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首页> 外文期刊>International Journal of Applied Engineering Research >Investigation of the Effect of Directivity Pulses on the Seismic Response of a Curved RC Bridge
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Investigation of the Effect of Directivity Pulses on the Seismic Response of a Curved RC Bridge

机译:指导性脉冲对弯曲RC桥梁地震反应的影响研究

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Within the near-fault zone, ground motions are influenced by the rupture mechanism and directivity phenomena. Near-fault ground motions are of special interest in Earthquake Engineering, as they might result in large inelastic displacements of structures. In this paper, an investigation is presented concerning the effect of the directivity pulses inherent in near-fault ground motions on the inelastic response of a curved RC bridge, specifically Bridge G7 of Egnatia Highway in Greece. The analyses were performed for a sample of 90 near-fault seismic records. From each record, the first six pulses were extracted and simplified 'pulse records' were defined, composed of one or more (up to six) pulses. First, a pushover analysis was performed and, based on the derived yield acceleration corresponding to the bilinear representation of the capacity curve, each record was scaled to three intensity levels, corresponding to behavior factors q_y= 2, 3 and 4. Non-linear time-history analyses were then performed for each original record and the related 'pulse records' using OpenSees. By comparing the results, conclusions were drawn on the significance of each pulse to the nonlinear response. To this end, the errors for several general and local response quantities were calculated. The results show that the maximum inelastic deformations occur for the ground motions for which the elastic fundamental period of the bridge is close to one half of the period of the predominant pulse. Also, in most cases, the maximum response for the original record could be adequately estimated by the response for the 'pulse record' consisted of only two(and in few cases of three) pulses, especially when the fundamental period of the bridge was in between the periods of these pulses.
机译:在近断层区内,地面运动受破裂机制和方向性现象的影响。近端故障地面运动对地震工程具有特殊兴趣,因为它们可能导致结构的大型非弹性位移。本文提出了一种关于近端故障地面运动中固有的效果对弧形RC桥梁的非弹性响应,特别是希腊Egnatia公路的桥梁G7所固有的近乎故障接地运动中固有的效果。对90个近故障地震记录的样品进行分析。从每个记录中,提取前六个脉冲并限定了一个或多个(最多六个)脉冲组成的“脉冲记录”。首先,执行推送分析,并且基于对应于容量曲线的双线性表示的导出的产量加速度,每个记录被缩放到三个强度水平,对应于行为因子Q_Y = 2,3和4.非线性时间然后对每个原始记录和相关的“脉冲记录”执行overy的分析。通过比较结果,得出结论对每个脉冲的显着性提取到非线性响应。为此,计算了几种通用和局部响应量的误差。结果表明,桥梁弹性基本周期的地面运动发生的最大非弹性变形接近主要脉冲时段的一半。此外,在大多数情况下,可以通过对“脉冲记录”的响应仅由两个(以及少数三个)脉冲组成的响应来充分估计原始记录的最大响应,尤其是当桥的基本时期进入时在这些脉冲的时段之间。

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