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Micro-scale moisture distribution and hydrologically active pores in partially saturated asphalt mixtures by X-ray computed tomography

机译:X射线计算机断层摄影术在部分饱和的沥青混合料中的微观水分分布和水文活性孔

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摘要

Moisture distribution is the cause of premature deterioration in asphalt mixtures. However, quantifying of complex moisture distributions and their relationships to hydraulic loading patterns and pore structure remain challenging. This study is aimed to (1) quantify 2D moisture distribution within the pore structure of asphalt mixtures using X-ray computed tomography, and to (2) investigate the hydrologically active pore characteristics related to various hydraulic loadings in asphalt mixtures. A dense graded asphalt mixture with a maximum aggregate size of 13.2 mm was prepared in the laboratory. X-ray computed tomography technology was used to capture moisture distribution within samples under hydrostatic and hydrodynamic pressures. The characteristics of moisture distribution, including volumetric moisture content, degree of saturation, and void number were quantified by comparing pore structure before and after hydraulic action. Analysis of variance indicated that hydraulic loading pattern, hydraulic gradient, vehicular velocity, and vehicular loading significantly influenced moisture distribution characteristics. Within the same sample, the asphalt mixtures under hydrodynamic pressure had lower void number and greater volumetric moisture content/saturation degrees than those under hydrostatic pressure, especially with higher loading frequency and amplitude, indicating that vehicular loading action aggravates moisture infiltration into pavement and increases the possibility of moisture damage. The hydrologically active pore structure was also analyzed using moisture distribution characteristics under varied levels of hydrostatic/hydrodynamic pressure. Interestingly, the hydrologically active pore sizes of asphalt mixtures under various hydraulic pressures differ from each other and provide various flow pathways for moisture transport, leading to the diversity of moisture distributions. These results provide a quantitative evaluation of microscale moisture distribution characteristics in asphalt mixtures, and these characteristics have significant implications for moisture transport modeling and moisture induced damage prediction in field asphalt pavement. (C) 2017 Elsevier Ltd. All rights reserved.
机译:水分分布是沥青混合物过早老化的原因。然而,量化复杂的水分分布及其与水力加载模式和孔隙结构的关系仍然具有挑战性。这项研究的目的是(1)使用X射线计算机断层扫描技术定量分析沥青混合料孔隙结构内的二维水分分布,并(2)研究与沥青混合料中各种水力负荷有关的水文活性孔隙特征。在实验室中准备了最大集料尺寸为13.2 mm的致密渐变沥青混合料。 X射线计算机断层摄影技术用于在静水压力和水动力压力下捕获样品中的水分分布。通过比较水力作用前后的孔隙结构,定量分析了水分分布的特征,包括体积水分含量,饱和度和空隙数。方差分析表明,水力负荷模式,水力梯度,车辆速度和车辆负荷显着影响水分分布特征。在同一样品中,水动力压力下的沥青混合料比静水压力下的混合料具有更低的空隙数和更高的体积含水量/饱和度,尤其是在更高的加载频率和振幅下,表明车辆的加载作用加剧了水分渗入路面并增加了水分。湿气损坏的可能性。在不同水平的静水压力/水动力压力下,还使用水分分布特征来分析水文活性孔隙结构。有趣的是,在各种液压压力下,沥青混合料的水文活性孔径互不相同,并且为水分输送提供了各种流动路径,从而导致了水分分布的多样性。这些结果提供了对沥青混合料中微量水分分布特征的定量评估,这些特征对于田间沥青路面中的水分迁移模型和水分诱导的破坏预测具有重要意义。 (C)2017 Elsevier Ltd.保留所有权利。

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