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Seismic performance assessment of novel self-centering friction-based eccentrically braced frames

机译:新型自定心摩擦偏心支撑框架的地震性能评估

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Eccentrically braced frame (EBF) is a robust seismic force resisting system. EBF provides strong stiffness and clear energy dissipation to resist the earthquake shaking. However, after strong earthquake shaking EBF may be difficult or too expensive to repair. This could result in prolong down time and significant repair costs. In this paper, a novel energy dissipation device named self-centering conical friction damper (SCFD) is implemented within EBFs to dissipate the earthquake energy and to reduce the residual drift of EBF. The new system is named self-centering friction-based EBF (SCFB-EBF). The performance of the SCFB-EBF is compared with conventional EBF. Three prototype buildings with 3-, 6-, and 9-stories were designed using conventional EBF according to the AISC341-16/ASCE7-16 specifications and SCFB-EBF by replaced the links of the EBF with SCFD. The prototypes were subjected to a suit of 44 ground motions at both the design based earthquake (DBE) and maximum considered earthquake (MCE) shaking intensities according to the FEMAP695 procedure. Detailed nonlinear time history analyses were carried out using OpenSees. The results of the nonlinear time history show that SCFB-EBF has superior performance compared to the conventional EBF. In addition, the residual drifts of the SCFB-EBF were reduced significantly compared to the conventional EBF. Performance-based earthquake engineering (PBEE) assessment was also conducted to examine the performance of the prototype buildings. The results show that SCFB-EBF has lower repair cost at both DBE and MCE levels. Hence, the study shows that the SCFB-EBF can be used as an efficient alternative compared to seismic force resisting system.
机译:偏心支撑框架(EBF)是一种坚固的地震力抗力系统。 EBF提供强烈的刚度和清晰的能量耗散,以抵抗地震摇动。然而,在强烈的地震摇晃EBF后可能难以修复或过于昂贵。这可能导致延长时间和显着的维修费用。在本文中,在EBF的EBF中实施了一种名为自定心锥形摩擦阻尼器(SCFD)的新型能量耗散装置,以消散地震能量并降低EBF的残余漂移。新系统被命名为基于自定心摩擦的EBF(SCFB-EBF)。将SCFB-EBF的性能与常规EBF进行比较。根据AISC341-16 / asce7-16规范和SCFB-EBF使用传统的EBF设计了三个,其中三个原型建筑物,并通过用SCFD取代了EBF的链接。根据FEMAP695程序,在基于设计的地震(DBE)的地震(DBE)的最大震动强度下,将原型对44个接地运动的套装进行了一种。详细的非线性时间历史分析使用Opense进行。非线性时间历史的结果表明,与传统EBF相比,SCFB-EBF具有卓越的性能。此外,与常规EBF相比,SCFB-EBF的残留漂移显着降低。还进行了基于绩效的地震工程(PBEE)评估,以检查原型建筑物的性能。结果表明,SCFB-EBF在DBE和MCE水平中具有较低的维修成本。因此,该研究表明,与地震力抵抗系统相比,SCB-EBF可以用作有效的替代方案。

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