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Seismic performance of frame structures coupled with an external rocking wall

机译:框架结构的地震性能与外部摇摆壁相结合

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Frame structures can be coupled with external mechanical systems to improve their behaviour under external loads. Some examples of such mechanical systems are oscillating masses working as tuned mass dampers, dynamic mass absorbers, elasto-plastic dampers. Among the others possibilities, a rocking rigid block can be used to improve the seismic behaviour of a frame structure. In this paper a two degree of freedom model is considered representative of a general frame structure. It is coupled with a rocking rigid block through a visco-elastic device, which connects the lower part of the structure with the top of the rocking block. A Lagrangian approach is used to derive the nonlinear equation of motion that are successively solved numerically. A simulation campaign is performed to analyse the seismic behaviour of the coupled system by considering several registered earthquakes. In the analyses, the presence of rocking rigid block is assumed to be beneficial for the system if the coupling of frame structure with rocking rigid block reduces the absolute displacements and/or the inter-storey drifts. An extensive parametric analysis is performed varying the geometric characteristics of the block and the constitutive behaviour of the visco-elastic devices. The results of such analyses are presented through behaviour maps. For each of the parameters varied in the analyses, the corresponding value on the map provides ratio between displacements (or inter-storey drifts) of coupled system and of uncoupled bare frame. Such maps allow an immediate understanding of the effects of the block that has a beneficial effect when the ratio of the displacements is less than unity. Results reveal that in large ranges of the parameters' values the rocking rigid block improves the seismic response of frame structure.
机译:框架结构可以与外部机械系统耦合,以改善外部负载下的行为。这种机械系统的一些示例是用作调谐质量阻尼器,动态质量吸收剂,弹性塑料阻尼器的振荡质量。在其他可能性中,摇摆刚性块可用于改善框架结构的地震行为。在本文中,两度的自由模型被认为是一般框架结构的代表。它通过粘弹性装置与摇摆刚性块连接,该粘弹性装置将结构的下部与摇摆块的顶部连接。拉格朗日方法用于导出数值连续解决的运动的非线性方程。执行模拟运动以通过考虑几个注册的地震来分析耦合系统的地震行为。在分析中,假设摇摆刚性块的存在如果框架结构与摇摆刚性块的耦合减小绝对位移和/或跨度漂移,则对系统有益。进行广泛的参数分析,改变块的几何特性和粘弹性装置的组成行为。这种分析的结果通过行为图呈现。对于在分析中变化的每个参数,地图上的对应值提供耦合系统的位移(或叠际漂移)与未耦合的裸帧之间的比率提供的比率。这种地图允许立即了解当位移的比例小于单位时,允许对块的效果具有有益效果。结果表明,在参数的大范围内,摇摆刚性块改善了框架结构的地震响应。

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