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Gas permeability and electrical conductivity of structural concretes: Impact of pore structure and pore saturation

机译:结构混凝土透气性和导电性:孔隙结构和孔饱和的影响

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This paper investigates the gas permeability and the electrical conductivity of structural concretes under different pore saturations. The gas permeability was measured by CemBureau device and the electrical conductivity by alternating current method. The pore structure was characterized by mercury intrusion porosimetry (MIP) and gravimetric methods. The Archie's law is used to interpret the tortuosity of the pore structure. The impact of pore saturation is evaluated through the Van Genuchten-Mualem (VGM) and Kozeny's models. The results show that (I) the global correlation between the gas permeability in dried state and the electrical conductivity in saturated sate is weak; (2) both VGM and Kozeny's models can describe the relative permeability/conductivity, but the VGM model gives more consistent exponents for permeability and conductivity; (3) as the pore gas and liquid phases are both percolated, the gas permeability is correlated to the electrical conductivity for arbitrary pore saturation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了不同孔径下结构混凝土渗透性和导电性。通过CEMBUREAU装置和通过交流方法测量透气性和电导率。孔隙结构的特征在于汞侵入孔孢子虫(MIP)和重量法。 ARCHIE的法律用于解释孔隙结构的曲折性。通过Van Genuchten-Mualem(VGM)和Kozeny的模型来评估孔饱和的影响。结果表明,(i)在干燥状态下的气体渗透率与饱和物态的电导率之间的全局相关性; (2)VGM和Kozeny的模型可以描述相对渗透性/电导率,但VGM模型可以提供更一致的渗透率和电导率的指数; (3)随着孔气和液相渗透,透气性与任意孔饱和的电导率相关。 (c)2016 Elsevier Ltd.保留所有权利。

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