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Dynamic behaviour of a retrofitted school building subjected to the after-shock sequence of the 2016 Central Italy earthquake

机译:截至2016年中南地震后冲击序列的改造学校建筑的动态行为

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This paper deals with the dynamic behaviour of a 1960s school building in Camerino subjected to moderate earthquakes belonging to the after-shock sequence of the 2016 Central Italy earthquake. The school structure, constituted by RC frames, was seismically retrofitted by means of "Dissipative Towers", an innovative system based on the use of external stiff steel truss towers equipped with dissipative dampers. Modal properties of the building after the retrofit have been determined through ambient vibration tests. After the main shock of the 2016 Central Italy earthquake, the building was instrumented with low-noise accelerometers and the dynamic behaviour of the structure during several aftershocks was recorded. Firstly, a numerical finite element model of the building is developed and calibrated on the basis of the ambient vibration measurements; then the registered dynamic response of the structure for the highest aftershock event (among the registered ones) is compared with that obtained numerically with the calibrated model. Results demonstrate the good agreement of the registered and predicted response.
机译:本文涉及20世纪60年代学校建筑的动态行为,在摄像机的适度地震属于2016年中部地震的震惊序列。由RC框架构成的学校结构是通过“耗散塔”的地震回流,这是一个基于配备耗散阻尼器的外部硬钢桁架塔的创新系统。通过环境振动测试确定改装后建筑物的模态性质。在2016年中南地震的主要休克之后,建筑物被仪表用低噪声加速度计,记录了几个余震期间结构的动态行为。首先,在环境振动测量的基础上开发和校准建筑物的数值有限元模型;然后将用于最高余震事件(在注册的血液中的结构)的注册动态响应与校准模型数字数值进行比较。结果证明了注册和预测响应的良好一致性。

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