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首页> 外文期刊>Advances in civil engineering >Energy-Based Seismic Design Method for EBFs Based on Hysteretic Energy Spectra and Accumulated Ductility Ratio Spectra
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Energy-Based Seismic Design Method for EBFs Based on Hysteretic Energy Spectra and Accumulated Ductility Ratio Spectra

机译:基于能源的地震设计方法,用于基于滞后能谱和累积延展比光谱的EBF

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In the case of far field earthquakes, structural failure often results from accumulated damage caused by cyclic effects and gradual accumulation of energy. This paper proposes an energy-based seismic design method for steel eccentrically braced frames (EBFs) with two shear links at every story according to the energy balance concept. The proposed method is theoretically supported by hysteretic energy spectra and accumulated ductility ratio spectra according to the Chinese soil classification. Furthermore, the method can be used to clarify the relationship between cumulative hysteretic energy and one-way pushover energy. For developing the method, it is assumed that all the hysteretic energy is dissipated by the shear links, column bases, and beam ends of the frames at both sides. Therefore, the parts outside the links, including beam segments, braces, and columns, are specially designed to perform elastically during an earthquake. Furthermore, a V-scheme steel EBF with ten stories and three spans is designed. The seismic performances of the designed structure, such as story drift and energy dissipation, are evaluated by nonlinear static analysis and time-history analysis. Finally, the reliability and accuracy of the proposed seismic design method are validated.
机译:在远场地震的情况下,结构性失败常因循环效应和逐渐积累的能量造成的累积损失。本文根据能量平衡概念提出了一种基于钢偏心支撑框架(EBF)的钢偏心支撑框架(EBF)的地震设计方法。根据中国土壤分类,所提出的方法由滞后能谱和累积的延展比光谱理论上支持。此外,该方法可用于阐明累积滞后能量与单向推进能之间的关系。为了开发该方法,假设所有滞后能量都被两侧框架,柱基部和框架的梁端散发出来。因此,包括光束段,括号和柱外部的零件特别设计用于在地震期间弹性地进行。此外,设计了具有十个故事和三个跨度的V形方案钢EBF。通过非线性静态分析和时间历史分析评估设计结构的地震性能,例如故事漂移和能量耗散。最后,验证了所提出的地震设计方法的可靠性和准确性。

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