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Monitoring of the absolute water content in porous materials based on embedded humidity sensors

机译:基于嵌入式湿度传感器监测多孔材料中的绝对水含量

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Moisture transport monitoring may indicate the onset of deterioration in porous building materials prior to damage occurring. Most moisture measurement systems provide only qualitative values, require extensive calibration, or are destructive. Thus, non-destructive and calibration-free monitoring systems are required. Our approach of moisture monitoring is to embed sensors that measure the relative humidity. In our experiment, screed samples are monitored during the hydration and evaporation process. Every test sample is equipped with 10 embedded sensors which measure the relative humidity across the sample thickness. Based on Hillerborg's approach, the relative humidity is converted into the corresponding pore saturation. In our study, the free water is computed without knowledge of the sorption isotherm. The free water in the pore system is predicted and validated. The predicted weight decrease corresponds conclusively to gravimetrically measured weights. The embedded sensors yield the absolute liquid water content and enable an experimental, non-destructive monitoring of liquid water in porous materials. (C) 2018 Elsevier Ltd. All rights reserved.
机译:水分运输监测可能表明多孔建筑材料在损坏发生之前开始变质。大多数水分测量系统仅提供定性值,需要大量校准,或者具有破坏性。因此,需要非破坏性且无需校准的监测系统。我们的湿度监测方法是嵌入可测量相对湿度的传感器。在我们的实验中,在水化和蒸发过程中对熨平板样品进行监控。每个测试样品都配有10个嵌入式传感器,可测量整个样品厚度上的相对湿度。基于希勒堡的方法,相对湿度被转换为相应的孔隙饱和度。在我们的研究中,自由水是在不知道吸附等温线的情况下计算的。孔隙系统中的游离水得到预测和验证。预测的重量减少最终与重量分析得出的重量相对应。嵌入式传感器可产生绝对的液态水含量,并能够对多孔材料中的液态水进行实验性,无损监控。 (C)2018 Elsevier Ltd.保留所有权利。

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