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Design and validation of a multi-electrode embedded sensor to monitor resistivity profiles over depth in concrete

机译:设计和验证多电极嵌入式传感器以监测混凝土深度范围内的电阻率曲线

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摘要

Electrical resistivity is sensitive to various properties of concrete, such as water content. Usually used on the surface of old structures, devices for measuring such properties could also be adapted in order to be embedded inside the constitutive concrete of the linings of new tunnels or in new bridges, to contribute to structural health monitoring. This paper introduces a novel multi-electrode embedded sensor for monitoring the resistivity profile over depth in order to quantify concrete durability. The paper focuses on the design of the sensor as a printed circuit board (PCB), which brings several advantages, including geometric accuracy and mitigation of wiring issues, thus reducing invasiveness. The study also presents the numerical modeling of the sensor electrical response and its ability to assess an imposed resistivity profile, together with experimental validations using (i) saline solutions of known conductivity and (ii) concrete specimens subjected to drying. The results demonstrate the capability of the sensor to evaluate resistivity profiles in concrete with centimeter resolution. (C) 2019 Elsevier Ltd. All rights reserved.
机译:电阻率对混凝土的各种特性(例如水含量)敏感。通常在旧结构的表面上使用,用于测量此类特性的设备也可以进行适配,以便嵌入新隧道衬砌的本构混凝土内部或新桥梁中,从而有助于结构健康监测。本文介绍了一种新型的多电极嵌入式传感器,用于监测深度范围内的电阻率曲线,以便量化混凝土的耐久性。本文着重于传感器设计为印刷电路板(PCB)的设计,它带来了多个优势,包括几何精度和接线问题的缓解,从而降低了侵入性。该研究还提出了传感器电响应的数值模型及其评估施加的电阻率曲线的能力,以及使用(i)已知电导率的盐溶液和(ii)干燥的混凝土样品进行的实验验证。结果表明该传感器能够以厘米分辨率评估混凝土的电阻率曲线。 (C)2019 Elsevier Ltd.保留所有权利。

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