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Seismic analysis and design evaluation of continuous plate-girder bridges: a case study

机译:连续板梁桥的抗震分析与设计评估

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The currently-used AASHTO seismic design code for continuous plate-girder bridges built in areas of low to moderate seismicity is evaluated. The seismic behavior of a typical plate-girder bridge, designed according to the code, is studied in detail using a linear time-history analysis, and the peak response values of important parameters are computed. The effects of vertical ground excitation, seismic wave propagation, and change in support conditions on the bridge seismic response are investigated. The results are compared with those obtained using the current AASHTO seismic design code. The study concludes that the effect of vertical ground excitation on the plate-girder bending moments could be significant. It was found that the effect of seismic wave propagation on bending moments and shear forces in the bridge piers should be considered in the analysis of continuous plate girder bridges with several immovable supports when built in zones of low wave propagation speeds (e.g. 244 to 488 m/s). The study further concludes that AASHTO single mode spectral analysis slightly underestimates the forces in the bridge piers.
机译:评估了当前用于低地震烈度地区的连续板梁桥梁的AASHTO抗震设计规范。使用线性时程分析详细研究了根据规范设计的典型板梁桥的抗震性能,并计算了重要参数的峰值响应值。研究了竖向地面激励,地震波传播以及支座条件的变化对桥梁地震响应的影响。将结果与使用当前AASHTO抗震设计规范获得的结果进行比较。研究得出结论,垂直地面激励对板梁弯矩的影响可能很大。研究发现,当地震波传播速度低的区域(例如244至488 m)建造时,在分析具有几个固定支撑的连续板梁桥时,应考虑地震波传播对桥墩弯矩和剪力的影响。 / s)。研究进一步得出结论,AASHTO单模频谱分析稍微低估了桥墩中的力。

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