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Reaction Spectrum Comparative Analysis of Seismic Performance of 62?m CFST Bridge with Curved-String Truss before and after Reinforcement

机译:反应谱比较分析62?M CFST桥梁的地震性能钢筋桁架钢筋桁架

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Taking a 62?m CFST bridge with a curved-string truss as the research object, according to its reinforcement scheme, the spatial finite element models of the bridge before and after reinforcement were established by using the general finite element software ANSYS. The natural frequencies of the bridge before and after reinforcement were calculated, and the seismic performance of the bridge was analyzed by using the response spectrum method. The results show that the frequencies of the reinforced bridges increase in varying degrees, especially the vertical and torsional frequencies. Before and after reinforcement, the maximum axial force in the upper chord of the bridge is the largest, and the shear force and bending moment are small. The maximum internal force appears at the two ends of the upper chord. This position should be regarded as the weak link of the bridge seismic resistance. Under the same conditions, the axial force of the bridge after reinforcement is reduced by about 30% compared with that before reinforcement, and the displacement of the bridge after reinforcement is reduced in varying degrees. The reinforcement measures can improve the lateral and vertical stiffness of the bridge, especially the stiffness of the deck system.
机译:使用曲线桁架为研究对象,根据其加强方案,通过使用一般有限元软件Ansys建立了加固前后桥的空间有限元模型。计算了桥接前后桥的固有频率,通过使用响应谱法分析了桥梁的地震性能。结果表明,增强桥的频率随着垂直和扭转频率而增加。在加固之前和之后,桥梁的上弦中的最大轴向力是最大的,并且剪切力和弯矩小。最大内部力出现在上弦的两端。该职位应被视为桥梁地震抗性的弱链路。在相同的条件下,与加固前加固后桥​​的轴向力减少了约30%,并且桥接在加固后的桥的位移在不同程度上降低。增强措施可以改善桥梁的横向和垂直刚度,尤其是甲板系统的刚度。

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