基于时间频率分析方法的基石和超载层斜率损伤机制的振动表试验
Changwei Yang1, Guangpeng Chen2, Mao Yue1
1MOE Key Laboratory of High-Speed Railway Engineering, School of Civil Engineering, Southwest Jiaotong University, Chengdu, 610031, China.
大规模的摇摆表测试揭示了基石和超负荷斜坡的地震损伤机制. 超负荷层由于振动放大和接口周期性负载而遭受更大的损伤,导致山体滑坡.
科学领域:
- 地质技术工程 地质技术工程
- 地震工程的工程是地震工程.
- 地震学 地震学
背景情况:
- 地震事件对斜坡的稳定性构成重大风险,特别是在多层地质构造中.
- 了解基石和超负荷层对地震力的不同反应对于危险评估至关重要.
研究的目的:
- 系统地分析基石和超负荷层斜坡的地震损伤机制.
- 研究地震强度对斜坡行为和故障模式的影响.
主要方法:
- 进行了大规模的摇摆表测试,以模拟斜坡模型上的地震作用.
- 分析涉及加速度放大系数的插入,希尔伯特-黄变换和转移函数计算.
- 通过测量斜率移位,加速场,振动振幅,能量和频率来评估损害.
主要成果:
- 在斜坡内观察到显著的加速放大,在顶部和尾部边缘有局部影响.
- 增加的地震强度扩大了超负荷和基岩层之间的振动振幅差异.
- 超负荷层表现出比基岩更高的低频能量和更低的振动频率,导致接口损坏和山体滑坡.
结论:
- 过载层和基石层之间的不同地震反应会导致接口处的连续循环负荷,促进损坏和剪切强度的降低.
- 损坏模式涉及在尾行边缘的滑动和斜坡表面的拉力裂纹形成.
- 过载位移在斜坡的中间始终大于斜坡的顶部.
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