The MDOF equivalent linear system and its applications in seismic analysis and design of framed structures

E.V. Muho , N.A. Kalapodis , G.A. Papagiannopoulos , D.E. Beskos
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引用次数: 0

Abstract

This paper reviews the applications of the multi degree-of-freedom (MDOF) equivalent linear system in seismic analysis and design of planar steel and reinforced concrete framed structures. An equivalent MDOF linear structure, analogous to the original MDOF nonlinear structure, is constructed, which has the same mass and elastic stiffness as the original structure and modal damping ratios that account for the effects of geometrical and material nonlinearities. The equivalence implies a balance between the viscous damping work of the equivalent linear structure and that of the nonlinearities in the original nonlinear structure. This work balance is established with the aid of a transfer function in the frequency domain. Thus, equivalent modal damping ratios can be explicitly determined in terms of the period and deformation levels of the structure as well as the soil types. Use of these equivalent modal damping ratios can help address a variety of seismic analysis and design problems associated with planar steel and reinforced concrete framed structures in a rational and accurate manner. These include force - based seismic design with the aid of acceleration response spectra characterized by high amounts of damping, improved direct displacement-based seismic design and the development of advanced seismic intensity measures. The equivalent modal damping ratios are also utilized in the context of linear modal analysis for the definition and construction of the MDOF response spectrum. Furthermore, the equivalent modal damping ratios are employed in a seismic retrofit method for steel-framed structures with viscous dampers. Finally, it is demonstrated that modal behavior (or strength reduction) factors can be easily constructed based on these modal damping ratios for a more rational and accurate force-based seismic design, including the determination of inelastic displacement profiles.
mof等效线性体系及其在框架结构抗震分析与设计中的应用
本文综述了多自由度等效线性体系在平面钢和钢筋混凝土框架结构抗震分析和设计中的应用。构造了等效的MDOF线性结构,与原始MDOF非线性结构类似,具有与原始结构相同的质量和弹性刚度,并且考虑了几何非线性和材料非线性的模态阻尼比。等效性意味着等效线性结构的粘性阻尼功与原非线性结构的非线性阻尼功之间的平衡。这种功平衡是借助于频域的传递函数来建立的。因此,等效模态阻尼比可以根据结构的周期和变形水平以及土壤类型明确确定。使用这些等效模态阻尼比可以帮助以合理和准确的方式解决与平面钢和钢筋混凝土框架结构相关的各种地震分析和设计问题。其中包括基于力的地震设计,借助于以大量阻尼为特征的加速度响应谱,改进的直接基于位移的地震设计和先进地震烈度测量的发展。在线性模态分析的背景下,等效模态阻尼比也被用于定义和构建多自由度响应谱。此外,将等效模态阻尼比应用于粘滞阻尼器钢架结构的抗震加固方法。最后,研究表明,基于这些模态阻尼比,可以很容易地构建模态行为(或强度折减)因子,从而实现更合理、更准确的基于力的抗震设计,包括确定非弹性位移剖面。
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