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Targeted deployment of scour monitoring sensors for at-risk bridges

机译:面向危险桥梁的冲刷监控传感器的目标部署

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This paper presents a methodology on prioritizing deployment of scour sensors at high-risk bridges using a holistic approach. Specifically, stream geomorphic data, bridge design information, and bridge scour ratings are used to intelligently identify and prioritize bridge sites for remote scour monitoring. Scour is the leading cause of bridge failure, with 309 bridges in the State of Vermont rated as scour critical. Using Vermont as a case study, this work looks to correlate bridge structural design data with hydraulic and stream geomorphic information to identify bridges at high risk of scour processes, and specifically for bridges more structurally susceptible to scour damage. Including additional stream and hydraulic indicators in the analysis, rather than relying on structural evaluations alone, enables areas of geomorphic instability to be identified; and bridges in these areas can be outfitted with scour monitoring devices. Low-cost monitoring devices are proposed to monitor at-risk bridges and to provide additional information in scour-prone areas. A sensor under development would allow for direct installment into stream beds at existing bridges, and incorporate accelerometer-based monitoring, with wireless data transmission. The device would allow for real-time measurement of streambed degradation and aggradation during high flow events, thereby providing timely information regarding critical scour events. This work aims to aid State transportation engineers in identifying, which bridges in the transportation network are at risk, of scour processes, provides useful insight into scour rating systems, and assesses the value of the geomorphic assessments to improve our existing bridge rating system. The compilation of results from geomorphic assessments, scour ratings, and bridge design information will be presented.
机译:本文提出了一种使用整体方法来优先确定在高风险桥梁处冲刷传感器部署的方法。具体而言,使用流地貌数据,桥梁设计信息和桥梁冲刷等级来智能识别桥梁站点并确定优先级,以进行远程冲刷监控。冲刷是桥梁故障的主要原因,佛蒙特州的309座桥梁被评为冲刷关键。这项工作以佛蒙特州为例,旨在将桥梁结构设计数据与水力和河流地貌信息相关联,以识别出冲刷过程的高风险桥梁,特别是对于结构上更容易受到冲刷破坏影响的桥梁。在分析中包括附加的水流和水力指标,而不是仅仅依靠结构评估,就可以识别出地貌不稳定区域;这些区域的桥梁可以配备冲刷监控设备。建议使用低成本的监视设备来监视高风险桥梁,并在易冲刷的地区提供其他信息。正在开发的传感器将允许直接安装到现有桥梁的河床中,并结合基于加速度计的监控和无线数据传输。该设备将允许在高流量事件期间实时测量流化床的降解和凝结,从而提供有关关键冲刷事件的及时信息。这项工作旨在帮助国家运输工程师确定交通网络中哪些桥梁受到冲刷过程的威胁,为冲刷评级系统提供有用的见解,并评估地貌评估的价值,以改善我们现有的桥梁评级系统。将介绍地貌评估,冲刷等级和桥梁设计信息的结果汇编。

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