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Interstory drift ratio of building structures subjected to near-fault ground motions based on generalized drift spectral analysis

机译:基于广义漂移谱分析的近断层地震作用下建筑结构的层间位移率

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摘要

This paper focuses on the interstory drift ratio (IDR) demands of building structures subjected to near-fault ground motions having different impulsive characteristics based on generalized interstory drift spectral analysis. The near-fault ground motions considered include the idealized simple pulses and three groups of near-fault ground motions with forward directivity pulses, fling-step pulses and without velocity pulse. Meanwhile, the building systems are equivalently taken as shear-flexural beams with representative lateral stiffness ratios. The IDR distribution of continuous beams subjected to three groups of near-fault ground motions is acquired. It is illustrated that the maximum IDR shifts from the upper half to the lower half of buildings with an increase in lateral stiffness ratio. For long-period systems, the average IDR under impulsive ground motions is significantly greater than that under non-pulse motions. Finally, for moment-resisting frame buildings the forward directivity pulses amplify the drift response of higher modes, while the fling-step pulses excite primarily their contribution in the first mode and generate large deformation in the lower stories. The essential reason for this phenomenon is revealed according to the distinct property of near-fault impulsive ground motions and generalized drift spectral analysis.
机译:本文基于广义层间漂移谱分析,着眼于具有不同冲击特性的近断层地震动的建筑结构的层间漂移比(IDR)要求。所考虑的近断层地面运动包括理想化的简单脉冲和三组近断层地面运动,它们具有正向方向性脉冲,扑阶脉冲和无速度脉冲。同时,建筑系统被等效地视为具有代表性的横向刚度比的剪切挠曲梁。获取连续三组近断层地震动的连续梁的IDR分布。如图所示,随着侧向刚度比的增加,最大IDR从建筑物的上半部分移至下半部分。对于长周期系统,在脉冲地面运动下的平均IDR明显大于非脉冲运动下的平均IDR。最后,对于抗弯框架建筑物,前向方向性脉冲会放大较高模式的漂移响应,而阶跃脉冲主要会激发它们在第一模式中的作用,并在较低楼层产生较大的变形。根据近断层脉冲地面运动的独特性质和广义漂移谱分析揭示了这一现象的根本原因。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2010年第11期|p.1182-1197|共16页
  • 作者单位

    Department of Engineering Mechanics State Key Laboratory of Structural Analysis for Industrial Equipment Dalian University of Technology Dalian 116024 China;

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  • 入库时间 2022-08-18 04:33:49

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