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Applications of passive and hybrid structural control using architectural cladding systems for critical structures

机译:使用建筑立面系统对关键结构进行被动和混合结构控制的应用

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Passive control approaches for response modification are particularly attractive for critical facilities that must be maintained in a serviceable state following an earthquake. When properly designed, they require almost no maintenance and are capable of providing high levels of reliability over the economic lifetime of the critical facility itself. Architectural cladding has the potential, when properly designed, to function as a passive damping subsystem in a building design. Damping is generated by ductile deformation of what are called "advanced" cladding connections which also maintain panel alignment and overall cladding integrity during earthquakes. A number of these advanced connectors have been designed and tested in the lab. Design properties inferred from these tests can then be used in a numerical optimization design procedure that is described. Hybrid control approaches in which active control elements are combined with the passive cladding system are also shown to provide significant benefits but at the expense of reliability.
机译:对于必须在地震后保持可用状态的关键设施,用于响应修改的被动控制方法特别有吸引力。如果设计合理,它们几乎不需要维护,并且能够在关键设施本身的经济寿命内提供高水平的可靠性。如果设计得当,建筑立面有潜力在建筑设计中充当被动阻尼子系统。阻尼是由所谓的“高级”覆层连接的延性变形而产生的,在地震过程中,这些覆层连接还可以保持面板对齐和整体覆层的完整性。这些高级连接器已经在实验室中进行了设计和测试。从这些测试中推​​断出的设计属性可以用于所描述的数值优化设计过程。还显示了将主动控制元件与被动包层系统组合在一起的混合控制方法,虽然具有显着的优势,但是却以可靠性为代价。

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