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Structural monitoring system for the management of emergency due to natural events

机译:结构性监视系统,用于管理自然事件引起的紧急情况

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The growing interest towards the use of permanent monitoring system is due to the importance of assessing the damage occurring on a structure after extreme events like earthquakes, typhoons or tsunamis, so that the expert authorities can provide the users and the owner with immediate information on structural safety. Last year, an experimental campaign has been presented in [1], regarding to a full-scale three-dimensional reinforced concrete frame in Italy, monitored over time by using different types of sensors to determine the structural displacements. This structure has been tested in laboratory under a sequence of earthquakes of increasing amplitude. The experimental results allow to conclude that, for seismic monitoring, the measurement system based on accelerometers is better when the monitored structure doesn't exhibits residual displacements after the earthquake, while a vision measurement system is suited to estimatea possible residual post-earthquake displacement.
机译:对使用永久性监视系统的兴趣与日俱增,这是因为评估地震,台风或海啸等极端事件后在建筑物上发生的损坏的重要性,因此专家机构可以为用户和所有者提供有关建筑物的即时信息。安全。去年,在[1]中提出了一项针对意大利全尺寸三维钢筋混凝土框架的实验性活动,通过使用不同类型的传感器确定结构位移随时间进行监控。该结构已在实验室中经过一系列振幅不断增加的地震测试。实验结果可以得出结论,对于地震监测,当地震后被监测的结构没有残余位移时,基于加速度计的测量系统会更好,而视觉测量系统适合于估计可能的地震后残余位移。

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