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Geometric and fractal analysis of dynamic cracking patterns subjected to wetting-drying cycles

机译:润湿干燥循环的动态开裂模式的几何和分形分析

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Desiccation cracks detrimentally affect the hydraulic and mechanical properties of soils. Soil cracking dynamic subjected to wetting-drying (W-D) cycles aids in the understanding of soil shrinking-swelling mechanism and the regularity of water movement in unsaturated soils with variable solid phase. In the present paper, we experimentally investigate the geometric and fractal features of dynamic cracking patterns with the soils undergoing four W-D cycles. Crack patterns were recorded by a digital camera mounted above the soil specimen. Digital image processing and morphological algorithms were employed to yield the geometric and fractal indexes that depict crack patterns (incl. crack ratio, length, mean width, similarity degree, box-counting fractal and multifractal dimensions). The analysis of dynamic crack patterns suggest an inconsistency exhibited in the crack morphology towards the drying (DR) process and backwards the wetting (WT) process, which could be possibly attributed to the different suction stress between soil particles during moisture desorption and sorption, closely analogous to the hysteresis phenomenon of soil-water characteristic curve. The gradient of crack propagating and dissolving related to water content reaches different peak values during an individual W-D cycle. High repeatability is found across the stabilized crack patterns in the four drying cycles and the cracking degree reaches equilibrium with the increasing number of W-D cycles. The crack patterns in the subsequent drying processes are significantly dominated by the first cracking. The similarity degree between the first and respectively the second, third, fourth crack patterns decreases with the increasing W-D cycles, suggesting the soil cracked in the previously cracking vicinity, and saturated wetting/ submerge hardly healed the failure zones that caused the repeatable cracking. Attempt of fractal and multifractal methods applied to the crack networks corroborates the applicability of the scaling method to the crack patterns. The analysis indicates that soil cracks progress in hierarchical networks in the first drying cycle, while the gradational crack segments nearly simultaneously emerged or vanished in the subsequent drying or wetting cycles. The study reveals the discrepancy of crack morphology between the crack formation and dissolution during W-D cycles, and demonstrates the repeatability degree and hierarchy of cracks across W-D cycles, which would aid in quantifying physical processes in cracked soil shrinking/swelling and modelling of water transport in unsaturated soils of dynamic structure. (C) 2017 Elsevier B.V. All rights reserved.
机译:干燥裂缝对土壤的液压和力学性能有害。土壤开裂动态对润湿干燥(W-D)循环有助于了解土壤收缩溶胀机制和不饱和土壤中水运动的规律性,可变固相。在本文中,我们通过经历四个W-D循环的土壤来实验研究动态开裂模式的几何和分形特征。通过安装在土壤样本上方的数码相机记录裂缝图案。采用数字图像处理和形态学算法来产生描绘裂纹图案的几何和分形索引(包括裂缝比,长度,平均宽度,相似度,盒计数分形和多法尺寸)。动态裂纹图案的分析表明,在干燥(DR)过程中裂缝形态表现出的不一致,并向润湿(WT)工艺,这可能归因于水分解吸和吸附过程中土壤颗粒之间的不同抽吸应力类似于土壤水分特征曲线的滞后现象。在单个W-D循环期间,与含水量相关的裂纹传播和溶解的梯度达到不同的峰值。在四个干燥循环中的稳定裂纹模式中发现了高可重复性,并且裂化程度随着W-D循环的越来越多的裂缝达到平衡。随后的干燥过程中的裂纹图案被第一开裂显着主导。第一和分别是第二,第三,第四裂纹模式之间的相似度随着W-D循环的增加而降低,表明在先前开裂的附近裂纹的土壤裂纹,并且饱和润湿/潜水难以愈合导致可重复开裂的失效区。应用于裂缝网络的分形和多重分形方法的尝试证实了缩放方法对裂纹模式的适用性。分析表明,在第一干燥循环中的分层网络中的土壤裂缝进展,而在随后的干燥或润湿循环中几乎同时出现或消失的灰度裂纹段。该研究揭示了WD循环期间裂缝形成和溶解之间的裂纹形态之间的裂缝形态差异,并证明了WD循环裂缝的可重复程度和层次,这有助于定量裂纹土壤收缩/溶胀和膨胀和水运输建模的物理过程动态结构的不饱和土壤。 (c)2017 Elsevier B.v.保留所有权利。

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