基于探地雷达的RC桥面劣化评估

M. Alsharqawi, T. Zayed, A. Shami
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引用次数: 6

摘要

2013年ASCE报告卡将桥梁评为C+级,这意味着它们的状况是中等的,需要立即关注。此外,联邦公路管理局报告称,为了在2028年之前消除桥梁不足的积压,每年需要投资205亿美元以上。在2012年的加拿大,超过50%的桥梁属于一般、较差和非常差的类别,这些桥梁需要900多亿美元来更换这些桥梁。因此,政府机构应该有一个准确的方法来检查和评估其管理下的桥梁的腐蚀性。数值振幅法是解释探地雷达(GPR)输出最常用的方法之一,但它没有一个固定的和信息丰富的数值尺度,能够准确地解释桥面状况。为了解决这一问题,本研究旨在建立基于gpr的三阈值数值尺度,并建立退化模型来评估桥面腐蚀。60多个不同桥面的数据是从以前的研究工作和使用频率为1.5 GHz的地面耦合天线对桥面进行的调查中收集的。采用k-均值聚类方法,将各桥面上部钢筋的幅值分为4类。对收集到的数据进行统计分析,以检验最适合的概率分布,并选择最合适的参数来影响不同类别的腐蚀和劣化阈值。使用蒙特卡罗模拟技术验证这些阈值的值。此外,还进行了灵敏度分析,以了解阈值变化对腐蚀区域的影响。本研究的最终结果是一个具有数值阈值的四类探地雷达量表,可以评估桥面腐蚀性。开发的比例尺已通过对新建桥面的案例研究以及使用开发的比例尺和其他方法创建的地图进行比较来验证。对比显示了良好和有希望的结果,推动了探地雷达输出解释和分析的最新技术。此外,基于探地雷达输出和腐蚀区域,利用威布尔分布建立了腐蚀模型和曲线。建立的新型探地雷达尺度和腐蚀模型有助于决策者准确、客观地评价桥面腐蚀状况。因此,他们将能够采取正确的干预决策来管理这些甲板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ground penetrating radar-based deterioration assessment of RC bridge decks
The ASCE report card 2013 rated bridges at a grade of C+, implying their condition is moderate and require immediate attention. Moreover, the Federal Highway Administration reported that it is required to invest more than $20.5 billion each year to eliminate the bridge deficient backlog by 2028. In Canada 2012, more than 50% of bridges fall under fair, poor, and very poor categories, where more than $90 billion are required to replace these bridges. Therefore, government agencies should have an accurate way to inspect and assess the corrosiveness of the bridges under their management. Numerical Amplitude method is one of the most common used methods to interpret Ground Penetrating Radar (GPR) outputs, yet it does not have a fixed and informative numerical scale that is capable of accurately interpreting the condition of bridge decks. To overcome such problem, the present research aims at developing a numerical GPR-based scale with three thresholds and build deterioration models to assess the corrosiveness of bridge decks. Data, for more than 60 different bridge decks, were collected from previous research works and from surveys of bridge decks using a ground-coupled antenna with the frequency of 1.5 GHz. The amplitude values of top reinforcing rebars of each bridge deck were classified into four categories using k-means clustering technique. Statistical analysis was performed on the collected data to check the best-fit probability distribution and to choose the most appropriate parameters that affect thresholds of different categories of corrosion and deterioration. Monte-Carlo simulation technique was used to validate the value of these thresholds. Moreover, a sensitivity analysis was performed to realize the effect of changing the thresholds on the areas of corrosion. The final result of this research is a four-category GPR scale with numerical thresholds that can assess the corrosiveness of bridge decks. The developed scale has been validated using a case study on a newly constructed bridge deck and also by comparing maps created using the developed scale and other methods. The comparison shows sound and promising results that advance the state of the art of GPR output interpretation and analysis. In addition, deterioration models and curves have been developed using Weibull Distribution based on GPR outputs and corrosion areas. The developed new GPR scale and deterioration models will help the decision makers to assess accurately and objectively the corrosiveness of bridge decks. Hence, they will be able to take the right intervention decision for managing these decks.
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