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Effect of the angle of seismic incidence on the fragility curves of bridges

机译:地震入射角对桥梁脆性曲线的影响

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This study examines the effect of the angle of seismic incidence θ on the fragility curves of bridges. Although currently, fragility curves of bridges are usually expressed only as a function of intensity measure of ground motion (IM) such as peak ground acceleration, peak ground velocity, or S_a(ω_1), in this study they are expressed as a function of IM with θ as a parameter. Lognormal distribution function is used for this purpose with fragility parameters, median c_m and standard deviation ζ to be estimated for each value of θ chosen from 0 < θ < 360°. A nonlinear 3D finite element dynamic analysis is performed, and key response values are calculated as demand on the bridge under a set of acceleration time histories with different IM values representing the seismic hazard in Los Angeles area. This method is applied to typical straight reinforced concrete bridges located in California. The results are validated with existing empirical damage data from the 1994 Northridge earthquake. Even though the sample bridges are regular and symmetric with respect to the longitudinal axis, the results indicate that the weakest direction is neither longitudinal nor transverse. Therefore, if the angle of seismic incidence is not considered, the damageability of a bridge can be underestimated depending on the incidence angle of seismic wave. Because a regional highway transportation network is composed of hundreds or even thousands of bridges, its vulnerability can also be underestimated. Hence, it is prudent to use fragility curves taking the incident angle of seismic waves into consideration as developed here when the seismic performance of a highway network is to be analyzed.
机译:本研究考察了地震入射角θ对桥梁脆性曲线的影响。尽管目前,桥梁的脆性曲线通常仅表示为地面运动强度(IM)的函数,例如峰值地面加速度,峰值地面速度或S_a(ω_1),但在本研究中,它们表示为IM的函数以θ为参数。为此,使用对数正态分布函数结合易碎性参数,中值c_m和标准偏差ζ来估计从0 <θ<360°中选择的每个θ值。进行非线性3D有限元动力学分析,并根据一组加速时间历史记录,根据桥梁上的需求计算关键响应值,其中不同的IM值代表洛杉矶地区的地震危险。此方法适用于位于加利福尼亚的典型直钢筋混凝土桥梁。使用1994年Northridge地震的现有经验破坏数据验证了结果。即使样品桥相对于纵轴是规则且对称的,结果也表明最弱的方向既不是纵向也不是横向。因此,如果不考虑地震的入射角,则根据地震波的入射角会低估桥梁的破损性。由于区域公路运输网络由数百甚至数千座桥梁组成,因此其脆弱性也可能被低估。因此,在分析公路网的抗震性能时,应谨慎使用此处考虑的考虑地震波入射角的脆性曲线。

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