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Accounting for steel rebar effect on resistivity profiles in view of reinforced concrete structure survey

机译:考虑到钢筋混凝土结构调查,考虑了钢筋对电阻率分布的影响

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Concrete is well known for its durability. However, it is exposed to aggressive agents, such as water and chlorides, leading to its degradation. The DC-electrical resistivity method is a technique devoted to non-destructive evaluation (NDE). However, when applying this measurement technique to reinforced concrete structures, the measurements may be highly influenced by the presence of reinforcement. To study the influence of reinforcements and estimate the impact of their effect on resistivity measurements on concrete, we model their contribution by finite element numerical analysis. Electrical measurements in reinforced and unreinforced concrete slabs were modelled and actual experimental measurements were used. This article presents the numerical study results that are compared to the experimental data for validation purposes. By validating the presented approach, it will be possible to fully account for the effect of the reinforcements, as an alternative to measurement strategies that aim at minimizing the disturbance due to reinforcements. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混凝土以其耐用性而闻名。但是,它会暴露于侵蚀剂(例如水和氯化物)中,从而导致其降解。直流电阻率法是专门用于无损评估(NDE)的技术。但是,将这种测量技术应用于钢筋混凝土结构时,钢筋的存在可能会严重影响测量结果。为了研究钢筋的影响并估计其对混凝土电阻率测量的影响,我们通过有限元数值分析对它们的作用进行建模。对钢筋混凝土板和非钢筋混凝土板的电气测量进行建模,并使用实际的实验测量。本文介绍了数值研究结果,并将其与实验数据进行比较以进行验证。通过验证提出的方法,有可能充分考虑到钢筋的影响,作为旨在最小化钢筋造成的干扰的测量策略的替代方案。 (C)2019 Elsevier Ltd.保留所有权利。

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