Hydrodynamic force and its effect on the dynamic response of deep-water bridge piers in earthquake
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摘要: 基于勢流體理論,針對一典型實體矩形截面橋墩,分析了不同水深時,動水對橋墩自振特性的影響.研究了不同水深和地震波類型等條件下,作用于橋墩上動水壓力的分布規律及其合力作用點位置,并分析了動水對矩形截面橋墩在地震作用下動力響應的影響.結果表明,由于動水和結構相互作用的影響,矩形截面橋墩的自振周期、墩底彎矩及剪力的峰值會隨著水深的增加而不斷增大.動水使墩底彎矩和剪力分別最多增大了31%和50%,因此動水對橋墩動力反應的影響不可忽略.并且,不同類型地震波對作用于橋墩上的動水壓力分布的影響也不相同.根據日本規范計算作用于矩形截面橋墩上的動水力的結果與本文的結果更為接近.Abstract: Based on the potential flow theory, the influence of water on the natural vibration characteristics of a typical rectangular entity pier as the prototype was analyzed at different water depths. As the same time, the distribution of hydrodynamic pressure acting on the pier, the action spot of hydrodynamic force and the effect of water on the seismic response of the pier were analyzed under the condition of different water depths and types of seismic loads. The results show the natural vibration period, the peak values of bending moment and shear force at the bottom of the pier increase with the rise of water depth. The bending moment and shear force increase by 31% and 50% at most respectively, which indicate that the effect of water on the dynamic response of the pier should not be ignored. The influence of different seismic waves on the distribution of hydrodynamic pressure acting on the pier is not identical. The results of hydrodynamic force acting on the pier according to the Japanese specification are closer to data in this paper.
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Key words:
- bridge piers /
- hydrodynamics /
- earthquakes /
- dynamic response
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