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首页> 外文期刊>Journal of bridge engineering >Seismic Response of Bridges with Rocking Foundations Compared to Fixed-Base Bridges at a Near-Fault Site
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Seismic Response of Bridges with Rocking Foundations Compared to Fixed-Base Bridges at a Near-Fault Site

机译:与近断点固定基础桥梁相比,具有摇摆基础的桥梁的地震响应

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摘要

This paper numerically investigates the three-dimensional seismic response of six reinforced concrete bridges hypothetically located in Oakland, California, 3 km from the Hayward fault. Three of the bridges are 17 m tall and three are 8 m tall. Three types of column-foundation designs are studied: (1) columns that form flexural plastic hinges, which are conventionally designed according to CALTRANS seismic design criteria; (2) columns on rocking pile foundations that are designed to remain elastic; and (3) columns designed to remain elastic that are supported on rocking shallow foundations. The bridges with rocking foundations use lead rubber bearings at the abutments to enhance strength, stiffness, and hysteretic energy dissipation. Using two components of horizontal excitation, three-dimensional nonlinear response history analyses are performed for two seismic hazard levels with return periods of 975 and 2,475 years, respectively. At both levels of shaking, the conventionally designed bridges experience substantial inelastic deformations and damage in the columns, whereas the bridges with rocking foundations result in negligible structural damage and a nominally elastic response and small residual deformations.
机译:本文数值研究了六个假设位于距海沃德断层3公里的加利福尼亚奥克兰的钢筋混凝土桥梁的三维地震响应。其中三座桥的高度为17 m,三座桥的高度为8 m。研究了三种类型的立柱基础设计:(1)形成抗弯塑料铰链的立柱,通常根据CALTRANS抗震设计标准进行设计; (2)旨在保持弹性的摇摆桩基础上的圆柱; (3)保持弹性的支柱,支撑在摇摆的浅基础上。具有摇摆基础的桥在桥台处使用铅橡胶轴承,以提高强度,刚度和滞回能量耗散。利用水平激励的两个分量,对两个地震危险等级分别进行了975年和2475年的回归期的三维非线性响应历史分析。在两个振动级别上,传统设计的桥梁在柱中都会遭受较大的非弹性变形和破坏,而带有摇摆基础的桥梁则可忽略不计的结构破坏和名义弹性响应以及较小的残余变形。

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