地震振动台
阻尼器
结构工程
塔楼
甲板
流离失所(心理学)
桥(图论)
消散
工程类
变形(气象学)
地质学
岩土工程
物理
海洋学
内科学
热力学
心理治疗师
医学
心理学
作者
Yi Jiang,Jianzhong Li,Zhongguo Guan
标识
DOI:10.1142/s1793431118500112
摘要
To investigate the effectiveness of viscous damper on seismic control of single-tower cable-stayed bridges subjected to near-field ground motions, a 1/20-scale full cable-stayed bridge model was designed, constructed and tested on shake tables. A typical far-field ground motion and a near-field one were used to excite the bridge model from low to high intensity. The seismic responses of the bridge model with and without viscous dampers were analyzed and compared. Both numerical and test results revealed that viscous dampers are quite effective in controlling deck displacement of cable-stayed bridges subjected to near-field ground motions. However, due to near-field effects, viscous damper dissipated most energy through one large hysteresis loop, extensively increasing the deformation and damping force demand of the damper. Further study based on numerical analysis reveals that to optimize deck displacement of cable-stayed bridges during an earthquake, a viscous damper with relatively larger damping coefficient should be introduced under near-field ground motions than far-field ones.
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