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1.
柱端铰型受控摇摆钢筋混凝土框架采用整体结构刚度"弱化"的方式来减小结构的地震作用效应,同时通过设置层间阻尼器来控制结构地震位移响应并消耗地震能量。模拟地震振动台试验研究结果表明,在罕遇地震作用下,模型主体结构未见损伤,结构抗震性能优异。首先介绍柱端铰型受控摇摆钢筋混凝土框架结构形式,并进行有限元计算分析,通过与试验结果对比验证数值建模的正确性,其次使用Pushover分析方法对比和评定无控及受控状态下柱端铰型摇摆框架的抗震性能。分析结果表明,通过设置层间耗能阻尼器,受控柱端铰型摇摆框架的位移响应可以得到有效控制,地震加速度和位移响应满足抗震性能指标。  相似文献   

2.
对带填充墙的钢筋混凝土框架结构进行数值分析,研究填充墙体对框架结构抗震性能的影响。采用有限元软件ABAQUS建立了填充墙框架结构模型,通过数值模拟分别分析了墙体开洞、墙体材料以及填充墙与框架的连接形式在多遇和罕遇地震下对填充墙框架动力响应及损伤的影响。分析结果表明:刚性连接下的填充墙对框架产生了刚度效应,使得其自振周期为纯框架的0.2~0.7倍,导致在地震作用下的响应增大,但填充墙对框架的约束效应限制了框架柱的变形,增大了结构的抗侧承载力;罕遇地震下填充墙与框架存在复杂的相互作用,开洞填充墙对框架柱产生了约束作用,减小了柱的计算高度,满布填充墙对框架产生斜压杆效应,导致柱端出现附加剪应力容易出现剪切破坏。柔性连接下的填充墙对框架的自振周期影响很小,在进行抗震验算时可不进行自振周期折减,在多遇和罕遇地震波作用下的动力响应以及损伤均与纯框架类似,与抗震规范的设计计算吻合,同时也可避免填充墙的破坏。  相似文献   

3.
地震可靠度是桥梁抗震研究中的重要问题。基于随机分析的响应面理论和规范反应谱法,提出了一种分析具有随机结构参数的桥梁地震可靠度的方法,研究了结构的破坏准则及其极限状态方程,计算了高墩大跨连续刚构桥在地震激励下设计基准期内的动力可靠度。分析时考虑了结构参数和场地土的随机性,分别计算了连续刚构在多遇地震、设防地震和罕遇地震作用下的失效概率,得到了结构在设计基准期内,"三水准设防标准"条件下的地震可靠度。结果表明,该桥设计满足抗震规范要求。  相似文献   

4.
近场地震下竖向刚度不同的混合结构动力性能分析   总被引:1,自引:0,他引:1       下载免费PDF全文
近场地震的动力特性明显不同于远场地震,因此有必要对结构在近场地震作用下的动力性能展开研究。以上部钢结构-下部混凝土结构这类竖向刚度不同的加层混合结构为研究对象,对其在近场脉冲型地震、近场无脉冲型地震及远场地震作用下的动力响应进行研究。结果表明:在多遇、设防、罕遇地震作用下,近场脉冲型地震会使结构的层间位移角、层间剪力、加速度等动力响应均放大并出现超限的情况,而且都比罕遇地震作用下结构的响应增大更明显;在进行近场区加层混合框架结构的设计和建设时,近场脉冲效应会使结构存在不满足规范的情况,有必要对竖向刚度不同的加层混合结构在近场区的适用性进行深入研究。  相似文献   

5.
为分析支撑布置方式、刚度比、结构总层数等因素在罕遇地震下对屈曲约束支撑框架结构动力响应的影响,借助有限元分析软件SAP2000,分别对6层、12层、18层屈曲约束支撑框架结构模型进行了罕遇地震下的时程分析,详细研究了多高层结构体系的层间位移角、底层剪力、支撑内力等随支撑布置方式、刚度比、结构总层数等因素变化的规律。分析表明,倒V较单斜布置更能有效降低底层剪力、增大支撑轴力、降低层间位移角,从而降低结构的地震响应,更有利于结构消能减震;随着结构总层数的增大,支撑的屈服层数呈现出增多的趋势;刚度比七为2—4时,能使较多层数的屈曲约束支撑参与到消能减震的过程之中,较好地实现抗震设防目标。  相似文献   

6.
邓夕胜  牟淼    唐煜 《世界地震工程》2021,(2):173-182
通过模态分析研究了抗震设防烈度为8度(0.3g)的混合结构与全钢结构两种阀厅结构方案的动力特性,基于地震动的地震学模型与概率密度演化法分析了全钢阀厅的非线性随机动力可靠度,根据阀厅角柱柱顶位移响应得到了全钢阀厅动力影响的概率密度曲面及典型时刻的概率密度曲线。研究结果表明:阀塔对结构整体刚度影响较小,工程中可采用无阀模型进行简化计算;高烈度设防地区,推荐采用结构布置相对规则的钢结构方案;随机动力分析相比于确定性分析更能反应地震作用下阀厅动力响应的客观规律;阀厅钢结构方案在罕遇地震作用下可靠度较高,结构安全可靠。  相似文献   

7.
受控摇摆式钢筋混凝土框架结构(controllable rocking reinforced concrete frame,简称CRRCF)是一种新型减震耗能结构。通过对摇摆节点及整体框架进行的低周反复加载试验,研究其滞回特性。根据整体摇摆框架的滞回曲线得到了受控摇摆式钢筋混凝土框架的等效黏滞阻尼比。通过摇摆节点试验及理论分析,提出了摇摆节点的恢复力模型。利用有限元软件ABAQUS对受控摇摆式钢筋混凝土框架结构进行数值模拟,得到了不同节点刚度水平下结构的地震动力响应,并分析得出摇摆节点刚度的合理弱化程度。通过受控摇摆式钢筋混凝土框架和常规钢筋混凝土框架(RCF)的动力响应对比,可以发现CR-RCF结构可以有效降低结构的层间剪力与加速度响应。与RCF结构相比,CR-RCF结构的剪力与位移响应沿楼层分布较为均匀,这有利于防止层间变形过于集中,使各层材料都能得到充分利用。在受控摇摆式钢筋混凝土框架结构中设置耗能阻尼器,进行时程分析可以发现结构的位移响应可以得到有效的控制。  相似文献   

8.
巨型框架-支撑结构的非线性地震反应分析   总被引:1,自引:0,他引:1  
巨型框架-支撑结构体系是一种新型的巨型结构体系,是在吸取巨型框架结构体系和巨型桁架结构体系优点的基础上被提出的。对巨型框架-支撑结构进行了罕遇地震下的弹塑性时程分析。结果表明,巨型框架-支撑结构的动力性能优越,是一种高效的巨型结构体系。  相似文献   

9.
体外预应力自复位框架通过设置铰接节点弱化结构整体抗侧刚度,减小输入到结构中地震能量,地震作用后利用钢绞线的弹性回复力进行自复位。在已有的理论分析和试验研究基础上,对体外预应力自复位框架结构的抗震设计方法进行了研究。确定了体外预应力自复位框架结构的抗震性能水准、多道防线的布置以及抗震设计流程。以一个三层三跨体外预应力自复位框架为例进行了基于性能的抗震设计,采用有限元程序进行动力时程分析,输入3条地震波模拟结构经历设计烈度地震、罕遇地震的动力响应。分析结果表明:体外预应力自复位框架结构在罕遇地震作用下,最大层间位移角满足设计要求的性能目标,验证了基于性能抗震设计方法的有效性,同时表明体外预应力自复位框架结构具有良好的自复位能力和优异的抗震性能。  相似文献   

10.
将摩擦摆隔震体系应用在模块化钢框架结构中,研究摩擦摆支座对模块化结构整体性能的影响规律。基于ETABS有限元软件,考虑模块化节点刚域对结构刚度的影响,采用摩擦摆隔震体系对某模块化建筑示范综合办公楼进行基础隔震设计与研究,并进行了多遇地震作用下的弹性时程分析、设防烈度和罕遇地震作用下的弹塑性时程分析。分析结果表明,节点刚域对抗震结构地震响应的影响比对隔震结构地震响应的影响更大。FPS隔震体系在多遇地震作用下隔震效果不明显,在设防烈度及罕遇地震作用下能起到良好的隔震作用。罕遇地震作用下,隔震结构中仅发现少量梁铰,无柱铰出现,上部结构结构基本处于弹性,隔震效果显著。  相似文献   

11.
Passive energy dissipation devices are increasingly implemented in frame structures to improve their performance under seismic loading. Most guidelines for designing this type of system retain the requirements applicable to frames without dampers, and this hinders taking full advantage of the benefits of implementing dampers. Further, assessing the extent of damage suffered by the frame and by the dampers for different levels of seismic hazard is of paramount importance in the framework of performance‐based design. This paper presents an experimental investigation whose objectives are to provide empirical data on the response of reinforced concrete (RC) frames equipped with hysteretic dampers (dynamic response and damage) and to evaluate the need for the frame to form a strong column‐weak beam mechanism and dissipate large amounts of plastic strain energy. To this end, shake‐table tests were conducted on a 2/5‐scale RC frame with hysteretic dampers. The frame was designed only for gravitational loads. The dampers provided lateral strength and stiffness, respectively, three and 12 times greater than those of the frame. The test structure was subjected to a sequence of seismic simulations that represented different levels of seismic hazard. The RC frame showed a performance level of ‘immediate occupancy’, with maximum rotation demands below 20% of the ultimate capacity. The dampers dissipated most of the energy input by the earthquake. It is shown that combining hysteretic dampers with flexible reinforced concrete frames leads to structures with improved seismic performance and that requirements of conventional RC frames (without dampers) can be relieved. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

12.
地震作用会造成钢筋混凝土框架发生平面和垂直方向的变形,导致其结构受到更大的地震力,加剧损伤程度。形状记忆合金(SMA)材料在外力作用下能够快速恢复变形前形状,降低框架损伤程度,进一步提高框架结构的承载能力和稳定性。基于此,有必要研究形状记忆合金混凝土框架建筑的抗震性能。以某实际工程为例,采用ANSYS软件建立钢筋混凝土框架有限元模型,选取天津地震波、北岭地震波、印度洋地震波及人工地震波作为地震震动输入,记录地震震动下时程结果。研究结果表明,预应力筋断裂后,该结构在地震作用下的滞回曲线为饱满的旗帜形,最大层间位移为1/125,残余变形在±10 mm之间,最高峰值荷载为211 kN,水平承载力较强,表明其自复位性能较高、地震响应效果较优、抗震承载力较强,可以有效提高建筑结构的安全性和可靠性。  相似文献   

13.
为研究近断层地震动特性对火灾后多层RC框架抗震性能的影响,以火灾后某多层RC框架结构为研究对象,结合火灾后现场材料的检测与鉴定报告,开展了结构火灾前后在近场有脉冲和无脉冲地震作用下的结构动力弹塑性时程分析,对比分析了近场有脉冲和无脉冲地震动特性对火灾前后RC框架结构整体的抗震性能的影响。研究结果表明:火灾后,整体结构地震响应明显大于火灾前,火灾后结构底层层间位移角在脉冲型地震和无脉冲地震作用下分别达到火灾前的1.44和1.54倍;近场脉冲型地震作用下结构响应明显大于无脉冲地震,罕遇地震作用下,近场脉冲型地震工况下的底部层间位移角相较于无脉冲地震工况增加了96.0%,火灾后更是增加了118.0%。研究成果可为多层RC框架火灾后安全性评估和加固设计提供参考。  相似文献   

14.
Earthquake investigations have illustrated that even code-compliant reinforced concrete frames may suffer from soft-story mechanism. This damage mode results in poor ductility and limited energy dissipation. Continuous components offer alternatives that may avoid such failures. A novel infilled rocking wall frame system is proposed that takes advantage of continuous component and rocking characteristics. Previous studies have investigated similar systems that combine a reinforced concrete frame and a wall with rocking behavior used. However, a large-scale experimental study of a reinforced concrete frame combined with a rocking wall has not been reported. In this study, a seismic performance evaluation of the newly proposed infilled rocking wall frame structure was conducted through quasi-static cyclic testing. Critical joints were designed and verified. Numerical models were established and calibrated to estimate frame shear forces. The results evaluation demonstrate that an infilled rocking wall frame can effectively avoid soft-story mechanisms. Capacity and initial stiffness are greatly improved and self-centering behavior is achieved with the help of the infilled rocking wall. Drift distribution becomes more uniform with height. Concrete cracks and damage occurs in desired areas. The infilled rocking wall frame offers a promising approach to achieving seismic resilience.  相似文献   

15.
The wall–frame systems have many known advantages, namely increase of the system's lateral strength and stiffness thereby allowing for a good tangential inter‐storey drift control, and the retention of a satisfactory energy dissipation capacity. However, rocking of the wall could occur as a result of uplifting wall base or concentrated plastic hinge deformations. Problems arising from this phenomenon have significant impact on the system behaviour and hence require extended study. This paper focuses on the wall‐rocking phenomenon due to the concentrated plastic hinge rotation at the wall base. To facilitate a comprehensive evaluation, a six‐storey three‐bay RC wall–frame structure is investigated with comparison to a bare ductile frame by means of earthquake simulation tests. The results revealed that, despite a superior performance over the ductile frame under low to moderate seismic actions, the wall–frame structure deteriorated more rapidly than the bare frame during advanced inelastic response. The increasingly significant rocking of the wall resulted in severe material damage at localized critical regions. Mitigating the wall rocking is seen to be a key to the further improvement of the system performance, and the extent to which this may be achieved by incorporating the three‐dimensional effects is explicitly illustrated by an analytical evaluation. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

16.
基于动力可靠度的隔震结构参数模糊优化   总被引:1,自引:0,他引:1  
分别选取Bouc—Wen和退化Bouc—Wen模型描述隔震层及上部结构滞变回复力,采用虚拟激励法进行隔震结构随机响应分析。用各层最大层间位移响应和累计疲劳损伤指数建立双参数的功能状态方程,用一次二阶矩理论计算隔震结构失效概率。选用一个隔震框架作为数值算例,探讨了低频过滤器、隔震阻尼比和隔震刚度对隔震结构各子系统条件失效概率的影响。建立了隔震结构参数多目标优化模型,用失效概率确定单因素评判的隶属度,并采用最大隶属度法对隔震参数进行模糊优化。  相似文献   

17.
为研究填充墙对底层框架多层砌体房屋地震反应的影响,以典型的填充墙-底层框架多层砌体房屋为基础,建立有限元计算模型并进行了弹塑性动力时程分析。根据不同模型的计算结果以及填充墙的刚度和强度,分析了填充墙对底层框架多层砌体房屋自振周期、地震作用下房屋整体变形、底层框架的损伤以及填充墙与底层框架相互作用的影响。计算结果表明:填充墙对房屋整体地震反应产生明显影响,其影响不能忽略。在上部砌体结构质量和刚度不变的情况下,结构自振周期随着填充墙刚度的增加而降低;随着填充墙与底层框架之间连接作用的增强,结构整体的变形减小,底层框架的损伤增大。当填充墙与底层框架之间采用弱连接时,采用强度较高的填充墙可以提高结构整体的变形能力,从而提高结构整体的抗震能力。  相似文献   

18.
范村莹  周强  孙柏涛 《地震工程学报》2018,40(5):897-903,968
历史震害表明,填充墙与框架的连接刚度对框架结构的抗震性能有重要影响。我国《建筑抗震设计规范》(2010)建议"框架结构中的砌体填充墙,宜与柱脱开或采用柔性连接",但对二者的具体连接刚度,规范并没有做出明确规定。运用ABAQUS软件,对前人开展的考虑填充墙与框架连接影响的框架结构拟静力试验进行数值模拟,对比分析填充墙框架结构破坏特征及滞回曲线等抗震性能指标,验证了有限元模型的可靠性。基于某典型框架结构,建立不考虑填充墙、考虑填充墙与框架不同连接刚度的框架结构有限元模型。模态分析表明,连接刚度对框架结构的频率影响较小,结构的动力特性趋于一致;多遇地震和罕遇地震作用下的弹塑性时程分析表明,合适的连接刚度可以提高结构的抗震性能。研究可为框架结构的抗震设计提供参考。  相似文献   

19.
A design procedure for seismic retrofitting of concentrically and eccentrically braced frame buildings is proposed and validated in this paper. Rocking walls are added to the existing system to ensure an almost uniform distribution of the interstorey displacement in elevation. To achieve direct and efficient control over the seismic performance, the design procedure is founded on the displacement‐based approach and makes use of overdamped elastic response spectra. The top displacement capacity of the building is evaluated based on a rigid lateral deformed configuration of the structure and on the ductility capacity of the dissipative members of the braced frames. The equivalent viscous damping ratio of the braced structure with rocking walls is calculated based on semi‐empirical relationships specifically calibrated in this paper for concentrically and eccentrically braced frames. If the equivalent viscous damping ratio of the structure is lower than the required equivalent viscous damping ratio, viscous dampers are added and arranged between the rocking walls and adjacent reaction columns. The design internal forces of the rocking walls are evaluated considering the contributions of more than one mode of vibration. The proposed design procedure is applied to a large set of archetype braced frame buildings and its effectiveness verified by nonlinear dynamic analysis.  相似文献   

20.
The seismic response of rocking frames that consist of a rigid beam freely supported on rigid freestanding rectangular piers has received recent attention in the literature. Past studies have investigated the special case where, upon planar rocking motion, the beam maintains contact with the piers at their extreme edges. However, in many real scenarios, the beam‐to‐pier contact lies closer to the center of the pier, affecting the overall stability of the system. This paper investigates the seismic response of rocking frames under the more general case which allows the contact edge to reside anywhere in‐between the center of the pier and its extreme edge. The study introduces a rocking block model that is dynamically equivalent to a rocking frame with vertically symmetric piers of any geometry. The impact of top eccentricity (ie, the distance of the contact edge from the pier's vertical axis of symmetry) on the seismic response of rocking frames is investigated under pulse excitations and earthquake records. It is concluded that the stability of a top‐heavy rocking frame is highly influenced by the top eccentricity. For instance, a rocking frame with contacts at the extreme edges of the piers can be more seismically stable than a solitary block that is identical to one of the frame's piers, while a rocking frame with contacts closer to the centers of the piers can be less stable. The concept of critical eccentricity is introduced, beyond which the coefficient of restitution contributes to a greater reduction in the response of a frame than of a solitary pier.  相似文献   

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