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首页> 外文期刊>Journal of bridge engineering >Structural Robustness of Long-Span Cable-Supported Bridges in a Cable-Loss Scenario
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Structural Robustness of Long-Span Cable-Supported Bridges in a Cable-Loss Scenario

机译:电缆丢失情况下大跨度斜拉桥的结构稳健性

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This study concerns the structural behavior of long-span cable-supported bridges after the sudden rupture of a cable. The load carried by the failed cable must be redistributed to the remaining structure. The cable adjacent to the failed cable receives most of the redistributed load and becomes the critical member. The aim of this study is to find the stress increase ratio of this member. To do this, an analytical approach based on differential equations of the system is used. Then, an approximation function for a simplified bridge model in a cable-loss scenario is derived. The least-squares method is also used to minimize the error of the approximation function. The proposed approximation function has been checked by numerical models, and its accuracy has been proven. The results show that due to increases in the ratio of the bending stiffness of the girder to the axial stiffness of the cables, the stress increase ratio of the critical cable decreases. (c) 2017 American Society of Civil Engineers.
机译:这项研究涉及电缆突然断裂后大跨度斜拉桥的结构特性。发生故障的电缆所承受的负载必须重新分配给其余结构。与故障电缆相邻的电缆将承受大部分重新分配的负载,并成为关键成员。这项研究的目的是找到该构件的应力增加率。为此,使用了基于系统微分方程的分析方法。然后,推导了电缆损耗情况下简化桥模型的近似函数。最小二乘法也用于最小化逼近函数的误差。所提出的近似函数已通过数值模型进行了检验,其准确性已得到证明。结果表明,由于梁的抗弯刚度与电缆轴向刚度的比值增加,临界电缆的应力增加率降低。 (c)2017年美国土木工程师学会。

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