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Wind-induced vibration mitigation in tall buildings using the tuned mass-damper-inerter (TMDI)

机译:使用调谐的质量阻尼器-Interter(TMDI)减轻高层建筑的风致振动

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摘要

In this paper the classical linear tuned mass-damper (TMD) is coupled with an inerter, a two-terminal device resisting the relative acceleration of its terminals, in various tuned mass-damper-inerter (TMDI) topologies to suppress excessive wind-induced oscillations in tall buildings causing occupants’ discomfort. A parametric numerical study is undertaken involving a top-floor-TMD-equipped planar frame capturing accurately the in-plane dynamic behavior of a 74-storey benchmark building exposed to a quasi-stationary spatially-correlated wind-force field accounting for vortex shedding effects in the across-wind direction. It is found that the TMDI reduces the peak top floor acceleration more effectively than the TMD by considering smaller attached mass values, and TMDI topologies in which the inerter spans more stories in linking the attached mass to the host structure. Moreover, the inclusion of the inerter reduces dramatically the TMD stroke while it was verified that the magnitude of the developing inerter forces can be readily accommodated by the host structure. Pertinent illustrative examples are included showcasing that the TMDI meets code-prescribed serviceability design requirements for new tall buildings using significantly smaller attached mass compared to the TMD, and that inerter devices can be used to upgrade the performance of existing TMD-equipped tall buildings without changing the attached mass.
机译:在本文中,经典的线性调谐质量阻尼器(TMD)与惰杆耦合,这是一种抵抗其端子的相对加速度的两端子设备,在各种调谐的质量阻尼阻尼器(TMDI)拓扑中,可以抑制过多的风感高层建筑的振动会引起居住者的不适。进行了参数数值研究,涉及配备了顶部TMD的平面框架,该框架精确地捕获了暴露于准静态空间相关风力场的74层基准建筑物的平面内动态行为,从而说明了涡旋脱落效应沿风向。发现通过考虑较小的附着质量值,TMDI比TMD更有效地降低了顶层顶峰加速度,并且TMDI拓扑结构中,惯性者在将附着质量与主体结构链接时跨越了更多的故事。此外,包含惰轮在内大大降低了TMD冲程,同时证实主机结构可以轻松适应不断发展的惰轮力的大小。其中包括相关的说明性示例,这些示例表明TMDI满足了新的高层建筑的要求,且与TMD相比使用较小的附着质量,可满足新高层建筑的可维修性设计要求,并且惯性设备可用于升级现有配备TMD的高层建筑的性能,而无需更改附加的质量。

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    Giaralis A.; Petrini F.;

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  • 年度 2017
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  • 正文语种 en
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