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Role of Shear Keys in Seismic Behavior of Bridges Crossing Fault-Rupture Zones

机译:剪力键在跨断裂带的桥梁地震行为中的作用

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摘要

This paper examines the role of shear keys at bridge abutments in the seismic behavior of “ordinary” bridges. The seismic responses of bridges subjected to spatially uniform and spatially varying ground motions for three shear-key conditions—nonlinear shear keys that break off and cease to provide transverse restraint if deformed beyond a certain limit; elastic shear keys that do not break off and continue to provide transverse restraint throughout the ground shaking; and no shear keys—are examined. Results show that seismic demands for a bridge with nonlinear shear keys can generally be bounded by the demands of a bridge with elastic shear keys and a bridge with no shear keys for both types of ground motions. While ignoring shear keys provides conservative estimates of seismic demands in bridges subjected to spatially uniform ground motion, such a practice may lead to underestimation of some seismic demands in bridges in fault-rupture zones that are subjected to spatially varying ground motion. Therefore, estimating the upper bounds of seismic demands in bridges crossing fault-rupture zones requires analysis for two shear-key conditions: no shear keys and elastic shear keys.
机译:本文研究了桥基处的剪力键在“普通”桥梁的地震行为中的作用。在三种剪力键条件下,桥梁的地震响应在空间上均等且在空间上发生变化。非线性剪力键在变形超过一定极限时会折断并停止提供横向约束。弹性剪切键不会折断,并在整个地面震动过程中继续提供横向约束;并没有检查剪切键。结果表明,对于两种类型的地震动,具有非线性剪力键的桥梁的地震要求通常可以由具有弹性剪力键的桥梁和无剪力键的桥梁的要求来限制。尽管忽略剪力键可以对在空间上均匀地面运动的桥梁中的地震需求进行保守估计,但这种做法可能会导致低估了在断裂破坏区中桥梁中的地震需求,这些断裂在空间上发生地震动。因此,估算穿越断层断裂带的桥梁的地震需求上限需要分析两个剪切关键条件:无剪切关键和弹性剪切关键。

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