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Optimum Tuned Mass Dampers under seismic Soil-Structure Interaction

机译:土-结构相互作用下的最优调谐质量阻尼器

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Tuned Mass Damper (TMD) devices are widely adopted as a valid mechanical solution for the vibration mitigation of structural systems and buildings under dynamic excitation. In the specific challenging context of seismic engineering, TMDs may represent a convenient option for both aseismic structural design and seismic retrofitting. However, the expectable efficiency rate of TMDs in that context is still debated. Besides, potential Soil-Structure Interaction (SSI) effects may become crucial in the mechanical system, and should properly be taken into account for the optimum TMD design, in order to avoid possible de-tuning. This work contributes to this framework, by investigating the effectiveness of an optimum TMD in reducing the linear structural response to strong-motion earthquakes of a given set of Multi-Degree-Of-Freedom (MDOF) low- and high-rise shear-type frame structures, by embedding SSI within the dynamic and TMD optimisation model. The TMD is seismically tuned through a dedicated two-variable optimisation procedure, for each specific case (primary structure, seismic event and soil type), therefore providing the optimum device setting for each given context. Average primary structure response indices are specifically targeted to that purpose, while maximum ones are monitored. A quite considerable range of optimisation cases is considered (eighty instances), to outline rather general considerations and average trends on TMD optimisation and effectiveness within the seismic SSI framework, for both low- and high-rise buildings. Such an investigation shall provide useful guidelines for a comprehensive tuning of TMDs in mechanical systems and specifically in the presence of seismic SSI, to be consulted in view of real-case applications.
机译:调谐质量阻尼器(TMD)器件被广泛用作有效缓解机械结构和建筑物在动态激励下振动的有效机械解决方案。在地震工程的特殊挑战性背景下,TMD可能是抗震结构设计和地震翻新的便捷选择。但是,在这种情况下,TMD的预期效率仍存在争议。此外,潜在的土壤-结构相互作用(SSI)效应可能在机械系统中变得至关重要,因此,为避免可能的失谐,应将最佳的TMD设计适当考虑在内。这项工作通过研究最佳TMD在降低给定多自由度(MDOF)低和高层剪力型给定组对强震的线性结构响应方面的有效性,为该框架做出了贡献。通过将SSI嵌入动态和TMD优化模型中来构建框架结构。针对每种特定情况(主要结构,地震事件和土壤类型),通过专用的二变量优化程序对TMD进行地震调整,因此可为每个给定的环境提供最佳的设备设置。平均一级结构响应指标专门针对此目的,而最大指标则受到监控。考虑了相当多的优化案例(八十个实例),概述了高层和低层建筑在地震SSI框架内TMD优化和有效性的一般考虑和平均趋势。此类调查应为在机械系统中,特别是在存在地震SSI的情况下对TMD进行全面调整提供有用的指导,应结合实际应用进行咨询。

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