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Moisture movement within concrete exposed to simulated hot arid/semi-arid conditions

机译:在混凝土内的水分运动暴露于模拟热干旱/半干旱条件

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摘要

The ambient environment has a considerable influence on the permeation properties of the near-surface zone of exposed concrete (i.e. the cover zone). Monitoring the mass transport and flow processes and properties within this region is crucial in evaluating the long-term performance of concrete for a particular exposure condition. This paper presents an experimental study on both the spatial and temporal moisture movement within the surface region of concrete with and without supplementary cementitious materials. Prior to exposure, the samples were conditioned under two regimes representing poor and good curing; the samples were then exposed to a simulated hot environment with a diurnal temperature fluctuation of similar to 20-40 degrees C and similar to 60% ambient relative humidity. Moisture movement within the surface region was monitored using discretised electrical conductivity measurements which, together with gravimetric measurements, allowed evaluation of the volumetric uptake and sorptivity of the concrete and the rate and depth of water penetration into the concrete cover zone; it is shown that when these are combined, the degree of saturation, effective porosity and total porosity of the surface region could be estimated. By evaluating the conductivity prior to and after water absorption, the zone of influence of wetting/drying action (i.e. the convective zone) could be evaluated.
机译:环境环境对暴露混凝土近表面区的渗透性质有相当大的影响(即覆盖区)。监测该区域内的质量运输和流程和性质对于评估特定暴露条件的混凝土的长期性能至关重要。本文介绍了对混凝土表面区域内的空间和时间水分运动的实验研究,无需补充胶凝材料。在暴露之前,在代表差和良好固化的两个制度下调节样品;然后将样品暴露于模拟的热环境,昼夜温度波动类似于20-40℃,类似于60%的环境相对湿度。使用离散的电导率测量监测表面区域内的水分运动,其与重量测量一起,允许评估混凝土的体积吸收和吸附性以及水渗透到混凝土覆盖区的速率和深度;结果表明,当这些组合时,可以估计表面区域的饱和度,有效孔隙率和总孔隙率。通过在吸水前和水后的导电性,可以评估润湿/干燥作用(即对流区)的影响区域。

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