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A proposed structural design method considering fluid viscous damper degradations

机译:一种考虑流体粘性阻尼器退化的结构设计方法

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The purpose of this study is to perform a seismic assessment of the moment resistant steel structures enhanced with viscous dampers where the dampers are degraded due to possible leak of viscous fluid. This paper proposes a design procedure based on corrected response spectrums as a result of seismic assessments based on nonlinear time series analyses on three-, five-, and seven-story steel frame structures denoted as generic structures. The proposed design procedure is a seismic displacement-based design methodology for buildings with viscous dampers as passive energy dissipation systems. Prior literature on these types of structures often overlook the viscous dampers degradation due to the fluid leak. In this paper, in order to study these effects, a target displacement is specified at first and the lateral forces and required stiffness are obtained. The effectiveness of the proposed procedure is verified with the collapse fragility curves of the generic structures according to the ASCE 7-10 and displacement-based design methodology. The results show that the structures designed based on proposed procedure demonstrate acceptable performance with degrading dampers.
机译:这项研究的目的是对使用粘性阻尼器增强的抗弯矩钢结构进行地震评估,其中粘性阻尼器可能由于粘性流体的泄漏而退化。本文针对基于三层,五层和七层钢框架结构的非线性时间序列分析,通过基于非线性时间序列分析的地震评估结果,提出了基于校正响应谱的设计程序,该结构被表示为通用结构。拟议的设计程序是基于地震位移的设计方法,用于具有粘性阻尼器作为被动耗能系统的建筑物。关于这些类型的结构的现有文献经常忽略由于流体泄漏而导致的粘性阻尼器的退化。在本文中,为了研究这些影响,首先指定目标位移,然后获得侧向力和所需的刚度。根据ASCE 7-10和基于位移的设计方法,通过通用结构的坍塌脆性曲线验证了所提方法的有效性。结果表明,根据建议的程序设计的结构在阻尼器性能下降的情况下具有可接受的性能。

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