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Chlorides and moisture assessment in concrete by GPR full waveform inversion

机译:通过GPR全波形反演评估混凝土中的氯化物和水分

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Corrosion of rebar within reinforced concrete is a major problem for countries where salt is applied to roads for de-icing. Concrete structures are periodically inspected in order to monitor possible damage caused by chloride-induced corrosion of the reinforcement. However, the available drilling and visual inspections do not supply sufficient spatial information or can only be assessed in advanced stages of corrosion, respectively. Consequently, the condition of bridge decks can only be assessed with low certainty. Therefore, a spatially continuous and non-destructive method detecting chloride in concrete structures is desirable. This paper describes a novel method to estimate material properties using the full-waveform inversion of bistatic off-ground ground penetrating radar data. In this way, all information present in the ground-penetrating radar (GPR) traces is used, which enables the estimation of quantitative electromagnetic properties. A critical step for full-waveform inversion is a proper characterization of our horn antenna GPR system by estimating the phase centre and the effective wavelet using measurements over a stainless steel plate. The inversion of GPR data measured over nine concrete specimens having different moisture and chloride contents returned a relative dielectric permittivity and a conductivity that included a frequency-dependent component. As expected, the inversion results for almost all specimens showed for increasing chloride and humidity content specimens increasing conductivity and permittivity values, respectively. In contrast to traditional ray-based techniques we were able to distinguish between moisture and chloride effects and to obtain quantitative values for the permittivity and conductivity. For increasing chloride content increasing frequency-dependent conductivity values were obtained.
机译:钢筋混凝土中钢筋的腐蚀对于将盐用于除冰道路的国家来说是一个主要问题。定期检查混凝土结构,以监测由氯化物引起的钢筋腐蚀所造成的损坏。但是,可用的钻孔和视觉检查不能提供足够的空间信息,或者只能分别在腐蚀的晚期进行评估。因此,只能以低确定性评估桥面板的状况。因此,需要一种在空间上连续且无损检测混凝土结构中氯化物的方法。本文介绍了一种利用双基地离地穿透雷达数据的全波形反演估算材料特性的新方法。这样,就可以使用探地雷达(GPR)迹线中存在的所有信息,从而可以估算定量的电磁特性。全波形求逆的关键步骤是使用不锈钢板上的测量值估算相位中心和有效小波,从而正确表征我们的喇叭天线GPR系统。对9个水分和氯化物含量不同的混凝土样品进行的GPR数据反演返回了相对介电常数和电导率,其中包括随频率变化的分量。正如预期的那样,几乎所有样品的反演结果都表明氯化物和湿度含量样品的电导率和介电常数值分别增加。与传统的基于射线的技术相比,我们能够区分水分和氯化物效应,并获得介电常数和电导率的定量值。为了增加氯化物含量,获得了随频率变化的电导率值。

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