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Laboratory Evaluation of Time-Domain Reflectometry for Bridge Scour Measurement: Comparison with the Ultrasonic Method

机译:用于桥梁冲刷测量时域反射测量测量的实验室评估:与超声波法的比较

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摘要

Bridge scour is a major factor causing instability of bridges crossing waterways. Excessive scour contributes to their high construction and maintenance costs. Design of innovative scour-monitoring instrumentation is essential to ensure the safety of scour-critical bridges. The ability of real-time surveillance is important since the most severe scour typically happens near the peak flood discharge. A new scour-monitoring instrument based on the Time Domain Reflectometry (TDR) principle has been developed to provide real-time monitoring of scour evolution. A framework based on dielectric mixing model has been developed, which can be easily incorporated into an automatic analysis algorithm. This paper introduces a comparative study of TDR method and ultrasonic method for scour measurements. The results indicate that both TDR and ultrasonic methods can accurately estimate scour depth. TDR method, with the developed analysis algorithm, yields information on the river properties such as the electrical conductivity of river water and the density of sediments. TDR methods are also found less influenced by turbulence and air bubbles, both likely to occur during flood events.
机译:桥梁冲刷是一种主要因素,导致桥梁横穿水道的不稳定。过度的冲刷有助于他们的高建和维护成本。创新的冲压监测仪器设计对于确保酷刑桥梁的安全至关重要。实时监测的能力是重要的,因为最严重的冲刷通常在洪水排放峰值溢流附近发生。已经开发了一种基于时域反射仪(TDR)原则的新的冲压监测仪器,以提供对冲刷演进的实时监测。已经开发了一种基于介质混合模型的框架,可以容易地结合到自动分析算法中。本文介绍了TDR方法的比较研究及防刷测量超声波方法。结果表明,TDR和超声波方法都可以准确估计冲刷深度。随着开发的分析算法的TDR方法,产生关于河水的河流性能的信息和河水的电导率和沉积物的密度。 TDR方法也发现湍流和气泡的影响较小,两者都可能发生在洪水事件期间。

著录项

  • 作者

    Xinbao Yu; Xiong Yu;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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