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1.
以黄桷湾特大桥为工程背景,选取轴压比、梁墩刚度比、系梁布置形式及柱肢混凝土强度等级为设计参数,应用Midas Civil有限元软件构造了20座三跨对称桥梁计算模型。研究E1地震作用下钢管混凝土双肢格构墩连续梁桥主要控制截面参数地震响应,探讨各设计参数对钢管混凝土双肢格构墩连续梁桥抗震性能的影响规律,并对全桥进行优化验证。研究结果表明:轴压比对地震作用下结构内力和位移有一定影响,建议控制在0.15~0.25;梁墩刚度比对结构的抗震性能影响较大,控制在4.08~10.90时结构的内力分布更加合理;核心混凝土的强度在C40~C50时取值较为合理。  相似文献   

2.
根据远场类谐和地震动、普通地震动反应谱与规范反应谱之间的包络关系,选取输入结构的地震动加速度峰值?建立双柱墩式抗震梁桥,分析同峰值加速度的远场类谐和地震动和普通地震动作用下双柱墩式梁桥主梁、墩柱的地震响应等,揭示远场类谐和地震动作用下双柱墩式梁桥的动力响应与失效机理?采用SR模型模拟双柱墩抗震梁桥墩底的SSI效应,分析远场类谐和地震动作用下梁桥地震响应变化规律。结果表明,远场类谐和地震动对桥梁的地震响应为普通地震动作用的1.5倍以上,其设防烈度至少应提高一度才能保证桥梁的安全?墩-系梁连接点处弯矩随桩土刚度减小而增大,有可能会引起桥墩弯曲破坏。  相似文献   

3.
以四川雅泸高速公路干海子特大桥为工程背景,采用Midas Civil有限元软件建立三跨一联钢管混凝土格构式高墩连续弯梁桥结构。进行E1弹性地震响应分析,探讨了该类新型梁桥结构的动力特性、内力分布规律,以及地震波激励角度参数对全桥各个指标的影响规律,研究结果表明:钢管混凝土格构式高墩连续弯梁桥结构刚度较柔、周期长,不可忽视弯扭耦合效应。上部主梁弯矩值控制截面位于固定支座位置处,扭矩峰值出现在梁端位置处;下部格构墩弯矩和轴力控制截面均出现在固底墩墩底,墩顶为桥墩位移控制截面。支座中心连线和与之垂直的方向均为最不利激励角度。  相似文献   

4.
本文提出了高墩在进行结构性能分析和验算时,计算P-△效应引起的内力和变形的重要性,介绍了考虑p-△效应的桥墩计算原理与方法,并通过应用桥梁分析软件Midas中P-Delta分析过程对实际墩荷载进行计算分析,得出桥墩在考虑p-△效应时的荷载效应(墩顶位移、墩底弯矩等)比不考虑p-△效应时的大,且其增大率一般随墩高的增大而增加的规律.  相似文献   

5.
本文提出了高墩在进行结构性能分析和验算时,计算P-Δ效应引起的内力和变形的重要性,介绍了考虑p-Δ效应的桥墩计算原理与方法,并通过应用桥梁分析软件Midas中P-Delta分析过程对实际墩荷载进行计算分析,得出桥墩在考虑p-Δ效应时的荷载效应(墩顶位移、墩底弯矩等)比不考虑p-Δ效应时的大,且其增大率一般随墩高的增大而增加的规律。  相似文献   

6.
以(雅西高速)干海子特大桥为工程背景,采用迈达斯(Midas Civil2017版)有限元软件建立模型,选取墩刚度比、轴压比、柱肢截面含钢率、减隔震装置等作为关键的结构设计参数,研究E2地震作用下钢管混凝土格构式高墩桁梁桥弹塑性抗震性能和抗震适用性对全桥进行优化设计。结果表明,优化后的实桥模型可以大幅度降低地震响应,改善桁梁桥结构内力分布,提高结构安全可靠度,研究结果可为该类桥梁抗震设计提供技术支持,同时为钢管混凝土结构抗震规程进一步完善提供借鉴。  相似文献   

7.
本文以中小跨度铁路混凝土桥梁梁缝间落砟这一常见病害对混凝土桥梁承载能力的影响为研究对象,以专桥(88)1024定型图中8m跨度板梁为背景,建立简化的理论计算模型,分别计算了在中-活载及温度恒载作用下梁缝间落砟对梁体内力和位移的影响,并用工程实例8m板梁的荷载试验结果来验证。得出了梁缝间道砟可以大幅减小梁体跨中弯矩、挠度,提高梁体的竖向刚度,然而同时增加了梁端负弯矩和温度恒载作用下的轴压力,这些都对梁体产生极为不利的影响。  相似文献   

8.
在通用有限元程序MSC.MARC中加入基于纤维模型编制的THUFIBER程序和三维实体单元模型分别模拟钢筋混凝土桥墩和桥梁上部结构,建立了高墩大跨连续刚构桥的有限元模型。采用汶川地震记录,针对四川境内某一实际桥梁,分析了行波效应对其地震反应的影响。结果表明:波速较小时,行波效应对墩顶的位移有利。墩底是地震分析时的危险截面,行波效应对结构反应较为复杂,在某些截面上可能加大,也可能降低,在抗震设计时,应考虑行波效应的影响。  相似文献   

9.
钢管混凝土结构由钢材和混凝土两种材料组成,具有刚度大、延性好、抗震能力强等诸多优点。试验模型截面尺寸较小会扩大钢管对混凝土的约束效应,大截面尺寸圆钢管混凝土桥墩抗震试验,试验结果更精确反应实际模型工作机理。设计了4个大截面尺寸圆钢管混凝土桥墩模型拟静力试验,得到桥墩在低周反复循环荷载作用下墩顶力-位移滞回曲线图,力-位移滞回曲线比较稳定变化,且套箍系数越大,滞回曲线越饱满,试验桥墩表现出良好的延性和耗能能力。  相似文献   

10.
以某橡胶减震器为研究对象,ASTM_5992_R2006为依据,采用Bose ElectroForce 3330振动台分别将橡胶减震器的振动频率、振幅、预载荷3个水平因素作为可变参数,进行循环振动试验,并用DMA模块记录力-位移信号获得约3万个数据。利用傅里叶变换对试验数据进行处理,获得了振动频率、激励振幅、预载荷与橡胶减震器动刚度的主要关系。结果表明,不同的预载荷情况下的动刚度曲线成近似的平行关系。预载荷越大,橡胶减震器承载能力越强,动刚度越大。动刚度随频率增大先增大后减小,0~30 Hz,动刚度随频率的增大而增大,增大幅度达到30%;35~50 Hz,动刚度变化相对较小。动刚度值的整体幅度随激励振幅增大而减小。通过对减振器的试验,更加具体地了解了动刚度的影响因素,为橡胶减震器的国产化提供了设计及检验的参考依据。  相似文献   

11.
为了提高刚架系杆拱桥的抗震性能,提出了一种新型抗震墩柱——被动分肢墩的抗震设计概念.即在墩柱中设置竖缝和连接件,利用连接件在罕遇地震下的破坏,降低墩柱抗侧刚度,避开场地卓越周期,减小结构的地震反应.以实桥为原型,设计了采用被动分肢墩的刚架系杆拱桥比例模型,进行了该模型拟静力试验研究.介绍了被动分肢墩的试验破坏过程,滞回特性以及对上部拱肋的影响,试验结果表明:与普通延性抗震墩柱相比,被动分肢墩具有良好的抗震性能.  相似文献   

12.
To investigate the seismic behavior of connections composed of steel reinforced ultra high strength concrete (SRUHSC) column and reinforced concrete (RC) beam, six interior strong-column-weak-beam connection specimens were tested subjected to reversal cyclic load. Effects of applied axial load ratio and volumetric stirrup ratio on ductility, energy dissipation capacity, strength degradation and rigidity degradation were discussed. It was found that all connection specimens failed in bending in a ductile manner with a beam plastic hinge. The ductility and energy dissipation capacity increased with the decrease of applied axial load ratio or increase of volumetric stirrup ratio. The displacement ductility coefficient and equivalent damping coefficient lay between those of steel reinforced ordinary concrete connection and those of reinforced concrete connection. The applied axial load ratio and volumetric stirrup ratio had less influence on the strength degradation and more influence on the stiffness degradation. The stiffness degraded sharply with the decrease of volumetric stirrup ratio or increase of applied axial load ratio. The experimental results indicate that SRUHSC column and RC beam connection exhibited better seismic performance and can provide reference for engineering application.  相似文献   

13.
Based on Hertz contact theory, a method to determine the parameters of Kelvin impact model for seismic pounding analysis of bridges is proposed. The impact stiffness of Kelvin model is determined by the ratio of maximum impact force to maximum contact deformation, which is calculated based on Hertz contact theory with considering the vibration effect. The restitution coefficient which has great influence on the damping coefficient of Kelvin impact model is investigated by numerical analysis. Numerical results indicate that the impact stiffness of Kelvin impact model increases with the increment of the Hertz contact stiffness, approaching velocity or the length ratio of short to long girders. Vibration effect has remarkable influence on the impact stiffness and cannot be neglected. The restitution coefficient decreases when approaching velocity increases or the length ratio of short girder to long girder decreasing. The practical ranges of impact stiffness and restitution coefficient are obtained as 3×108-6×108 N/m and 0.6-0.95 respectively.  相似文献   

14.
两种或多种不同材料制成的组合梁是工程实际中的一种常用结构。本文基于材料力学中的平面假设、胡克定律等基本假设和概念,给出了组合梁组合变形分析的一种通用解法,建立轴力、弯矩与拉伸位移和弯曲挠度的关系,推导出拉伸位移和弯曲挠度满足的微分方程。该分析方法简单易懂,适合材料力学教学和工程实际应用。  相似文献   

15.
通过理论研究和数值计算,详细分析了大跨径钢管混凝土双肋拱桥的侧倾稳定性和地震响应。首先,根据双肋拱桥结构在竖向均布荷栽作用下的侧倾稳定临界力的近似解析解,讨论了横撑设置、横撑刚度等因素对稳定性的影响。其次,基于多点激振理论和拟静力位移概念,介绍了拱桥结构的动力特点和地震动作用下的响应,并讨论了行波效应的影响。分析表明,地震行波作用对大跨度拱桥影响很大,横撑设置对稳定性敏感。  相似文献   

16.
To investigate the seismic behavior of specially shaped column joints with X-shaped reinforcement,two groups of specimens with or without X-shaped reinforcement in joint core region were tested under constant axial compression load and low reversed cyclic loading,which imitated low to moderate earthquake force.The seismic behavior of specially shaped column joints with X-shaped reinforcement in terms of bearing capacity,displacement,ductility,hysteretic curve,stiffness degradation and energy dissipation was studied and compared to that without Xshaped reinforcement in joint core region.With the damage estimation model,the accumulated damage was analyzed.The shearing capacity formula of specially shaped column joints reinforced by X-shaped reinforcement was proposed with a simple form.The test results show that X-shaped reinforcement is an effective measure for improving the seismic behavior of specially shaped column joints including deformation behavior,ductility and hysteretic characteristic.All specimens were damaged with gradual stiffness degeneration.In addition,X-shaped reinforcement in the joint core region is an effective way to lighten the degree of cumulated damage.The good seismic performance obtained from the specially shaped column joint with X-shaped reinforcement can be used in engineering applications.The test value is higher than the calculated value,which indicates that the formula is safe for the design of specially shaped column joints.  相似文献   

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