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1.
采用阻尼杆件替代双层网壳结构中的部分下弦杆件,既不改变原结构的网格形式,又对其进行有效的减振控制。在ANSYS软件中建立粘弹性阻尼杆件的数值模型,采用阻尼杆件对网壳部分下弦杆件进行替换,建立网壳减振结构数值模型;分别采用8种阻尼杆件替换方式对结构进行控制,进行结构的三维地震作用分析,在三种常用II类场地地震作用下考察替换杆件布局对结构控制效果的影响。研究表明:阻尼杆件布局方式对结构动力响应的控制效果有较大影响,合理布置阻尼替换杆件可以有效降低结构最大节点位移、最大节点加速度、最大杆件轴力等响应,控制效果可以达到20%~30%。  相似文献   

2.
考虑到多维地震输入对网架结构的不利影响,基于形状记忆合金超弹性,研制出一种兼具自复位、高耗能及放大功能于一体的形状记忆合金复合黏滞阻尼器(Hybrid Shape Memory Alloy Viscous Dampers,简称HSMAVD),并通过试验研究该阻尼器在循环荷载作用下的力学性能;然后以平面四角锥网架模型为基础,将该阻尼器替换部分网架结构杆件,并分析该阻尼器减震控制效果。结果表明形状记忆合金与黏滞阻尼器复合后具有良好的协同工作能力,可有效发挥形状记忆合金的超弹性和黏滞阻尼器的速度相关特性,使其具有稳定的滞回性能和良好的耗能能力;采用阻尼杆件替换原杆件的方法既能对结构进行有效的减震控制,又不改变原有的结构形式,是一种优越的减震控制方法,并为HSMAVD被动控制系统在结构抗震中的实际应用提供新思路。  相似文献   

3.
提出一种高层减震结构体系,将核心筒与外框架采用柔性滑动连接,并集中设置聚合阻尼减震系统,充分利用内部核心筒和外框架的侧向变形差耗散地震能量;建立了聚合阻尼减震结构的简化质点系模型,并得到地震作用下的位移传递公式;完成了模型结构的振动台模型试验,验证了聚合阻尼耗能减震结构的减震效果;最后通过工程算例分析得到了聚合阻尼耗能减震结构内核心筒、外框架的地震响应和减震效果,进一步探讨了地震作用下不同结构体系的塑性损伤状态,理论和试验研究结果表明聚合阻尼耗能减震结构可有效控制结构构件的塑性损伤。  相似文献   

4.
大跨维修机库动力特性复杂,针对该类结构的减震研究则刚刚起步。本文结合大跨机库的地震响应特点,提出支撑柱顶与屋盖节点之间设置黏滞流体阻尼支撑的减震方案,对一大跨机库结构采用该减震方法进行了时程分析,对比减震前后结构基底剪力、柱顶侧移以及屋盖的杆件内力、位移。结果表明,该方法可以有效地吸收地震动输入能量,降低整体结构地震响应。由于机库结构特点决定了支撑柱间阻尼器的不均匀布置,导致减震效果在屋盖范围内的不均匀分布,分析结果表明屋盖杆件内力减震效果与杆件地震内力分布规律相吻合,表明该类减震方案对于大跨度维修机库屋盖地震响应具有非常好的针对性。  相似文献   

5.
对凯威特型单层球面网壳结构进行了削弱杆件刚度、附加阻尼器杆件的减振控制研究.削弱部分原有杆件的刚度后,附加阻尼减振杆件.根据阻尼杆件的力学特性,在ANSYS软件中建立附加阻尼杆件的数值计算模型,根据阻尼杆件的不同位置进行结构建模及动力分析,主要考察阻尼杆件的布置位置对网壳结构减振效果的影响,以附加斜杆和附加环杆两种方式为例进行了网壳减振结构地震作用分析.研究结果表明:阻尼杆件的布置位置对网壳结构的减振控制效果有非常重要的影响,通过合理削弱原有杆件刚度并设置附加阻尼杆件,可以使网壳结构的位移、加速度和杆件内力等动力反应有较大的降低.  相似文献   

6.
新型耗能(阻尼)减震器的开发与研究   总被引:18,自引:7,他引:11  
本文阐述了耗能减震的概念和原理,提出了耗能减震器设计的新思想,研制开发了多种新型实用耗能(阻尼)减震器,并对其中的圆环耗能器、双环耗能器、架颈圆环耗能器、弹塑性-摩擦复合耗能器等进行了循环荷载试验,考察了耗能器代作性能和耗能性能,对已装与未装耗能减震器的钢筋混凝土框架模型进行了伪动力对比实验,进一步考察了耗能减震器的减震效果。在试验研究的基础上,地耗能(阻尼)减震结构体系的分析方法进行了研究,并编  相似文献   

7.
为研究不同楼梯支座构造及阻尼填充墙厚度、阻尼填充墙砌体抗压强度、阻尼层剪切强度、减震支座剪切模量等设计参数对消能楼梯间减震性能的影响,采用ABAQUS有限元软件对4种不同楼梯支座构造、15个不同设计参数共19个消能楼梯间分析模型进行数值仿真分析。结果表明:不同楼梯支座构造中,设置减震支座可提供一定的水平、竖向刚度,改善楼梯间的屈服情况,减小梯板的竖向翘起位移,有利于地震中保持楼梯的稳定性;不同减震支座设置方案均可实现以减震支座的剪切变形消除梯板支撑效应、发挥良好耗能效果的减震目标;消能楼梯间构造简单、性能稳定,常用设计参数下均表现出良好的减震性能;阻尼填充墙厚度的增加,一定程度上增大消能楼梯间的刚度、水平承载能力;阻尼填充墙砌体抗压强度的变化对楼梯间减震性能影响较小;阻尼层剪切强度的增大将减小楼梯间的屈服位移,增大阻尼填充墙的压应力,建议采用剪切强度低的阻尼层材料;减震支座的剪切模量越大,梯板竖向翘起位移越小,减震支座剪切模量宜取0.5 MPa以上。  相似文献   

8.
阻尼比是消能减震结构设计的重要参数,对消能减震结构设计具有决定性影响。消能减震结构设汁巾阻尼是时变参数,消能减震结构是非经典阻尼结构。采用复模态设计方法、强解耦振型分解法、基于变形能的等效阻尼法三种方法分别对不同情况的消能减震结构阻尼比进行研究,得到选择消能减震设计疗法和不同方法计算精度的规律,对消能减震结构设计具有参考价值。  相似文献   

9.
目前国内外对黏滞阻尼墙消能减震机理和力学模型研究有限,针对阻尼墙力学特点的结构优化设计方法研究更少。本文通过缩尺黏滞阻尼墙力学性能试验,总结分析了黏滞阻尼墙的力学特性及消能减震机理,提出了适用于广域激励范围的黏滞阻尼墙力学模型,以及带黏滞阻尼墙消能减震高层结构的实用设计方法。  相似文献   

10.
SSI效应对粘弹性阻尼结构减震效果的影响分析   总被引:1,自引:0,他引:1  
本文以一单跨7层框架结构为研究对象,对不同场地和地震波输入条件下的粘弹性阻尼结构进行了二维有限元时程分析,探讨了SSI(土-结构动力相互作用)效应对粘弹性阻尼结构减震效果的影响。分析结果表明:①在硬土和稍硬土地基条件下,SSI效应明显降低了结构的楼层位移峰值,若在抗震设计中对客观存在的SSI效应加以考虑,设置较少数量的阻尼器(与刚性地基假定条件下确定的阻尼器数量相比)就能使结构的实际地震位移反应满足基于刚性地基假定的地震位移控制目标;②粘弹性阻尼结构的减震效果与场地条件、输入地震动特性密切相关;③与刚性地基相比,SSI效应使粘弹性阻尼结构的减震效果明显降低,且地基越软,降低幅度越大。因此,在实际的工程设计中,应当充分考虑SSI效应,对粘弹性阻尼结构的减震控制效果进行合理的评价,并针对不同的场地条件选用合适的阻尼器类型和性能参数,才有可能达到预期的减震控制效果。  相似文献   

11.
黏滞阻尼器在单层网壳结构中的优化布置   总被引:1,自引:0,他引:1  
目前采用黏滞阻尼器对单层网壳结构进行减振控制时,阻尼器最优布置位置通过试算确定。针对此问题,推导了地震作用下黏滞阻尼器耗能公式,提出了以能量比例系数为评价指标的阻尼器优化布置准则。以单层球面网壳和单层柱面网壳为例,对比分析了地震作用下分别采用优化布置准则与现有布置方式布置阻尼器时结构最大节点位移减振系数,验证了所提出优化布置准则的正确性及在单层球面网壳和单层柱面网壳中的适用性。  相似文献   

12.
In this study,a method for control of reticulated shells is proposed and its practicality is demonstrated.The control is implemented by replacing selected bars of the shell with passive viscoelastic dampers.By applying the eigenvalue perturbation technique and the earthquake spectrum concept,the sensitivities of various topologies of the shell are analyzed,and the optimal topology is determined by taking their symmetries into consideration.The results of this research show that common damper topologies are not effective for all types of responses and recorded earthquakes.The optimal topology identifi ed requires a minimal number of dampers for each type of earthquake record.The displacement control effect of the dynamic responses of the optimal topology is 10% – 20%; the acceleration control effect is also about 10% – 20%; and the axial force control effect is as much as 30% – 45%.Furthermore,the incremental dynamic analysis(IDA) method is used to investigate the stability of the controlled shell.The results show that the dynamic stability of the controlled shell is well preserved when it is vibrated under vibration and is better than the uncontrolled shell.The ultimate load increased by 10% and the elements entered into the plastic stage when the peak acceleration reached 580 Gal,which is 200 Gal larger than the uncontrolled shell.  相似文献   

13.
Design parameters for single- and multiple-tuned liquid column dampers for reducing the response of structures to seismic excitations are presented. A deterministic analysis is carried out using 72 earthquake ground motion records to determine the tuning ratio, tube width to liquid length ratio, and head loss coefficient corresponding to a given mass ratio for single-tuned liquid column dampers. A similar analysis is performed to determine the central tuning ratio, tuning bandwidth, and grouping of dampers for multiple-tuned liquid column dampers. The study indicates that by properly selecting the design parameters, single- and multiple-tuned liquid column dampers can reduce the response of structures to seismic excitation by up to 45 per cent. Design examples using single- and multiple-tuned liquid column dampers in a bridge and a ten-storey building are presented to illustrate how the parameters are selected and to demonstrate the performance of the devices under different ground excitations. The response of several structures with tuned liquid column dampers is compared with that using tuned mass dampers where it is shown that both devices result in comparable reductions in the response. © 1998 John Wiley & Sons, Ltd. This paper was produced under the auspices of the U.S. Government and it is therefore not subject to copyright in the U.S.  相似文献   

14.
网壳结构的粘滞阻尼减振分析与试验研究   总被引:26,自引:0,他引:26  
本文将粘滞阻尼器引入网壳结构,针对网壳结构粘滞阻尼器减振系统,编制了有限元分析程序,并对网壳结构进行了大量的振动控制分析和计算。作者设计制做了适合网壳结构的粘滞阻尼器,进行了性能试验;在此基础上设计制作了一个球型网壳结构模型,并进行了粘滞阻尼器减振的地震模拟振动台试验。  相似文献   

15.
In this study,dynamic responses of two buildings connected by viscoelastic dampers under bidirectional excitations are extensively investigated.The two buildings are a 10-story building and a 16-story building,with the shorter building on the left.Viscoelastic dampers are installed at all fl oors of the shorter building.Equations of motion are formulated using a fractional derivative model to represent the viscoelastic dampers.Three cases are considered with mass eccentricities at 0,10% and-10% with respect to the dimensions of the buildings.The responses of the buildings are numerically predicted at different damper properties.The simulation results indicated that the maximum horizontal responses of the buildings without eccentricities are signifi cantly mitigated.However,torsional effects are adversely increased.For asymmetric buildings,the effectiveness of the connecting dampers is affected by building eccentricities.As a result,mass eccentricities must be taken into account in damper selection.When compared with vibrations induced by unidirectional excitations,bidirectional excitations can increase the responses of coupled asymmetric buildings.In addition,installing dampers only at the top fl oor of the shorter building may cause a sudden change in lateral stiffness of the taller building.Consequently,the story shear envelopes of the taller building are changed.  相似文献   

16.
在大震或特大震下,黏滞阻尼器可能因某个极限状态的出现而发生破坏。现有在斜拉桥上设置黏滞阻尼器的研究多集中在阻尼器的参数优化上,很少考虑到阻尼器失效对斜拉桥抗震性能的影响。针对这一问题,以某三塔斜拉桥为背景,利用OpenSees平台建立斜拉桥有限元模型和可以考虑承载力及行程极限的黏滞阻尼器模型;分析黏滞阻尼器的阻尼系数和阻尼指数对斜拉桥地震响应的影响,确定阻尼器参数的取值;对不安装阻尼器、安装不考虑极限状态及考虑极限状态阻尼器等多种工况的斜拉桥进行非线性时程分析,对比各工况斜拉桥的地震响应。分析结果表明,在大震下,考虑极限状态阻尼器的耗能能力及减震效果将显著降低;不考虑阻尼器达到极限状态后失效的情况将高估耗能减震设计斜拉桥的抗震能力。  相似文献   

17.
Viscous fluid dampers have proved to be effective in suppressing unwanted vibrations in a range of engineering structures. When dampers are fitted in a structure, a brace is typically used to attach them to the main structure. The stiffness of this brace can significantly alter the effectiveness of the damper, and in structures with multiple dampers, this can be a complex scenario to model. In this paper, we demonstrate that the effects of the brace compliance on the damper performance can be modelled by way of a first‐order filter. We use this result to formulate a procedure that calculates the stiffness required by the supporting brace to provide a specified effectiveness of the damping action. The proposed procedure assumes that viscous dampers have been sized in a previous design step based on any optimal methodology in which, as is usually the case, the presence of supporting braces and their dynamic effects were neglected. Firstly considering a one degree‐of‐freedom system, we show that the proposed method ensures a desired level of damper efficiency for all frequencies within a selected bandwidth. Then the analysis is extended to the case of multi‐degree‐of‐freedom systems to show that the design criteria can be applied in a straightforward and successful manner to more complex structures. © 2014 The Authors. Earthquake Engineering & Structural Dynamics published by John Wiley & Sons Ltd.  相似文献   

18.
Viscoelastic (VE) dampers and active control (AC) systems are studied together as a hybrid system for their effectiveness in reducing the response of seismic structures. VE dampers have properties which are both frequency and temperature-dependent. On the other hand, AC systems for seismic structures require rather large control forces in order to be effective. The possibility of combining VE dampers and AC systems to improve the performance of both systems is examined. It is found that for the same response reduction, the addition of VE dampers to an AC system reduces the required control forces considerably, which reduces the cost of the AC system. The addition of the AC system helps improve the velocity performance of VE dampers and considerably reduces the possibility of shear failure of the viscoelastic material. Two procedures for evaluating the damping effect of the VE dampers are suggested which can be applied to either shear-type or framed structures. Two control algorithms based on drift and velocity/acceleration feedback are compared to existing algorithms. A method of determining the weighting matrices of an AC system is presented which reduces the required control forces for certain control algorithms.  相似文献   

19.
两类铅阻尼器的滞回性能研究   总被引:6,自引:0,他引:6  
在研制一套具有竖向耗能能力的抗倾覆装置过程中,针对该装置对阻尼器的要求,设计了两种铅阻尼器,铅剪切阻尼器和钢铅组合耗能器。根据实验得出的两种铅阻尼器的滞回曲线的基础上,简化滞回规则,并通过算例分析,给出控制效果分析。分析表明,两种阻尼器对结构的竖向震动起到了一定的控制效果,适合工程应用。  相似文献   

20.
Buildings are continually subject to dynamic loads, such as wind load, seismic ground motion, and even the load from internal utility machines. The recent trend of constructing more flexible high‐rise buildings underscores the importance of including viscoelastic dampers in building designs. Viscoelastic dampers are used to control the dynamic response of a building. If the seismic design is based only on the linear response spectrum, considerable error may occur when calculating the seismic response of a building; rubber viscoelastic dampers show non‐linear hysteretic damping that is quite different from viscous damping. This study generated a non‐linear response spectrum using a non‐linear oscillator model to simulate a building with viscoelastic dampers installed. The parameters used in the non‐linear damper model were obtained experimentally from dynamic loading tests. The results show that viscoelastic dampers effectively reduce the seismic displacement response of a structure, but transmit more seismic force to the structure, which essentially increases its seismic acceleration response. Copyright © 2003 John Wiley & Sons, Ltd.  相似文献   

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