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Vector-Valued Probabilistic Seismic Hazard Assessment for the Effects of Vertical Ground Motions on the Seismic Response of Highway Bridges

机译:竖向地震动对公路桥梁地震响应影响的矢量值概率地震危险性评估

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摘要

The vertical ground motion component is disregarded in the design of ordinary highway bridges in California, except for the bridges located in high seismic zones (sites with design horizontal peak ground acceleration greater than 0.6 g). The influence of vertical ground motion on the seismic response of single-bent, two-span highway bridges designed according to Caltrans Seismic Design Code (SDC-2006) is evaluated. A probabilistic seismic hazard framework is used to address the probability of exceeding the elastic capacity for various structural parameters when the vertical component is included. Negative mid-span moment demand is found to be the structural parameter that is most sensitive to vertical accelerations. A series of hazard curves for negative mid-span moment are developed for a suite of sites in Northern California. The annual probability of exceeding the elastic capacity of the negative mid-span moment is as large as 0.01 for the sites close to active faults when the vertical component is included. Simplified approaches based on the distance to major faults or the median design peak acceleration show that there is a large chance (0.4 to 0.65) of exceeding the elastic limit if the current 0.6 g threshold is used for the consideration of vertical ground motions for ordinary highway bridges. The results of this study provide the technical basis for consideration of a revision of the 0.6 g threshold.
机译:在加利福尼亚州的普通公路桥梁设计中,垂直地震动分量被忽略,但高地震区中的桥梁除外(设计水平峰值地面加速度大于0.6 g的地点)。评估了竖向地震动对根据Caltrans抗震设计规范(SDC-2006)设计的单弯两跨公路桥梁地震响应的影响。当包括垂直分量时,概率地震危险框架用于解决超出各种结构参数弹性容量的概率。发现负跨距力矩需求是对垂直加速度最敏感的结构参数。针对北加利福尼亚州的一组地点,绘制了一系列负中跨矩的危险曲线。在包括垂直分量的情况下,靠近活动断层的位置,超过负中跨矩弹性能力的年概率高达0.01。基于到主要断层的距离或中值设计峰值加速度的简化方法表明,如果将当前的0.6 g阈值用于考虑普通公路的垂直地面运动,则很有可能(0.4到0.65)超过弹性极限桥梁。这项研究的结果为考虑修订0.6 g阈值提供了技术基础。

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  • 来源
    《Earthquake spectra》 |2010年第4期|p.999-1016|共18页
  • 作者单位

    Middle East Technical University, Civil Engineering Department, Kl-308, Ankara, Turkey, 06531;

    rnPacific Gas & Electric Company, Geosciences Department, 245 Market St., San Francisco, CA 94105;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:33:27

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