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Analysis on the optimum performance of Tuned Mass Damper devices in the context of earthquake engineering

机译:地震工程背景下调谐质量阻尼装置的最佳性能分析

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The mitigation of the dynamic response of buildings and structures to earthquakes is one of the fundamental aims within the design of vibration control devices. In this sense, Tuned Mass Damper (TMD) devices are generally conceived as useful and efficient means for the control of the dynamic response of structures and constructions, especially when considering ideal dynamic excitations. However, their optimum tuning and relevant performance in effectively reducing the seismic response of civil structures is currently an open topic, mostly due to the intrinsic nature of the (passive) device and the uncertainty and unpredictability of the earthquake event. The present paper deals with the concept of optimisation of the TMD at given seismic input, to assess the optimum TMD parameters for each seismic event. In this study, the optimisation of TMDs is firstly carried out within a range of earthquakes and primary frame structures, in order to achieve the ideal optimum setting for each considered case. Then, the outcomes of the investigation are gathered and analysed all together, to outline general trends and characteristics, towards possible effective design of TMDs in the seismic context. The output of this paper should enrich the current knowledge on this topic towards potential extensive applications of TMDs in the field of earthquake engineering.
机译:减轻建筑物和结构到地震的动态响应是振动控制装置设计内的基本目标之一。从这个意义上讲,调节质量阻尼器(TMD)装置通常被认为是控制结构和结构的动态响应的有用和有效的手段,特别是在考虑理想的动态激励时。然而,他们的最佳调整和相关性能有效地降低了民用结构的地震反应是目前是一个开放的主题,主要是由于(被动)设备的内在性质以及地震事件的不确定性和不可预测性。本文涉及在给定地震投入时优化TMD的概念,以评估每个地震事件的最佳TMD参数。在该研究中,首先在地震和主框架结构范围内进行TMDS的优化,以实现每个所考虑的情况的理想最佳设置。然后,调查的结果将集中并分析一致,概述一般趋势和特征,朝着地震背景下的可能有效地设计TMD。本文的产出应丰富关于该主题的目前知识,迈为TMDS在地震工程领域的潜在广泛应用。

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