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Safety Identifying of Integral Abutment Bridges under Seismic and Thermal Loads

机译:地震和热荷载作用下整体式桥台的安全识别

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摘要

Integral abutment bridges (IABs) have many advantages over conventional bridges in terms of strength and maintenance cost. Due to the integrity of these structures uniform thermal and seismic loads are known important ones on the structure performance. Although all bridge design codes consider temperature and earthquake loads separately in their load combinations for conventional bridges, the thermal load is an “always on” load and, during the occurrence of an earthquake, these two important loads act on bridge simultaneously. Evaluating the safety level of IABs under combination of these loads becomes important. In this paper, the safety of IABs—designed by AASHTO LRFD bridge design code—under combination of thermal and seismic loads is studied. To fulfill this aim, first the target reliability indexes under seismic load have been calculated. Then, these analyses for the same bridge under combination of thermal and seismic loads have been repeated and the obtained reliability indexes are compared with target indexes. It is shown that, for an IAB designed by AASHTO LRFD, the indexes have been reduced under combined effects. So, the target level of safety during its design life is not provided and the code's load combination should be changed.
机译:就强度和维护成本而言,整体式桥墩(IAB)与传统桥墩相比具有许多优势。由于这些结构的完整性,已知均匀的热负荷和地震负荷是影响结构性能的重要因素。尽管所有桥梁设计规范在常规桥梁的荷载组合中都分别考虑了温度和地震荷载,但热荷载是“永远在线”的荷载,在地震发生期间,这两个重要荷载同时作用在桥梁上。评估这些负载组合下的IAB的安全级别非常重要。本文研究了由AASHTO LRFD桥梁设计规范设计的IAB在热和地震荷载作用下的安全性。为了达到这个目的,首先计算了地震载荷下的目标可靠性指标。然后,对相同桥在热和地震荷载作用下的分析进行了重复,并将获得的可靠性指标与目标指标进行了比较。结果表明,对于由AASHTO LRFD设计的IAB,在组合作用下,索引已降低。因此,没有提供设计生命周期内的目标安全级别,并且应该更改代码的负载组合。

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  • 期刊名称 other
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  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 757608
  • 总页数 12
  • 原文格式 PDF
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