Dynamic Response and Progressive Collapse of a Long-Span Suspension Bridge Induced by Suspender Loss

Динамический отклик и прогрессирующее обрушение длиннопролётного подвесного моста, вызванные потерей строп
Sherif El‐Tawil, Hongfan Wang, Qian Chen, Anil K. Agrawal, Baidurya Bhattacharya, Waider Wong
2022-04-15

dynamic responselong-span suspension bridgeprogressive collapsesequential vs simultaneous removalsuspender loss
Although long-span suspension bridges play a vital role in the transportation infrastructure, their resistance to disproportionate collapse resulting from locally induced damage has not yet been adequately investigated. In this study, computational simulation is used to shed light on how a prototype long-span suspension bridge responds to sudden loss of suspenders. Several scenarios were considered, with a focus on the total number of suspenders lost, their locations, and mode of removal. An increasing number of suspenders were removed either sequentially (i.e., one at a time) or simultaneously (i.e., multiple suspenders removed at the same time) until progressive collapse of the bridge was triggered. The simulation results showed that the bridge exhibited increasing levels of damage as the number of removed suspenders increased, and that the most critical location for suspender removal was near the middle of the bridge. It is shown that the sequential loss of a group of suspenders led to bridge responses that are almost identical with the simultaneous loss of the same group of suspenders. It is also argued that suspension bridges like the prototype system under consideration are highly robust.
1
Computational simulation of a prototype long-span suspension bridge under sudden suspender loss was performed to study dynamic response and progressive collapse.
2
Increasing the number of removed suspenders produced increasing levels of damage and eventually triggered progressive collapse.
3
Removal of suspenders near the midspan is the most critical location for inducing damage and collapse.
4
Sequential removal of a group of suspenders produces bridge responses almost identical to simultaneous removal of the same group.
5
The studied prototype suspension bridge is argued to be highly robust against suspender loss.

Prototype long-span suspension bridge subjected to sudden loss/removal of hangers (suspenders)

Dynamic response and progressive collapse behavior as a function of number, location, and mode (sequential vs simultaneous) of suspender loss, including damage progression and robustness

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Publication Date
2022-04-15
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Authors
Sherif El‐Tawil
Hongfan Wang
Qian Chen
Anil K. Agrawal
Baidurya Bhattacharya
Waider Wong
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