首页> 外文期刊>Journal of bridge engineering >Residual Capacity of Mainshock-Damaged Precast-Bonded Prestressed Segmental Bridge Deck under Vertical Earthquake Ground Motions
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Residual Capacity of Mainshock-Damaged Precast-Bonded Prestressed Segmental Bridge Deck under Vertical Earthquake Ground Motions

机译:竖向地震作用下主震损伤预制粘结预应力节段桥板的残余承载力

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摘要

Although the use of segmental bridge decks has increased around the world, their use in seismic regions under vertical earthquake motions is yet to be fully understood. The asymmetric behavior of segment joints under vertical motions as well as the low strain ductility of cables passing through the joints raise questions on postearthquake performance of decks following a disastrous earthquake and during aftershocks. Because strong aftershocks can expedite the collapse of structures damaged in the mainshock, assessing the residual capacity of mainshock-damaged bridges becomes important with regard to postearthquake performance. In the current research, two medium- and long-span case study bridges were investigated to study the residual capacity of bridges of such type. To this end, a two-dimensional model for segment joints was developed and verified via experimental results. The results related to nonlinear time-history analysis under the design earthquakes showed that midspan segment joints were bound to suffer spalling concretes at the bottom and yielding tendons at the top. The findings revealed that the residual capacity of the mainshock-damaged bridges decreases with the increase in the damage level caused by mainshock, yet not more than 50% in comparison to the intact bridge, even at the worst damage level.
机译:尽管分段桥面板的使用在世界范围内已经增加,但是在垂直地震运动下在地震区域中的使用尚待充分了解。分段接头在垂直运动下的不对称行为,以及穿过接头的电缆的低应变延展性引发了人们对地震后和余震期间甲板地震后性能的质疑。由于强烈的余震会加速主震中受损结构的倒塌,因此,评估受主震破坏的桥梁的剩余承载力对于地震后的性能至关重要。在当前的研究中,研究了两座中跨和跨大案例的桥梁,以研究此类桥梁的剩余承载力。为此,开发了节段连接的二维模型并通过实验结果进行了验证。与设计地震下的非线性时程分析有关的结果表明,中跨节理节点必然在底部遭受散裂混凝土,在顶部遭受屈服。研究结果表明,受主震破坏的桥梁的剩余承载力随主震引起的破坏程度的增加而降低,即使在最坏的破坏程度下,与完整的桥梁相比,其剩余容量也不会超过50%。

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