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Response of structures with viscous dampers subjected to large earthquakes

机译:带有大地震的粘性阻尼器的结构的响应

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Fluid Viscous dampers are added to building to protect its structural, nonstructural components, and contents. Dampers are designed to resist forces produced by the maximum considered earthquake. The efficacy of dampers in providing seismic protection and the code-prescribed methodology for design of these units have been well established and have been validated by the excellent performance of buildings with dampers in the past earthquakes. However, little data is available for buildings with viscous dampers subjected to large earthquakes. A multi-year research project is currently investigating such cases. Initial analyses revealed that the limit states of viscous dampers have a significant effect on the response of the building to which they are installed. Analytical model of steel buildings with viscous dampers, incorporating damper limit states, have been prepared and subjected to incremental dynamic analysis to determine the collapse performance. To date, analysis has shown that performance of the buildings with viscous dampers was acceptable when subjected to large earthquake. Furthermore, the use of factors of safety to delay the onset of reaching limit states was seen to be both beneficial and cost effective.
机译:将流体粘性阻尼器添加到建筑物中以保护其结构,非结构部件和内容物。阻尼器设计用于抵抗由考虑地震所产生的最大值产生的力。阻尼器在提供地震保护方面的功效和这些单位设计的守则规定的方法已经得到了很好的成熟,并通过过去地震的阻尼器的优异性能进行了验证。但是,很少的数据适用于粘性阻尼器经过大地震的建筑物。多年的研究项目目前正在调查此类案例。初始分析显示,粘性阻尼器的极限状态对安装它们的建筑物的响应具有显着影响。已经制备了粘性阻尼器的钢制建筑物的分析模型,包括阻尼器限制状态,并进行增量动态分析以确定崩溃性能。迄今为止,分析表明,当受到大地震时,具有粘性阻尼器的建筑物的性能是可以接受的。此外,使用安全性因素延迟到达达到限额状态的发作是有益的和成本效益。

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