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首页> 外文期刊>Mechanical systems and signal processing >Robust Design Of Mass-uncertain Rolling-pendulum Tmds For The Seismic Protection Of Buildings
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Robust Design Of Mass-uncertain Rolling-pendulum Tmds For The Seismic Protection Of Buildings

机译:大质量不确定滚动摆式Tmds的稳健设计

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摘要

Commonly used for mitigating wind- and traffic-induced vibrations in flexible structures, passive tuned mass dampers (TMDs) are rarely applied to the seismic control of buildings, their effectiveness to impulsive loads being conditional upon adoption of large mass ratios. Instead of recurring to cumbersome metal or concrete devices, this paper suggests meeting that condition by turning into TMDs non-structural masses sometimes available atop buildings. An innovative roof-garden TMD, for instance, sounds a promising tool capable of combining environmental and structural protection in one device.rnUnfortunately, the amount of these masses being generally variable, the resulting mass-uncertain TMD (MUTMD) appears prone to mistuning and control loss. In an attempt to minimize such adverse effects, robust analysis and synthesis against mass variations are applied in this study to MUTMDs of the rolling-pendulum type, a configuration characterized by mass-independent natural period.rnThrough simulations under harmonic and recorded ground motions of increasing intensity, the performance of circular and cycloidal rolling-pendulum MUTMDs is evaluated on an SDOF structure in order to illustrate their respective advantages as well as the drawbacks inherent in their non-linear behavior. A possible implementation of a roof-garden TMD on a real building structure is described and its control efficacy numerically demonstrated, showing that in practical applications MUTMDs can become a good alternative to traditional TMDs.
机译:被动调谐质量阻尼器(TMD)通常用于缓解柔性结构中风和交通引起的振动,很少用于建筑物的地震控制,其对脉冲载荷的有效性取决于采用大质量比的条件。本文建议不再使用繁琐的金属或混凝土设备,而建议通过将TMD转换为有时可在建筑物顶上使用的非结构块来满足该条件。例如,创新的屋顶花园TMD听起来很有希望,能够在一个设备中结合环境保护和结构保护。不幸的是,这些质量的数量通常是可变的,因此产生的质量不确定的TMD(MUTMD)似乎容易产生误解和变形。控制损失。为了尽量减少此类不利影响,本研究针对滚动摆类型的MUTMD应用了针对质量变化的稳健分析和综合方法,该结构以质量无关的自然周期为特征。为了说明强度,我们在SDOF结构上评估了圆形和摆线滚动摆式MUTMD的性能,以说明它们各自的优点以及其非线性行为固有的缺点。描述了在实际建筑结构上可能的屋顶花园TMD的实现方式,并通过数字方式证明了其控制效果,表明MUTMD在实际应用中可以成为传统TMD的良好替代品。

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