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1.
滞变—摩擦基底隔震支座的试验和模型   总被引:5,自引:3,他引:5  
本提出了一种滞变-摩擦基底隔震支座。这种支座由钢棒和摩擦元件组成,钢棒容许摩擦元件水平滑动,同时又限制这种滑动;摩擦元件承受结构的竖向荷载,作完成了钢棒滞变恢复力特性的试验,并给出了钢棒的滞变恢复力模型的模型参数的计算公式,该模型与常用的折线模型有所不同,它仅用一个非线性微分方程来描述滞变恢复力,而不需要复杂的规则。  相似文献   

2.
考虑地基土液化影响的桩基高层建筑体系地震反应分析   总被引:5,自引:2,他引:5  
本文建立了土体-结构体系地震反应分析的混合有限元法,并研究了地基土液化对地震反应的影响。本方法把土体-结构体系简化为一个完整的体系,该体系由梁(柱)单元、剪切杆单元、刚体单元、平面四边形等参单元与三角形单元、界面单元的任意组合来模拟。桩与上部结构材料视为线弹性体,土介质视为非线性材料。土的静应力-应变关系之间的非线性用邓肯一张模型来描述;土的动应力-应变关系之间的非线性和振动孔隙水压力对土的软化效  相似文献   

3.
变刚度滞变耗能与隔震联合控制框架结构实验研究   总被引:2,自引:0,他引:2  
对原有变刚度滞变-摩擦隔震支座进行了改进,提出一种多级变刚度滞变耗能器,并进行了初步的试验研究。在此基础上,对一纯框架结构(1:5)模型进行了耗能与隔震的联合控制试验研究,试验结果表明,采用这种联合控制技术能降低不同大小地震下的结构反应,具有很强的适应性。  相似文献   

4.
火灾及爆炸共同作用下平面约束钢梁的非线性分析理论   总被引:1,自引:0,他引:1  
采用非线性铁木辛柯梁单元,结合一种新的温度-率相关本构方程,推导了单元切向刚度矩阵,并编制了有限元程序。该程序可用于进行火灾或爆炸冲击过程中梁的响应分析,亦可用于两者共同作用下梁的耦合响应分析。基于弹性铁木辛柯梁挠曲线方程构造三次插值位移场,同时考虑了梁变形的几何非线性效应并采用了Green-Lagrangian应变,再结合非线性的本构关系,该理论能较完整地考虑火灾及爆炸诸多工况组合下平面约束钢梁可能发生的多种效应。通过对工字型等截面直梁火灾升温及爆炸3种荷载组合形式下的响应分析,验证了理论模型的合理性。  相似文献   

5.
可调滞回模型的磁流变阻尼器及其试验   总被引:5,自引:0,他引:5  
本文在现在磁流变阴尼器性能研究的基础上,提出了可调滞回模型的磁流变阻尼器及其试验方法,并进行理论、试验及算例分析。首先,根据恒定电流下磁流变阻尼器的阻尼力滞力特性,利用磁流变材料特性的电流(即磁场)可控特点,建立了变电流下的阻尼力滞回模型;其次,在中通过电路板控制外加电流与装置变形间的函数关系,实现了变电流调节的阻尼力滞回模型;最后,将磁流变阻尼器与橡胶隔震装置结合,形成智能磁流变隔夺装置,并对一个单自由度隔震结构进行了数值仿真分析。  相似文献   

6.
为研究钢筋砼磨擦耗能支撑框架结构的动力反应性能,对其中的磨擦耗能器单元和框加杆单元的单元刚度和力学模型做了分析。钢筋砼磨擦耗能支撑单元由支撑杆单元和钢板-橡胶磨擦耗能器单元组成,支撑单元可取空间杆单元,磨擦耗能器单元为平面应力矩形单元。磨擦耗能器单元的剪切恢复力曲线为理想的弹塑性曲线,根据耗能器单元的力学模型,可确定其在每一时刻的刚度;框架结构空间杆单元的恢复力模型采用双线型模型,根据杆单元的力学模型,可确定其在每一时刻的刚度。并利用所编制的程序对十层单榀两跨空间普通框架和摩擦耗能支持框架在地震作用下进行了弹塑性反应时程分析,结果表明耗能支撑框架的顶层最大位移明显小于普通框架。  相似文献   

7.
为研究巨型SRC柱抗震性能的数值模拟方法,本文基于有限元分析软件OpenSees,采用纤维单元模拟5根具有不同复杂截面型钢形式的巨型SRC柱试件的低周反复加载试验,并与试验滞回曲线以及骨架曲线进行对比分析。结果表明,该基于纤维单元的有限元模型能够较好模拟巨型SRC柱试件的滞回反应,具有一定的合理性和可靠性。同时采用一种新型高性能分层壳单元对其中一根巨型SRC柱试件进行精细有限元建模分析,分析结果与试验结果对比表明分层壳能够较好地模拟试件的初始刚度和峰值承载力;与纤维单元模拟结果对比表明纤维单元能够更好地模拟试件承载力的下降,结果更加精确,且计算效率更高;新型高性能壳单元DKGQ能够弥补原有壳单元的不足,更好地模拟构件因混凝土大量开裂剥落导致的承载力下降。  相似文献   

8.
剪力墙的剪切滞变模型   总被引:11,自引:3,他引:8  
详细评述了有关剪力墙的剪切滞变模型,提出了一个简化的剪切滞变模型,并推荐了两种剪切滞变模型用于描述多竖线单元剪力墙模型中的水平弹簧。  相似文献   

9.
弹性波边界元法正演模拟   总被引:10,自引:4,他引:10       下载免费PDF全文
弹性波边界元地震模型方法(BEESM),实现了二维和三维问题的纵、横波及转换波的同时模拟,并且能模拟任意复杂构造的地震声波正演模型.根据地震模型的特点,本文发展了数值积分计算与矩阵消元同步进行的块状高斯消元法;用解析法处理奇异积分;用无限元法处理边界吸收问题;采用单元长度随介质速度和计算频率变化的变单元算法,及自动剖分单元等技术,提高了计算精度,节省了内存,缩短了计算时间.  相似文献   

10.
采用峰值指向滞回模型模拟半刚性连接在循环荷载下的非线性行为,建立了能同时考虑几何、材料和连接非线性的精细塑性铰法平面梁柱单元模型,利用ANSYS用户可编程特性(UPFs),对自定义单元进行编译并嵌入到ANSYS平台中。利用试验数据拟合得到滞回模型参数,经自定义单元进行分析计算,得到节点的载荷-位移滞回曲线。通过与试验结果对比分析表明:模拟结果与试验结果吻合良好,该单元模型具有很大优势,可用于半刚性梁柱节点的滞回性能分析。  相似文献   

11.
A new model named double-shear model based on Pasternak foundation and Timoshenko beam theory is developed to evaluate the effect of a forced harmonic vibration pile to its adjacent pile in multilayered soil medium. The double-shear model takes into account the shear deformation and the rotational inertia of piles as well as the shear deformation of soil. The piles are simulated as Timoshenko beams, which are embedded in a layered Pasternak foundation. The differential equation of transverse vibration for a pile is solved by the initial parameter method. The dynamic interaction factors for the layered soil medium are obtained by the transfer matrix method. The formulation and the implementation have been verified by means of several examples. The individual shear effects of soil and piles on the interaction factors are evaluated through a parametric study. Compared to Winkler model with Euler beam, the present model gives much better results for the dynamic interaction of piles embedded in stiff soil with small slenderness ratios. Finally, the effect of a forced long pile to a short pile embedded in multilayered soil medium is studied in detail.  相似文献   

12.
A fiber-section model based Timoshenko beam element is proposed in this study that is founded on the nonlinear analysis of frame elements considering axial,flexural,and shear deformations.This model is achieved using a shear-bending interdependent formulation(SBIF).The shape function of the element is derived from the exact solution of the homogeneous form of the equilibrium equation for the Timoshenko deformation hypothesis.The proposed element is free from shear-locking.The sectional fiber model is constituted with a multi-axial plasticity material model,which is used to simulate the coupled shear-axial nonlinear behavior of each fiber.By imposing deformation compatibility conditions among the fibers,the sectional and elemental resisting forces are calculated.Since the SBIF shape functions are interactive with the shear-corrector factor for different shapes of sections,an iterative procedure is introduced in the nonlinear state determination of the proposed Timoshenko element.In addition,the proposed model tackles the geometric nonlinear problem by adopting a corotational coordinate transformation approach.The derivation procedure of the corotational algorithm of the SBIF Timoshenko element for nonlinear geometrical analysis is presented.Numerical examples confirm that the SBIF Timoshenko element with a fiber-section model has the same accuracy and robustness as the flexibility-based formulation.Finally,the SBIF Timoshenko element is extended and demonstratedin a three-dimensional numerical example.  相似文献   

13.
冯新  刘彦辉  周晶 《地震学刊》2009,(6):652-657
建立了一种Timoshenko裂纹梁的分析模型并且获得了闭合形式的挠度解析解。首先,在一致梁的理论框架下,通过引入δ函数模拟裂纹导致的局部柔度,建立用广义函数表示的Timoshenko裂纹梁的微分控制方程,进而得到挠度的闭合形式的解答;其次,根据线弹性断裂力学理论,利用转角及挠度突变与局部柔度系数的关系,建立Timoshenko裂纹梁的模型参数与裂纹深度的显式表示;最后,通过对裂纹深度与挠度、转角和曲率间关系的分析,总结了结构响应的损伤敏感性及其特征,并且通过与引入裂纹奇异单元的有限元结果进行比较,验证了本文所建分析模型及求解方法的正确性。研究结果表明,本文所建立的Timoshenko裂纹梁的分析模型,具有较高的计算精度和效率,在结构模型修正和损伤识别中具有良好的应用前景。  相似文献   

14.
A new simplified modelling strategy to simulate the non‐linear behaviour of reinforced concrete shear walls under dynamic loading is presented. The equivalent reinforced concrete (ERC) model is derived from the framework method and uses lattice meshes for concrete and reinforcement bars and uniaxial constitutive laws based on continuum damage mechanics and plasticity. Results show the capacity of the model to analyse structures having different slenderness and boundary conditions. For low reinforcement ratios however, results are sensitive to the angle formed by the diagonals of the concrete lattice and the horizontal bars. The method is compared with the shear multi‐layered beam model that uses Timoshenko multi‐layered 2D beam elements and biaxial constitutive laws. Comparisons for both models with experimental results of two research programs (one organized by NUPEC and the other by COGEMA and EDF) are provided. ERC is a simplified method that intends to save computer time and allows parametrical studies. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   

15.
考虑剪切变形对转动惯量的影响,对经典Timoshenko梁理论进行修正,并基于回传射线矩阵法,将横截面线性变化的圆台均匀分为多段分段等截面等效梁,推导并求解三种经典边界(两端简支、两端固支、一端固支一端自由)条件下变截面修正Timoshenko梁的自振频率,进一步分析分段数目和梁长度的变化对变截面修正Timoshenko梁自振频率的影响;将计算结果与相同边界条件下经典Timoshenko梁的相应结果进行对比。研究表明:回传射线矩阵法用于分析变截面梁的自振频率时具有良好的计算精度和收敛性;相同边界条件下修正Timoshenko梁的自振频率小于经典Timoshenko梁,且梁越短粗,修正造成的影响(剪切变形对转动惯量的影响)就越大。  相似文献   

16.
The interest of in situ measurements (presented in Part I paper) for a seismic assessment of existing buildings is analysed in this paper. It is shown that the experimental modal characteristics obtained on regular concrete structures are described successfully by suited Timoshenko beam modelling. For a given structure, taking into account the experimental data, the corresponding beam model, and choosing the maximum tensile strain of concrete as damage criterion for key structural elements, a maximum level of the ground acceleration can be determined. This so‐called seismic integrity threshold is directly related to the onset of structural damages. This new approach is illustrated on one of the studied buildings. The advantages of using ambient vibrations survey for the vulnerability assessment of existing buildings are discussed. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

17.
近年来,铁路的高速化、高运量化以及轻微的地震灾害等因素加速了轨道结构的沉降或变形,导致车辆轨道系统振动的加剧。本文运用车辆-轨道耦合动力学理论,编制了基于Timoehenko梁钢轨模型的车辆-轨道耦合振动仿真分析软件,分析了车辆-轨道系统的垂向振动特性,并与基于Euler梁模型的VICT软件的仿真结果进行了比较分析。结果表明:仿真结果与VICT的仿真结果基本一致,但在较高频域,前者能更好地反映轮轨系统的高频特性。因而,在研究轮轨高频振动及轮轨噪声时。采用Timoshenko梁钢轨模型更具合理性。  相似文献   

18.
中短型轨道板的几何构型介于梁、板之间,属于宽梁结构。从Mindlin板理论出发,退化得到适用于宽梁的Mindlin板梁控制方程;引入Winkler地基刚度系数,推导得到位移和转角的模态函数表达式。考虑两端简支的边界条件,得到弹性地基板梁的自由振动特征方程。通过无量纲数值算例求解出弹性地基板梁的自振频率,并与Timoshenko梁理论和Mindlin板理论进行对比。研究高跨比、泊松比和弹性地基刚度等参数对结构自振特性的影响,总结出弹性地基板梁方程的特点及适用范围,即宽度效应显著且泊松比较大的宽梁结构。  相似文献   

19.
In this paper, a fiber beam-column element considering flexure–shear interaction and bond-slip effect is developed for cyclic analysis of reinforced concrete (RC) structures. The element is based on conventional displacement-based Timoshenko beam theory, where the transverse shear deformation is included, and adopts the fiber model to describe the section force–deformation behavior. In the fiber model, shear deformation is assumed to be uniformly distributed along the section and is only resisted by concrete, thus the multi-dimensional concrete damage model is used for concrete fibers and therefore flexure–shear interaction is reflected naturally at the material level. Meanwhile, to account for the significant bond-slip effect at critical regions, the anchorage slip of bars at these regions is analytically derived. Then it is used to modify the uniaxial stress–strain model for steel fibers by assuming that the total strain can be treated as the sum of the bar deformation and anchorage slip, therefore the bond-slip effect is implicitly but simply represented. To validate the proposed element, a series of RC member and structure tests under cyclic loading are simulated. The results indicate that the proposed element can predict cyclic responses of RC structures, and can be used as a reliable tool for analysis of RC structures.  相似文献   

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