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Simulation of support settlement and cable slippage by using a long-span suspension bridge testbed

机译:大跨度悬索桥试验台模拟支护沉降和电缆滑移

摘要

Support settlement and cable slippage of a long-span suspension bridge may occur when it is subjected to extreme events. The evaluation of effects of support settlement and cable slippage on the remaining capacity then becomes important before making a retrofitting decision. However, it is difficult to conduct such an evaluation on the prototype bridge. This paper therefore presents experimental and numerical studies to examine the effects of support settlement and cable slippage on the structural performance of a long-span suspension bridge through a testbed, which include a laboratory-based model and an updated finite-element (FE) model. Four support settlement cases are experimentally studied with two on anchorage settlements and two on tower settlements. Main cable slippage at the top of towers is then investigated experimentally in two opposite directions. Both support settlement cases and cable slippage cases are also simulated using the corresponding FE model, and results are compared with those from the tests. Finally, numerical studies are conducted to investigate cable slippage caused by large support settlement. The results show that the experimental and numerical simulation using the testbed is an effective way to assess the effects of support settlement and cable slippage on long-span suspension bridges.
机译:大跨度悬索桥在遭受极端事件时可能会发生支撑沉降和电缆滑移。因此,在做出翻新决定之前,评估支撑沉降和电缆滑移对剩余容量的影响就变得很重要。但是,很难在原型桥上进行这种评估。因此,本文提出了实验和数值研究,以通过试验台检查支撑沉降和缆索滑移对大跨度悬索桥结构性能的影响,其中包括基于实验室的模型和更新的有限元(FE)模型。通过实验研究了四个支撑沉降案例,其中两个涉及锚固沉降,另外两个涉及塔式沉降。然后在两个相反的方向上通过实验研究了塔架顶部的主电缆滑移。支撑沉降案例和电缆滑移案例也都使用相应的有限元模型进行了仿真,并将结果与​​测试结果进行了比较。最后,进行了数值研究来研究由于大支撑沉降引起的电缆滑移。结果表明,利用试验台进行的实验和数值模拟是评估支撑沉降和缆索滑移对大跨度悬索桥影响的有效方法。

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