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Wireless monitoring of scour and re-deposited sediment evolution at bridge foundations based on soil electromagnetic properties

机译:基于土壤电磁特性的桥梁基础冲刷和沉积沉积物演变的无线监测

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Hydraulic structures constitute the most vulnerable elements of transportation infrastructure. Recent increases in precipitation have resulted in severe and more frequent flash flooding incidents. This has put bridges over waterways at higher risk of failure due to scour. This study presents a new sensor for measuring scour depth variation and sediment deposition processes in the vicinity of the foundations to underpin systems for early warning of impending structural failure. The monitoring system consists of a probe with integrated electromagnetic sensors designed to detect changes in the dielectric permittivity of the surrounding bridge foundation. The probe is equipped with a wireless interface and was evaluated to assess its ability to detect scour and sediment deposition in various soil types and under temperature and water salinity conditions that would commonly occur in a practical installation environment. A novel methodology is also developed enabling discrimination between in situ and re-deposited sediment delivering vital information about the load bearing capacity of the foundation. The experimental approach was validated using 'static' scour simulations and real-time open channel flume experiments. Results indicate that the sensor is highly sensitive to underwater bed level variations and can provide an economical and accurate structural health monitoring alternative to existing instruments.
机译:水力建筑是运输基础设施中最脆弱的部分。最近的降水增加导致了严重和频繁的山洪泛滥事件。这使水道上的桥梁因冲刷而更有可能发生故障。这项研究提出了一种新的传感器,用于测量地基附近冲刷深度的变化和沉积物的沉积过程,以支撑系统,以预警即将发生的结构破坏。监控系统由带有集​​成电磁传感器的探头组成,该传感器设计用于检测周围桥梁基础的介电常数的变化。该探头配有无线接口,并经过评估以评估其检测各种土壤类型以及在实际安装环境中通常会发生的温度和水盐度条件下的冲刷和沉积物沉积的能力。还开发了一种新颖的方法,可区分原位沉积物和再沉积沉积物,从而提供有关基础承载能力的重要信息。实验方法通过“静态”冲刷模拟和实时明渠水槽实验进行了验证。结果表明该传感器对水下床位变化高度敏感,可以提供一种经济,准确的结构健康监测替代现有仪器的方法。

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