首页> 外文期刊>Engineering Structures >Sensitivity of the response of Box-Girder Seat-type bridges to the duration of ground motions arising from crustal and subduction earthquakes
【24h】

Sensitivity of the response of Box-Girder Seat-type bridges to the duration of ground motions arising from crustal and subduction earthquakes

机译:箱梁座椅型桥梁响应对地壳和俯冲地震引起的地面运动持续时间的敏感性

获取原文
获取原文并翻译 | 示例

摘要

The design practice of Box-Girder Seat-Type (BGST) bridges in the Western U.S. is continuously evolving based on the results of advanced modeling and analysis techniques. This is mainly to help engineers and researchers to better understand the behavior of BGST bridges during seismic excitations. Within this backdrop, this study fills the gaps in the current knowledge of assessing the combined effect of strong motion duration and spectral shape on the response of bridges using a comprehensive set of numerical simulations and statistical analyses. Three- dimensional finite element models of two real BGST bridges are analyzed using a large set of ground motions obtained from crustal sources and subduction sources. By means of Step-wise regression- and other statistical procedures- the sensitivity of bridge response parameters to various ground motion parameters including Arias Intensity (I-a), RotD50 spectral acceleration at the bridge's first natural period (S-a (T-1)), Significant Duration (D5-95), mid-frequency (f), the derivative of the mid-frequency (f') and time at 30% of cumulated Arias Intensity (t(mid) ) are evaluated. Results indicate that in the case of ground motions arising from shallow crustal sources, I-a and S-a (T-1) are the best predictors of the bridge response, and strong motion duration (D5-95) has no statistically meaningful impact on the response of bridges. However, it is observed that the D5-95 of the ground motions ascending from the subduction sources highly affects the bridge response; utilizing D5-95 alongside S-a(T-1), or I-a, can significantly increase the accuracy of bridge response estimates. Hence, it is concluded that D5-95 is not an important ground motion intensity measure for ground motion selection for bridges located in areas with crustal earthquakes. In contrast, D5-95 is important in subduction zone ground motions and must be given proper consideration in the design and analysis of BGST bridges.
机译:西方西部箱梁座型(BGST)桥梁的设计实践是基于先进建模和分析技术的结果不断发展。这主要是为了帮助工程师和研究人员更好地了解地震激励期间BGST桥梁的行为。在此背景中,本研究填补了当前知识中的差距,这些差距评估了使用全面的数值模拟和统计分析的桥梁对桥梁响应的综合作用。使用从地壳源和俯冲源获得的大量地面运动来分析两个真实BGST桥的三维有限元模型。通过逐步回归和其他统计程序 - 桥梁响应参数对各种地面运动参数的敏感性,包括Arias强度(IA),桥梁的第一个自然周期(SA(T-1)),重大持续时间(D5-95),中频(F),中频(F')的导数和30%的累积arias强度(t(中间))的时间。结果表明,在从浅地壳源产生的地面运动的情况下,IA和SA(T-1)是桥梁响应的最佳预测因子,强烈的运动持续时间(D5-95)对响应没有统计学意义的影响桥梁。然而,观察到从俯冲源上升的地面运动的D5-95高度影响桥梁响应;利用D5-95沿S-A(T-1)或I-A旁,可以显着提高桥梁响应估计的准确性。因此,得出结论,D5-95不是位于地壳地震区域的桥梁地面运动选择的重要地面运动强度措施。相比之下,D5-95在俯冲区地面运动中很重要,必须在BGST桥的设计和分析中进行适当考虑。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号