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1.
短柱隔震模型与非隔震模型模拟地震振动台对比试验研究   总被引:1,自引:0,他引:1  
本文取一栋四层转混住宅的标准单元为模型。在两种情况下:即房屋模型底部加设钢管混凝土短柱隔震支座和不加设钢管混凝土短柱隔震支座,分别进行了模拟地震动台试验。通过试验结果的对比,了解了钢管混凝土短柱支座隔震模型的隔震效果及其抗震性能。  相似文献   

2.
摩擦-钢管混凝土短柱复合隔震支座性能试验与隔震分析   总被引:3,自引:0,他引:3  
作者在钢管混凝土柱支座隔震房屋实验研究中发现,隔震支座中上盖与底座的接触无论如何处理,摩擦力总是存在的.因此,隔震支座实际上是摩擦耗能与钢管混凝土耗能复合减震系统。本文通过对单个和一组隔震支座的实验研究,确定了短柱支座的恢复力模型,采用了高阶单步算法分析了装有此类支座隔震结构的地震反应,验证了复合隔震支座良好的隔震性能及隔震效果。  相似文献   

3.
作者在钢管混凝土柱支座隔震房屋实验研究中发现,隔震支座中上盖与底座的接触无论如何处理,摩擦力总是存在的。因此,隔震支座实际是摩擦耗能与钢管混凝土耗能复合减震系统。本文通过对单个和一组隔震支座的实验研究,确定了短柱支座的恢复力模型,采用了高阶单步算法分析了装有此类支座隔震结构的地震反应,验证了复合隔震支座的良好的隔震性能及隔震效果。  相似文献   

4.
采用HBTA2.5程序,对一变刚度钢管混凝土短柱隔震结构进行了弹塑性时程分析。分析结果表明,其隔震装置的水平变形和耗能能力可以大大减轻地震对结构的影响。提出钢管混凝土短柱隔震结构在工程应用将有很好的发展前景。  相似文献   

5.
变刚度钢管混凝土短柱隔震装置的试验分析与研究   总被引:2,自引:1,他引:1  
对变刚度钢管混凝土短柱隔震装置在低周反复荷载试验中所出现的问题进行了阐述,指出了产生问题的原因,给出了较理想的装置形式。同时,为提高装置的隔震性能,笔者提出了第二梯队支座的概念,经过理论分析与试验证,说明带有第二梯队座的变刚度钢管混凝土短柱隔震装置具有良好的隔震性能。  相似文献   

6.
本文通过一座三层的耗能-隔震柔性底层钢管混凝土结构模型和一座三层普通钢筋混凝土结构模型的振动台实验,着重研究了耗能-隔震柔性底层钢管混凝土结构的抗震性能和减震效果,并与普通的钢筋混凝土结构的实验进行了分析比较,研究了两种结构体系在地震作用下的耗能分布和地震累积损伤情况。  相似文献   

7.
本文用钢管混凝土柱作为结构底层耗能柱、用承重墙和隔震器控制结构底层倒塌破坏,从而提出了一种新的耗能-隔震柔性底层结构体系。通过本文12根钢管混凝土柱和文献[7]中7根钢管混凝土柱的低周疲劳实验,初步确定了钢管混凝土柱地震损伤模型的参数;通过两个钢管混凝土-钢筋混凝土三层框架模型和一个纯钢筋混凝土三层框架模型的拟动力实验,研究和比较了两类结构体系的地震损伤。  相似文献   

8.
在隔震结构Benchmark模型的基础上,建立了相应的动力反应计算方法及计算程序,并在理想化隔震层刚度布置的情况下研究了隔震层水平刚度分布对基础隔震结构地震响应的影响.通过针对Benchmark模型设计的3种隔震方案的计算结果比较表明:当隔震层刚度中心靠近结构质心时,能显著降低结构的扭转反应,但同时增大了水平位移分量.文中在隔震结构Benchmark模型上建立的计算方法和结论为隔震体系计算和隔震方案设计提供了可靠的依据和途径.  相似文献   

9.
基于橡胶支座和滑板支座的水平力学性能,开发了一种新型多级隔震装置并介绍了该装置的组成、运动状态及力学模型。为了验证多级隔震装置在多水准地震作用下具有多级刚度的特性,设计了一幢相似比为1/10的四层混凝土框架结构,并根据结构模型设计了四套多级隔震装置进行了新型多级隔震结构振动台试验。试验与模拟结果表明:新型多级隔震装置隔震性能良好且在不同水准地震作用下能表现出多级抗震性能,相较于普通隔震装置,在大震下能较好的控制隔震层位移。针对不同多级隔震结构给出了多级隔震装置的最优参数的筛选流程,并基于某实际工程通过筛选流程选取了装置的最优参数。  相似文献   

10.
为研究隔震技术对超大型冷却塔抗震性能的影响,以某混凝土冷却塔为研究对象,利用SAP2000分别建立基础隔震与层间隔震的冷却塔有限元模型,开展了结构动力特性分析和非线性时程分析,与非隔震冷却塔相比,对比分析了基础隔震与层间隔震的隔震效果。研究结果表明:基础隔震技术与层间隔震技术均能有效地延长冷却塔结构的自振周期,降低结构地震反应,第一阶自振周期延长至近3倍,整体平动模态提前至前两阶,扭转模态提前至第三阶。对比基底剪力,基础隔震的减震性能略优于层间隔震;对比相对位移,喉部以上,基础隔震与层间隔震的冷却塔减震效果基本相同,喉部以下,层间隔震的减震效果优于基础隔震;对比加速度放大系数,塔筒各位置处基础隔震的减震效果均优于层间隔震,支柱位置处,与非隔震冷却塔相比,基础隔震的加速度略有放大。研究结果可为冷却塔的减隔震分析提供参考。  相似文献   

11.
This paper presents a detailed study on feasibility of un‐bonded fiber reinforced elastomeric isolator (U‐FREI) as an alternative to steel reinforced elastomeric isolator (SREI) for seismic isolation of un‐reinforced masonry buildings. Un‐reinforced masonry buildings are inherently vulnerable under seismic excitation, and U‐FREIs are used for seismic isolation of such buildings in the present study. Shake table testing of a base isolated two storey un‐reinforced masonry building model subjected to four prescribed input excitations is carried out to ascertain its effectiveness in controlling seismic response. To compare the performance of U‐FREI, same building is placed directly on the shake table without isolator, and fixed base (FB) condition is simulated by restraining the base of the building with the shake table. Dynamic response characteristic of base isolated (BI) masonry building subjected to different intensities of input earthquakes is compared with the response of the same building without base isolation system. Acceleration response amplification and peak response values of test model with and without base isolation system are compared for different intensities of table acceleration. Distribution of shear forces and moment along the height of the structure and response time histories indicates significant reduction of dynamic responses of the structure with U‐FREI system. This study clearly demonstrates the improved seismic performance of un‐reinforced masonry building model supported on U‐FREIs under the action of considered ground motions. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

12.
The paper analyzes the influence of friction pendulum system (FPS) isolator properties on the seismic performance of base‐isolated building frames. The behavior of these systems is analyzed by employing a two‐degree‐of‐freedom model accounting for the superstructure flexibility, whereas the FPS isolator behavior is described by adopting a widespread model that considers the variation of the friction coefficient with the velocity. The uncertainty in the seismic input is taken into account by considering a set of natural records with different characteristics scaled to increasing intensity levels. The variation of the statistics of the response parameters relevant to the seismic performance is investigated through the nondimensionalization of the motion equation and an extensive parametric study carried out for different isolator and system properties. The proposed approach allows to explore a wide range of situations while limiting the required nonlinear response history analyses. Two case studies consisting of base‐isolated building frames described as shear‐type systems are finally investigated in order to demonstrate the capabilities of the proposed simplified model in unveiling the essential characteristics of the performance of buildings isolated with FPS bearings. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

13.
文章将周期结构原理与导纳方法结合起来,分析了带复合结构单元的有阻尼的有限周期系统的波传播和振动特性,得到了有限周期结构自振频率的一般表达式。  相似文献   

14.
变刚度钢管混凝土短柱隔震装置的性能研究   总被引:7,自引:1,他引:6  
本文对变刚度钢管混土短柱震的滞回收性进行了理论分析和试验验证。对装置的隔震作用以及耗能特性进行了讨论通过低周反复荷载试验,证了分析的正确性。同时,试验还证明,变刚度钢管混凝土短柱震装置能很好的地耗散能量,从而减小地震反应,作者认为,该是一种价格性能比较优越的隔震装置,在工程实践中将有广阔的应用与推广前景。  相似文献   

15.
隔震结构中非经典阻尼影响及最佳阻尼比分析   总被引:15,自引:1,他引:14  
本文采用双自由度非比例阻尼振动模型描述基础隔震体系,用拉普拉斯变换方法获得其地震时域响应的近似解析解,借助于应谱理论分析了非比例阻尼对隔震体系中的上部结构层间最大剪力及隔震层最大位移等响应值的影响,探寻了隔震系统最佳阻尼比的取值范围。  相似文献   

16.
A seismic isolated structure is usually a long-period structural system, which may encounter a low-frequency resonance problem when subjected to a near-fault earthquake that usually has a long-period pulse-like waveform. This long-period wave component may result in an enlargement of the base displacement and a decrease of the isolation efficiency. To overcome this problem, a rolling-based seismic isolator, referred to as roll-n-cage (RNC) isolator, has been recently proposed. The RNC isolator has a built-in buffer (braking) mechanism that limits the peak isolator displacements under severe earthquakes and prevents adjacent structural pounding. This paper addresses the problem of passive and hybrid mitigation of the potential inner pounding of the self-braking RNC isolator under near-fault earthquakes. Numerical results show that the RNC isolator can intrinsically limit the isolator displacements under near-fault earthquakes with less severe inner pounding using additional hysteretic damping and active control forces.  相似文献   

17.
In this paper, the effect of lead core heating and associated strength deterioration on the seismic response of bridges isolated with lead rubber bearings (LRB) is investigated as a function of the characteristics of the isolator and near fault ground motions with forward rupture directivity effect. Furthermore, the ability of bounding analyses to provide a design envelope for maximum isolator force and maximum isolator displacement is verified. For this purpose, a series of nonlinear dynamic analyses are conducted for LRB isolated bridges where both deteriorating and non‐deteriorating force‐deformation relationship of LRB were employed. The analyses are performed for both simulated and recorded ground motions. It is found that while the temperature rise in the lead core generally increases with increasing magnitude and number of near fault ground motion velocity pulses, it decreases with larger distances from the fault. It is also found that bounding analysis method provides conservative (envelope) estimates of maximum isolator displacement and maximum isolator force for design purposes that fulfill its intended purpose. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

18.
基础隔震结构的耗能分析   总被引:5,自引:0,他引:5  
采用Bouc-wen模型,利用状态空间迭代法,对基础隔震结构进行了多质点的弹塑性时程分析,并根据此结果,利用能量方程,求得隔震结构的各项能量,绘制了各能量项时程曲线。以一实际工程为例,求得隔震结构的各项耗能情况,说明了基础隔震结构以减少地震输入和隔震层滞回耗能来减小对上部结构的损坏。  相似文献   

19.
Long-period pulses in near-field earthquakes lead to large displacements in the base of isolated structures.To dissipate energy in isolated structures using semi-active control,piezoelectric friction dampers(PFD) can be employed.The performance of a PFD is highly dependent on the strategy applied to adjust its contact force.In this paper,the seismic control of a benchmark isolated building equipped with PFD using PD/PID controllers is developed.Using genetic algorithms,these controllers are optimized to create a balance between the performance and robustness of the closed-loop structural system.One advantage of this technique is that the controller forces can easily be estimated.In addition,the structure is equipped with only a single sensor at the base floor to measure the base displacement.Considering seven pairs of earthquakes and nine performance indices,the performance of the closed-loop system is evaluated.Then,the results are compared with those given by two well-known methods:the maximum possive operation of piezoelectric friction dampers and LQG controllers.The simulation results show that the proposed controllers perform better than the others in terms of simultaneous reduction of floor acceleration and maximum displacement of the isolator.Moreover,they are able to reduce the displacement of the isolator systems for different earthquakes without losing the advantages of isolation.  相似文献   

20.
作者研制了一种新型方形组合式钢丝绳隔震器。该种隔震器由4个条形夹具夹持16根普通镀锌钢丝绳组合而成,从结构形式上保证了水平刚度对称。经过多次垂直向循环静力加卸载试验,运用Origin 7.0软件对实验数据进行分析处理,绘制出该种隔震器的静力特性曲线,并分别与目前防护工程中采用的条形不锈钢钢丝绳隔震器、鼓形钢丝绳隔震器的静力特性曲线进行了比较。试验结果表明,方形组合式钢丝绳隔震器不但具有初始刚度大、软特性明显、阻尼大、加工简便、性价比高等优点,而且克服了条形不锈钢钢丝绳隔震器价格高、水平刚度不相同和鼓形钢丝绳隔震器加工复杂的不足,在今后的防护工程隔震技术中有良好的应用前景。  相似文献   

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