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Effect of wetting-drying cycles on soil desiccation cracking behaviour

机译:润湿干燥循环对土壤干燥开裂行为的影响

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摘要

Better understanding the desiccation cracking process is essential in analysing drought effects on soil hydraulic and mechanical properties through consideration of the atmosphere-ground interaction. Laboratory tests were conducted to investigate the consequence of wetting-drying cycles on the initiation and propagation characteristics of desiccation cracks on soil surface. Initially saturated slurry specimens were prepared and subjected to five subsequent wetting-drying cycles. Image processing technique was employed to quantitatively analyze the morphology characteristics of crack patterns formed during each drying path. The results show that the desiccation cracking behaviour of soil is significantly affected by the wetting-drying cycles. Before the third wetting-drying cycle is reached, the surface crack ratio and the average crack width increases while the average clod area decreases with increasing the number of wetting-drying cycles. The number of intersections and crack segments per unit area reaches the peak values after the second wetting-drying cycle. After the third wetting-drying cycle is reached, the effect of increasing wetting-drying cycles on crack patterns is insignificant. Moreover, it is observed that the applied wetting-drying cycles are accompanied by a continual reconstruction of soil structure. The initial homogenous slurry structure is completely replaced with aggregated structure after the third cycles, and a significant increase in the inter-aggregate porosity can be observed.
机译:通过考虑大气面接地相互作用,更好地理解干燥裂解过程对于分析土壤液压和力学性能的基础。进行实验室试验以研究润湿干燥循环对土壤表面干燥裂缝的起始和传播特性的结果。制备初始饱和的浆料标本并进行五个后续润湿干燥循环。采用图像处理技术来定量分析在每个干燥路径期间形成的裂纹图案的形态特征。结果表明,润湿干燥循环的土壤干燥裂解行为显着影响。在达到第三润湿干燥循环之前,表面裂缝比和平均裂缝宽度增加,而平均Clod面积随着润湿干燥循环的数量而降低。每单位面积的交叉点和裂纹段的数量达到第二润湿干燥循环后的峰值。在达到第三润湿干燥循环之后,增加润湿干燥循环对裂纹模式的效果是微不足道的。此外,观察到施加的润湿干燥循环伴随着土壤结构的持续重建。在第三个循环之后,初始均匀浆料结构完全用聚集结构替换,并且可以观察到聚集孔隙率的显着增加。

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