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首页> 外文期刊>Journal of bridge engineering >Determining the Presence of Scour around Bridge Foundations Using Vehicle-Induced Vibrations
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Determining the Presence of Scour around Bridge Foundations Using Vehicle-Induced Vibrations

机译:使用车辆振动确定桥梁基础周围的冲刷状态

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摘要

Bridge scour is the number one cause of failure in bridges located over waterways. Scour leads to rapid losses in foundation stiffness and can cause sudden collapse. Previous research on bridge health monitoring has used changes in natural frequency to identify damage in bridge beams. The possibility of using a similar approach to identifying scour is investigated in this paper. To assess if this approach is feasible, it is necessary to establish how scour affects the natural frequency of a bridge, and if it is possible to measure changes in frequency using the bridge dynamic response to a passing vehicle. To address these questions, a novel vehicle-bridge-soil interaction (VBSI) model was developed. By carrying out a modal study in this model, it is shown that for a wide range of possible soil states, there is a clear reduction in the natural frequency of the first mode of the bridge with scour. Moreover, it is shown that the response signals on the bridge from vehicular loading are sufficient to allow these changes in frequency to be detected. (C) 2016 American Society of Civil Engineers.
机译:冲水是造成水道上桥梁失效的第一大原因。冲刷会导致基础刚度快速损失,并可能导致突然坍塌。先前对桥梁健康监测的研究已使用固有频率的变化来识别桥梁梁的损伤。本文研究了使用类似方法识别冲刷的可能性。为了评估这种方法是否可行,有必要确定冲刷如何影响桥梁的固有频率,以及是否有可能利用桥梁对经过车辆的动态响应来测量频率变化。为了解决这些问题,开发了一种新颖的车桥-土壤相互作用(VBSI)模型。通过对该模型进行模态研究,结果表明,对于各种可能的土壤状态,带冲刷作用的桥梁的第一模态的固有频率明显降低。而且,示出了来自车辆负载的桥上的响应信号足以允许检测这些频率变化。 (C)2016年美国土木工程师学会。

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