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Existing prefab R/C industrial buildings: Seismic assessment and supplemental damping-based retrofit

机译:现有的预制R / C工业建筑物:地震评估和基于阻尼的补充改造

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A research study on prefab reinforced concrete buildings designed with older Technical Standards is presented in this paper, where attention is focused on hall-type industrial structures. A representative case study, which includes the main sources of seismic vulnerability, is examined in detail. The possible rigid rotation of the bottom end zone of columns, which are encased in smooth socket-type foundations, and the frictional contact between the neoprene pads situated on top of the columns and the terminal zone of the roof girders are modelled in time-history assessment analyses. Initially carried out by assuming an elastic behaviour of columns, the analyses highlight unsafe response conditions under seismic action scaled at the basic design earthquake level, and near-collapse caused by the loss of support of several girders from the neoprene pads at the maximum considered earthquake level. A second step of the analyses, where plastic behaviour of columns is investigated by incorporating fiber-type plastic hinges at their bottom end sections, shows a remarkable ductility demand, as well as potential collapse induced by the complete loss of support of girders. The high lateral displacements of columns may also cause failure of the fastenings of the connected cladding panels, likely to result in their overturning-induced collapse. Based on these data, a supplemental damping-based retrofit hypothesis is suggested, consisting in the installation of dissipative braces equipped with pressurized fluid viscous spring dampers. The protective system allows attaining a completely undamaged response of structural and nonstructural members, and therefore meeting the requirements of the Immediate Occupancy limit state, up to the maximum considered earthquake level.
机译:本文对采用较旧技术标准设计的预制钢筋混凝土建筑进行了研究,重点是大厅型工业结构。详细研究了一个具有代表性的案例研究,其中包括地震易损性的主要来源。圆柱的底端区域可能会发生刚性旋转,这些底端区域被包裹在光滑的承插式地基中,位于圆柱顶部的氯丁橡胶垫与屋顶大梁的末端区域之间的摩擦接触被建模为时间历史模型评估分析。最初通过假设圆柱体的弹性行为进行分析,这些分析突出显示了在基本设计地震级别进行缩放的地震作用下的不安全响应条件,以及在考虑最大地震时氯丁橡胶垫上的几根大梁失去支撑所导致的近崩溃水平。在分析的第二步中,通过在其底部末端加入纤维型塑料铰链来研究圆柱的塑性行为,这显示出了显着的延性需求,以及由于梁完全失去支撑而引起的潜在塌陷。立柱的高侧向位移也可能导致连接的覆层板的紧固失效,可能导致其倾覆引起的塌陷。基于这些数据,提出了一种基于阻尼的补充改造假设,包括安装配有加压流体粘性弹簧阻尼器的耗散支撑。该保护系统可以使结构构件和非结构构件获得完全不受损害的响应,因此可以满足即时占用限制状态的要求,最高可达考虑的最大地震级别。

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