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Glass facades under seismic events and explosions: a novel distributed-TMD design concept for building protection

机译:地震和爆炸下的玻璃幕墙:一种新型的分布式TMD设计理念,用于建筑物保护

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Glazing facades generally represent one of the most critical building components, from a structural point of view, since providing a physical separation and barrier for the building occupants. In this regard, especially under the action of extreme loads, they require specific design concepts voted to protect the building occupants. In this paper, the feasibility and potential of special mechanical connectors interposed at the interface between a given multi-storey primary building structure and the glazing facade are investigated via accurate finite-element models, under the action seismic and explosive loads. Given the case study of a 4-storey steel framed structure enclosed by a glazing curtain wall, both the global and local effects and potential benefits due to additional vibration control systems (VCSs) are preliminary assessed via numerical simulations, giving evidence of the activation- once properly designed-of a distributed-tuned-mass damper (TMD) concept involving the glass facade as a structural component of the 3D building. Differing from traditional TMD applications in civil engineering systems-namely consisting of lumped mass, damping and stiffness terms-these beneficial contributions are derived from the enclosing glass panels. Taking advantage of earlier research studies, in particular, where major efforts have been spent for the potential of visco-elastic VCSs, careful consideration is paid in this paper for the feasibility of elasto-plastic (PL) connectors, giving evidence of their response and effects under both seismic events and explosions. As shown from FE results partly discussed in the paper, the full 3D assembly can take benefit from the proposed design concept, hence suggesting the further development of the explored passive mitigation tool for the protection of the primary building structure.
机译:从结构的角度来看,玻璃幕墙通常代表了最关键的建筑组成部分之一,因为它为建筑物的居住者提供了物理上的隔离和屏障。在这方面,特别是在极端负载的作用下,它们要求投票通过特定的设计概念来保护建筑物的居住者。在本文中,通过精确的有限元模型,在地震和爆炸荷载作用下,研究了在给定的多层主要建筑结构与玻璃幕墙之间的界面处插入特殊机械连接器的可行性和潜力。鉴于以玻璃幕墙围成的4层钢框架结构为例的研究,通过数值模拟初步评估了由于附加振动控制系统(VCS)引起的整体和局部影响以及潜在利益,从而给出了以下方面的证据:一经适当设计的分布式调谐质量阻尼器(TMD)概念,其中涉及玻璃幕墙作为3D建筑物的结构组成部分。与传统的TMD在土木工程系统中的应用不同(即由集总质量,阻尼和刚度项组成),这些有益的贡献来自封闭的玻璃面板。利用早期研究的优势,尤其是在为粘弹性VCS的潜力付出了巨大努力的情况下,本文对弹塑性(PL)连接器的可行性进行了仔细考虑,并给出了其响应的证据和地震事件和爆炸的影响。如本文中部分讨论的有限元分析结果所示,完整的3D组件可从提议的设计概念中受益,因此建议对已探究的被动缓解工具进行进一步开发以保护主要建筑结构。

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