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Field tests and simulation of Lion-Head River Bridge

机译:狮头河大桥的现场测试与仿真

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Lion-Head River Bridge is a twin bridge in parallel position. The east-bounded was designed and constructed as a traditional prestress concrete box girder bridge with pot bearings; and the west-bounded was installed with seismic isolation devices of lead rubber bearings. The behavior of the isolated bridge is compared with that of the traditional bridge through several field tests including the ambient vibration test, the force vibration test induced by shakers, the free vibration test induced by a push and fast release system, and the truck test. The bridges suffered from various extents of damage due to the Chi-Chi and the Chi-I earthquakes of great strength during the construction and had been retrofitted. The damage was reflected by the change of the bridges' natural frequencies obtained from the ambient vibration tests. The models of the two bridges are simulated by the finite element method based on the original design drawings. Soil-structure interaction was also scrutinized in this study. The simulation was then modified based on the results from the field tests. Dynamic parameters of bridges are identified and compared with those from theoretical simulation. The efficiency is also verified to be better for an isolated bridge.
机译:狮头河大桥是在平行位置的双子桥。东向设计和建造为带罐轴承的传统预应力混凝土箱梁桥。西界安装铅橡胶轴承的隔震装置。通过几个现场测试将隔离桥的性能与传统桥的性能进行了比较,包括环境振动测试,振动器引起的力振动测试,推动和快速释放系统引起的自由振动测试以及卡车测试。由于在建造过程中发生的强烈的Chi-Chi和Chi-I地震,桥梁遭受了不同程度的损坏,并已进行了翻新。通过环境振动测试获得的桥梁固有频率的变化反映了这种损坏。基于原始设计图,通过有限元方法对两座桥梁的模型进行了仿真。在这项研究中还研究了土壤与结构的相互作用。然后根据现场测试的结果对模拟进行修改。确定桥梁的动力参数,并将其与理论仿真的结果进行比较。还证明了隔离桥的效率更高。

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