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Shaking table tests of a scaled bridge model with rolling-type seismic isolation bearings

机译:滚动型隔震支座比例尺桥梁模型的振动台试验

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Concurrent with the growth of the application of the seismic isolation technique to civil structures, a large variety of isolation systems has been developed during the past two decades. This paper investigates the seismic behavior of a 1/7.5 scaled bridge model isolated by rolling-type bearings. Shaking table tests of the scaled bridge model have been conducted to verify the effectiveness of the rolling-type bearing as a seismic isolation device. Test results reveal that the seismic force transmitted by the rolling-type bearing is independent of the earthquake intensities when the sloped rolling mechanism is completely triggered. An approximate expression is derived for predicting the peak acceleration response of a structure isolated by the rolling-type bearing. It is shown that the maximum structural acceleration may be estimated by the proposed formula. As an appropriate option, viscous dampers may be incorporated to reduce the larger displacement and eliminate unfavorable oscillation of the bridge deck, which may occur under strong earthquakes.
机译:随着地震隔离技术在民用建筑中的应用的增长,在过去的二十年中已经开发出了各种各样的隔离系统。本文研究了由滚动轴承隔离的1 / 7.5比例桥梁模型的抗震性能。为了验证滚动轴承作为隔震装置的有效性,已经进行了比例桥模型的振动台测试。测试结果表明,当完全触发倾斜的滚动机构时,滚动型轴承传递的地震力与地震强度无关。推导出一个近似表达式,以预测由滚动轴承分离的结构的峰值加速度响应。结果表明,最大结构加速度可以通过所提出的公式来估计。作为适当的选择,可以结合使用粘性阻尼器,以减少较大的位移并消除桥面板在强地震下可能发生的不利振动。

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