度较小,因此框架在侧向力作用下变形较大,但同时此连接也改善了梁柱的内力分布,提高了框架的耗能能力,增加了结构抗震性能。  相似文献   

18.
Special concentrically braced frames (SCBFs) are considered as one of the most economical and effective lateral force‐resisting systems in structures located in the regions of high seismicity. Steel braces in a braced frame undergo large axial deformations in tension and compression to dissipate the seismic energy. However, past studies have shown that SCBFs exhibit the soft‐story hinge mechanisms and unpredictable failure patterns under earthquake loading conditions. These inelastic responses along with the use of continuous structural sections as columns over consecutive floors induce flexural demand that is not considered in the current design practice. In this study, the evaluation of seismic performance of nine SCBFs designed as per the current practice has been carried out for three different story heights (i.e., three‐story, six‐story, and nine‐story) and three types of brace configurations (namely, chevron, split X, and single X). Three additional design techniques are also explored based on (i) the inclusion of column moments in the design; (ii) the theory of formation of plastic hinges; and (iii) the design of braces considering the forces computed at their post‐buckled stages. Nonlinear dynamic analyses of these study frames have been evaluated numerically using a computer software Perform‐3D for a suite of 40 ground motions representing the design basis earthquake and maximum considered earthquake hazard levels. Analyses results showed that the SCBFs designed as per the modified procedures achieved the desired performance objectives without the formation of soft‐story mechanism. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   

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