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Research on Seismic Simplified Analysis Method Under Rare Earthquake Continuous Rigid Frame Bridge with Qualified CFST Stack

机译:合格CFST叠层地震连续刚构桥地震简化分析方法研究。

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Based on the Labajin Bridge, this paper uses Midas civil finite element software to establish a calculation model for the high-dose continuous rigid frame bridge with qualified CFST stack. Taking the height of the pier, the slope of the laced pier and the steel content of the column and limb as the design parameters, the calculation model of 40 different periods is constructed, and the high-dose continuous rigid frame bridge with qualified concrete-filled steel tube stacks under the rare earthquake The elastic and elastoplastic time-history analysis is carried out. By comparing the displacement and bending moment time-history curves of the control section, it is found that the vibration modes of the two different analysis methods are more consistent. Based on this, the seismic simplification method of the bridge is studied. Using the statistical induction method, the relationship between the control section displacement, the bending moment adjustment coefficient and the structural period is obtained by fitting, and the equivalent elastic method is proposed. The algorithm is verified by different seismic waves, fortification intensity and acceleration peak. The results show that the proposed equivalent elastic method agrees well with the elastoplastic method. The research results can effectively improve the computational efficiency of seismic design, and also provide reference and reference for the seismic design specifications of such structural systems.
机译:本文基于拉巴金桥,利用Midas土木有限元软件建立了具有合格CFST叠层的高剂量连续刚构桥的计算模型。以墩台高度,绑扎墩台的坡度以及立柱和肢体的钢含量为设计参数,构建了40个不同周期的计算模型,并采用合格的混凝土大剂量连续刚构桥进行了设计。地震作用下填充钢管叠层进行了弹性和弹塑性的时程分析。通过比较控制部分的位移曲线和弯矩时间历史曲线,发现两种不同分析方法的振动模式更加一致。在此基础上,研究了桥梁的抗震简化方法。采用统计归纳法,拟合得到控制段位移,弯矩调整系数与结构周期之间的关系,提出等效弹性法。通过不同的地震波,设防强度和加速度峰值对算法进行了验证。结果表明,所提出的等效弹性法与弹塑性法相吻合。研究结果可以有效地提高抗震设计的计算效率,也为此类结构体系的抗震设计规范提供参考和参考。

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