土工基础 ›› 2026, Vol. 40 ›› Issue (2): 332-337.

• 专题论述 • 上一篇    下一篇

高差场地交通振动传播特性与桩-筏基础减振研究

马殿君,韩继悦,纪云浩   

  1. (上海理工大学 环境与建筑学院,上海 200093)
  • 收稿日期:2025-11-22 修回日期:2025-12-01 出版日期:2026-04-30 发布日期:2026-04-23
  • 作者简介:马殿君(1999-),男,硕士研究生,研究方向为微振动控制。

Propagation Characteristics of Traffic Vibration in High Elevation Difference Sites and Vibration Reduction of Pile-Raft Foundations

MA Dianjun, HAN Jiyue, Ji Yunhao   

  • Received:2025-11-22 Revised:2025-12-01 Online:2026-04-30 Published:2026-04-23

摘要: 随着道路交通发展,环境振动问题日益突出,尤其在高差地形区域。基于太原某高差地形场地的现场实测与有限元模拟,分析了交通振动在高差地形中的传播特性及桩筏基础的减振效果。研究表明:振动由台下传至台上后呈现明显方向异性,X向速度RMS值放大31%,Z向衰减21%,Y向变化较小;频谱特性发生明显变化,X向出现峰值频率迁移。有限元分析表明,桩-筏基础的减振效果随筏板厚度增加而提升,对水平方向的改善优于铅垂向。当筏板厚度为1.5 m时,三个方向的VC振动等级均可控制在VC-D以下。综合结果表明,在太原类土质高差场地中采用1.5 m板厚的桩-筏基础可有效实现振动控制,为类似地形条件下的工程防振设计提供了参考。


关键词: 高差场地, 环境振动, 桩-筏基础, 振动传播特性, 减振效果

Abstract: With the development of road traffic, the problem of environmental vibration has become increasingly prominent, especially in areas with high elevation differences where systematic research is still lacking. Based on the onsite measurement and finite element simulation of a high elevation difference raft foundation site in Taiyuan, the propagation characteristics of traffic vibration in high elevation difference terrain and the vibration damping effect of pile-raft foundation were analyzed. Research shows that after the vibration is transmitted from the stage to the stage, it presents obvious anisotropic directions. The RMS value of the velocity in the X direction is amplified by 31%, attenuated by 21% in the Z direction, and changes relatively little in the Y direction. The spectral characteristics have undergone significant changes, with a peak frequency shift occurring in the X direction. Finite element analysis shows that the vibration damping effect of pile-raft foundation improves with the increase of raft slab thickness, and the improvement in the horizontal direction is better than that in the vertical direction. When the thickness of the raft is 1.5m, the VC vibration levels in all three directions can be controlled below VC-D. The comprehensive results show that the adoption of a 1.5 meter-thick pile-raft foundation in the soil-like high elevation difference site in Taiyuan can achieve effective vibration control, providing an important reference for the engineering vibration prevention design under similar terrain conditions.

Key words: High Elevation Difference Site, Environmental Vibration, Pile-Raft Foundation, Vibration Propagation Characteristics, Vibration Damping Effect

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