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Seismic axial loads in steel moment resisting frames

机译:抗弯钢框架的轴向地震荷载

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摘要

During the 1994 Northridge Earthquake, many buildings with modern steel moment resisting frames (SMRFs) suffered from connection failures. One year later, similar damage has occurred in the 1995 Kobe earthquake in Japan. The unexpected seismic response of SMRFs resulted in comprehensive analytical and theoretical investigations and major changes in steel building design have been implemented consequently. One of the requirements in the subsequent seismic design codes is the stability check of the columns. Column yielding in a seismic force resisting systems (SFRSs) is not the desired damage mode and might result in column rupture or global buckling and threaten life safety. This study focuses on exploring the seismic axial loads for columns in SMRFs under strong ground motions. For this purpose, the increase in axial loads in low-, medium-, and high-rise SMRFs are investigated at the maximum lateral load level and the corresponding lateral displacement. The results are presented in terms of PHRs, average system overstrength factors (Omega(0)) of all columns in the frames under the selected ground motions, the distribution of Omega(0) in the individual columns in the frame, and axial load levels in columns. The results indicate that axial load level remains below 0.4 in the columns for low- and medium-rise frames, whereas it may get as high as 0.95 in highrise frames.
机译:在1994年Northridge地震期间,许多具有现代钢制抗力矩框架(SMRF)的建筑物均遭受连接故障。一年后,在1995年日本神户地震中也发生了类似的破坏。 SMRF的意外地震响应导致了全面的分析和理论研究,因此对钢结构设计进行了重大更改。后续抗震设计规范中的一项要求是对立柱进行稳定性检查。抗震力系统(SFRS)中的柱屈服不是理想的破坏模式,并且可能导致柱破裂或整体屈曲并威胁生命安全。这项研究的重点是在强地面运动下探讨SMRF柱的地震轴向载荷。为此,在最大横向载荷水平和相应的横向位移下,研究了低,中和高层SMRF中轴向载荷的增加。结果表示为PHR,选定地面运动下框架中所有列的平均系统超强度因子(Omega(0)),框架中各个列中的Omega(0)分布以及轴向载荷水平在列中。结果表明,对于低中高层框架,圆柱的轴向荷载水平保持在0.4以下,而在高层框架中,轴向荷载水平可能高达0.95。

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