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Multimode vibration control of building steel-concrete composite floors submitted to human rhythmic activities

机译:有节奏的建筑钢混凝土复合楼板多模振动控制

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The main objective of this paper is to investigate the dynamic behaviour of building steel concrete composite floors when submitted to human rhythmic activities. The investigated structural model was based on a real building steel concrete composite floor spanning 40 m by 40 m with a total area of 1600 m(2). The structural system represents a typical interior floor of a commercial building for gym purposes, and designed according to the usual ULS and SLS Eurocode provisions. The human comfort evaluation methods used in the analysis indicated that the composite floor presented excessive vibrations. Hence, it was detected that this type of structure can reach high vibration levels that can compromise the user's comfort. In addition, the use of multiple tuned mass damper systems (TMDs) was simulated to provide a multimode vibration control aiming to improve the human comfort. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是研究建筑钢-混凝土复合地板在经受人的节奏活动时的动态行为。所研究的结构模型基于真实的建筑钢混凝土复合地板,跨度为40 m x 40 m,总面积为1600 m(2)。该结构系统代表用于体育馆用途的商业建筑的典型内部地板,并根据ULS和SLS Eurocode的常规规定进行设计。分析中使用的人体舒适度评估方法表明,复合地板出现了过多的振动。因此,已经检测到这种类型的结构可以达到高振动水平,这会损害使用者的舒适度。另外,模拟了多重调谐质量阻尼器系统(TMD)的使用,以提供旨在提高人体舒适度的多模式振动控制。 (C)2015 Elsevier Ltd.保留所有权利。

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