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Calculation of Evolutionary Power Spectral Density of Bridge Response to Earthquakes by Convolution Summation

机译:卷积求和地震桥梁响应进化功率谱密度的计算

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This paper presents a method for calculating the evolutionary power spectral density (EPSD) of the seismic response of bridges using the convolution summation. With zero initial values, a formula for the dynamic component of the response of bridges to spatially varying seismic ground motions is derived as the convolution summation, by assuming the seismic acceleration to vary linearly between two adjacent time stations. The convolution summation is used for calculating the convolution integral of the dynamic component response factor in the EPSD, in which the constant coefficients are independent of the harmonically modulated excitation. The constant coefficients are obtained by the time-history analysis using triangular unit impulse acceleration excitations. The computational cost of the EPSD depends mainly on the amount of degrees-of-freedom (DOFs) numbers of bridge supports in contact. The corresponding computational scheme is proposed, and its validity is indirectly verified with a single DOF system, by comparing the results obtained with those of the existing methods. Finally, a threespan continuous rigid-frame bridge is taken as a case study to illustrate the applicability and effectiveness of the proposed scheme.
机译:本文介绍了一种用卷积求和计算桥梁抗震响应的进化功率谱密度(EPSD)的方法。利用零初始值,通过假设地震加速度在两个相邻的时间站之间线性地线性地旋转,推导出桥梁响应的动态分量的动态分量的公式来导出作为卷积求和。卷积求和用于计算EPSD中动态分量响应因子的卷积积分,其中恒定系数与谐波调制激励无关。通过使用三角形单元脉冲加速激励的时间历史分析获得恒定系数。 EPSD的计算成本主要取决于与接触的桥梁支撑件的自由度(DOF)数量。提出了相应的计算方案,并且通过比较现有方法获得的结果,通过单个DOF系统间接验证其有效性。最后,采用了一种持续刚性框架桥作为案例研究,以说明所提出的方案的适用性和有效性。

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