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Determining the dynamic amplification factor of multi-span continuous box girder bridges in highways using vehicle-bridge interaction analyses

机译:用车桥相互作用分析确定公路大跨度连续箱梁桥的动力放大系数

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摘要

The impact factors of multi-span continuous box girder bridges in highways are influenced by many factors, including road roughness, vehicle-bridge interactions (VBIs), and travelling velocity. Currently, the empirical formulas specified by bridge design codes are based on single factors (bridge length or fundamental frequency). These formulas yield inconsistent results that can differ widely. In this paper, the regularity of the dynamic amplification factors (DAFs) of continuous beam bridges is investigated by selecting 15 continuous beam bridges and conducting VBI analyses. The results indicate that the DAFs of the continuous beam bridges increase dramatically when resonance phenomena occur. The vehicle-bridge resonance is closely related to vehicle frequency, bridge frequency and the disturbance frequency caused by vehicle movement. The travelling velocity exerts an important influence on the resonance. In most cases, the DAF of a continuous beam bridge peaks at the velocity range of 40-60 km/h. Vehicle-bridge resonance may be caused by the first-order or second-order mode of a bridge. Second-order curvature modes exert an especially crucial influence on the DAF of the negative moment at the interior supports. The empirical formulas used in current bridge design codes fail to account for the influence of resonance and travelling velocity on the DAFs of bridges. The maximum DAF at the interior supports of the continuous beam bridges may exceed 1.7.
机译:公路中的多跨连续箱梁桥的影响因素受许多因素的影响,包括路面不平度,车桥相互作用(VBI)和行驶速度。当前,由电桥设计规范规定的经验公式是基于单个因素(电桥长度或基频)的。这些公式得出的结果不一致,可能有很大差异。通过选择15个连续梁桥并进行VBI分析,研究了连续梁桥的动态放大因子(DAF)的规律性。结果表明,当发生共振现象时,连续梁桥的DAF急剧增加。车桥共振与车辆频率,桥频率和由车辆运动引起的干扰频率密切相关。传播速度对共振产生重要影响。在大多数情况下,连续梁桥的DAF在40-60 km / h的速度范围内达到峰值。车桥共振可能是由桥梁的一阶或二阶模式引起的。二阶曲率模式对内部支撑负力矩的DAF产生特别关键的影响。当前桥梁设计规范中使用的经验公式无法说明共振和行进速度对桥梁DAF的影响。连续梁桥的内部支撑处的最大DAF可能超过1.7。

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