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Ground penetrating radar applied to rebar corrosion inspection

机译:探地雷达应用于钢筋腐蚀检查

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摘要

In this paper we investigate the use of ground penetrating radar (GPR) to detect corrosion-induced thinning of rebar in concrete bridge structures. We consider a simple pulse/echo amplitude-based inspection, positing that the backscattered response from a thinned rebar will be smaller than the similar response from a fully-intact rebar. Using a commercial 1600-MHz GPR system we demonstrate that, for laboratory specimens, backscattered amplitude measurements can detect a thinning loss of 50% in rebar diameter over a short length. GPR inspections on a highway bridge then identify several rebar with unexpectedly low amplitudes, possibly signaling thinning. To field a practical amplitude-based system for detecting thinned rebar, one must be able to quantify and assess the many factors that can potentially contribute to GPR signal amplitude variations. These include variability arising from the rebar itself (e.g., thinning) and from other factors (concrete properties, antenna orientation and liftoff, etc.). We report on early efforts to model the GPR instrument and the inspection process so as to assess such variability and to optimize inspections. This includes efforts to map the antenna radiation pattern, to predict how backscattered responses will vary with rebar size and location, and to assess detectability improvements via synthetic aperture focusing techniques (SAFT).
机译:在本文中,我们研究了探地雷达(GPR)在混凝土桥梁结构中检测钢筋引起的钢筋变薄的问题。我们考虑基于脉冲/回波振幅的简单检查,因为薄的钢筋的反向散射响应将小于完全完整的钢筋的类似响应。使用商业的1600-MHz GPR系统,我们证明,对于实验室样品,反向散射振幅测量可以在短时间内检测出钢筋直径的50%的细化损失。然后,对公路桥梁的GPR检查会发现几条振幅异常低的钢筋,这可能表示信号变薄。为了部署一种实用的基于振幅的系统来检测变薄的钢筋,必须能够量化和评估许多可能导致GPR信号振幅变化的因素。这些包括由于钢筋本身(例如变薄)和其他因素(混凝土的特性,天线方向和升起等)引起的可变性。我们报告了为GPR仪器和检查过程建模的早期工作,以便评估这种可变性并优化检查。这包括绘制天线辐射方向图,预测反向散射响应随钢筋尺寸和位置的变化以及通过合成孔径聚焦技术(SAFT)评估可检测性改进的工作。

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