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Response of under-deck cable-stayed bridges to the accidental breakage of stay cables

机译:甲板下斜拉桥对斜拉索意外断裂的响应

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Under-deck cable-stayed bridges with prestressed concrete decks have recently been shown to be appropriate structural types for highway overpasses. However, doubts have emerged regarding their capability to withstand the accidental breakage of stay cables, due to collisions with heavy vehicles, without collapsing. In this paper, two distinct parametric analyses are conducted on two different bridges, each of which is representative of this bridge type, in order to study their response due to the breakage of stay cables. The response is assessed through fully dynamic analyses, rather than pseudo-dynamic analysis (via the use of dynamic amplification factors), since the latter method has been shown to be un-conservative in some cases. In both parametric analyses different scenarios, i.e., different parameters, relating to the type of breakage, the time over which breakage occurs, the number of broken stay cables, the type of deviators and the amount of applied traffic live load are considered. In the present study, the capability of this bridge type to easily overcome this accidental action, with a higher degree of safety than that required by codes, is clearly demonstrated. In fact, the analysed bridges do not reach any ultimate limit-state even if 40% of their stay cables are suddenly broken when 100% of the traffic live load is applied. In addition, a set of design criteria closely related with this issue are established.
机译:最近已经显示,带有预应力混凝土甲板的桥下斜拉桥是公路立交桥的合适结构类型。然而,对于它们承受由于与重型车辆相撞而不会塌陷而造成的拉索意外断裂的能力,已经出现了疑问。在本文中,对两个不同的桥梁进行了两个截然不同的参数分析,每个桥梁都代表了这种桥梁类型,以研究由于斜拉索断裂而引起的响应。通过完全动态分析而不是伪动态分析(通过使用动态放大因子)来评估响应,因为在某些情况下,后一种方法被证明是不保守的。在这两种参数分析中,都考虑了与破损类型,破损发生的时间,拉索的断裂数量,转向器的类型以及所施加的交通活动负荷的数量有关的不同场景,即不同的参数。在目前的研究中,这种桥型具有轻松克服这种意外作用的能力,并具有比法规要求更高的安全性。实际上,即使在施加100%的交通活动负荷时,即使所分析的桥梁的40%的支撑缆突然断裂,也不会达到任何极限状态。此外,建立了与此问题密切相关的一组设计标准。

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