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Optimal energy-based seismic design of non-conventional Tuned Mass Damper (TMD) implemented via inter-story isolation

机译:通过层间隔离实现非常规调谐质量阻尼器(TMD)的基于能量的最优抗震设计

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Inter-story isolation, an effective strategy for mitigating the seismic risk of both new and existing buildings, has gained more and more interest in recent years as alternative to base isolation, whenever the latter results to be impractical, technically difficult or uneconomic. As suggested by the name, the technique consists in inserting flexible isolators at floor levels other than the base along the height of a multi-story building, thus realizing a non-conventional Tuned Mass Damper (TMD). Consistent with this, an optimal design methodology is developed in the present paper with the objective of achieving the global protection of both the structural portions separated by the inter-story isolation system, that is, the lower portion (below the isolation system) and the isolated upper portion (above the isolation system). The optimization procedure is formulated on the basis of an energy performance criterion that consists in maximizing the ratio between the energy dissipated in the isolation system and the input energy globally transferred to the entire structure. Numerical simulations, performed under natural accelerograms with different frequency content and considering increasing isolation levels along the height of a reference frame structure, are used to investigate the seismic performance of the optimized inter-story isolation systems. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:层间隔离是一种缓解新建筑物和现有建筑物地震风险的有效策略,近年来,只要基础隔离导致不切实际,技术上困难或不经济,替代基础隔离便引起了越来越多的关注。顾名思义,该技术包括沿着多层建筑物的高度在除底部以外的其他楼层处插入柔性隔离器,从而实现非常规的调谐质量阻尼器(TMD)。与此相一致,本文提出了一种最优的设计方法,其目的是实现对层间隔离系统所分隔的结构部分(即下部(隔离系统下方)和隔离层)的整体保护。隔离的上部(隔离系统上方)。优化过程是根据能量性能标准制定的,该标准包括最大化隔离系统中消耗的能量与全局传递到整个结构的输入能量之间的比率。在具有不同频率含量的自然加速度图下进行的数值模拟,并考虑了沿参考框架结构高度增加的隔离度,用于研究优化的层间隔离系统的抗震性能。版权所有(c)2015 John Wiley&Sons,Ltd.

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