首页> 外文期刊>The Baltic journal of road and bridge engineering >EVALUATION OF THE INCREASED DYNAMIC EFFECTS ON THE HIGHWAY BRIDGE SUPERSTRUCTURE
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EVALUATION OF THE INCREASED DYNAMIC EFFECTS ON THE HIGHWAY BRIDGE SUPERSTRUCTURE

机译:公路桥梁上部结构动力效应增大的评估

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Dynamic properties of the bridge superstructure vary depending on many characteristics of the bridge and the loading conditions. In this paper, maximum Dynamic Amplification Factor was calculated for six different types of typical pre-stressed concrete beam bridges. It showed that each type of bridge with similar loading has a different range of Dynamic Amplification Factor. At the same time, every recently built bridge has different geometry and design load. Hence, it is difficult to determine a characteristic value of Dynamic Amplification Factor for the similar type of structures. By using full-scale dynamic and static bridge tests, it is possible to determine the necessary characteristics which show possibly high Dynamic Amplification Factor. This factor indicates if it is necessary to make a full-scale bridge dynamic analysis. It was found that those characteristics are natural frequency (first mode), damping ratio, relative deflection, and span and depth ratio. Obtained results from tests show a range of values for each of the characteristic. These ranges were analysed for reinforced concrete slab and pre-stressed concrete slab, and girder bridges.
机译:桥梁上部结构的动力特性取决于桥梁的许多特性和荷载条件。本文针对六种不同类型的典型预应力混凝土梁桥计算了最大动态放大系数。结果表明,每种具有相似载荷的桥都有不同的动态放大系数范围。同时,每座新近建造的桥梁都有不同的几何形状和设计负荷。因此,难以为类似类型的结构确定动态放大因子的特征值。通过使用全面的动态和静态电桥测试,可以确定必要的特性,这些特性可能显示出很高的动态放大系数。该因素表明是否有必要进行全面的桥梁动力分析。发现这些特性是固有频率(第一模式),阻尼比,相对挠度以及跨度和深度比。从测试中获得的结果显示出每个特性的取值范围。分析了钢筋混凝土板和预应力混凝土板以及箱梁桥的这些范围。

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