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干湿循环与冻融循环耦合作用下伊犁黄土力学特性演变及其影响机制

Evolution and Influencing Mechanisms of the Yili Loess Mechanical Properties under Combined Wetting-Drying and Freeze-Thaw Cycling.

作者信息

Zhang Yongliang, Zhang Zizhao, Hu Wanhong, Zhang Yanyang

机构信息

School of Geological and Mining Engineering, Xinjiang University, Urumqi 830017, China.

State Key Laboratory for Geomechanics and Deep Underground Engineering, Xinjiang University, Urumqi 830017, China.

出版信息

Materials (Basel). 2023 Jun 30;16(13):4727. doi: 10.3390/ma16134727.

Abstract

Landslides frequently occur in the loess-rich Yili region of Xinjiang, China, due to the combined effects of wetting-drying and freeze-thaw (WD-FT) cycles, which cause changes in the soil/loess internal structure and shear strength. This paper explores the combined effect of WD-FT cycles on the shear strength evolution of Yili loess through cyclic and triaxial shear tests. The micromechanism of the effect of WD-FT cycles on the loess properties is studied through scanning electron microscopy tests. Finally, the gray correlation analysis method assesses the correlation between relevant macro and micro parameters. The results show that: (1) With the increase in WD-FT cycles, the cohesion of loess decreases first and then gradually stabilizes, while the internal friction angle first grows and then drops before stabilizing. This indicates that the WD-FT cycles cause different degrees of decline in the soil's internal friction angle and cohesion. (2) As the number of WD-FT cycles increases, the average abundance and directional probability entropy fluctuate slightly, gradually decreasing and stabilizing. In contrast, the particle size dimensionality gradually decreases and stabilizes, and the pore area ratio first increases and then gradually stabilizes. (3) Six microstructural parameters (average diameter, average abundance, particle size dimensionality, directional probability entropy, particle roundness, and pore area) are selected for correlation analysis with the shear strength index of loess. The results show that the particle size dimensionality closely correlates with macroscopic internal friction angle under coupled cycling, while the pore area closely correlates with macroscopic cohesion. These findings are instrumental in preventing and controlling loess landslides caused by WD-FT cycles in the Yili region of Xinjiang, China, and similar loess-rich regions.

摘要

由于干湿循环和冻融循环(WD-FT)的共同作用,中国新疆富含黄土的伊犁地区经常发生山体滑坡,这会导致土壤/黄土内部结构和抗剪强度发生变化。本文通过循环剪切试验和三轴剪切试验,探讨了WD-FT循环对伊犁黄土抗剪强度演化的综合影响。通过扫描电子显微镜试验研究了WD-FT循环对黄土性质影响的微观机制。最后,采用灰色关联分析法评估了相关宏观和微观参数之间的相关性。结果表明:(1)随着WD-FT循环次数的增加,黄土的黏聚力先减小后逐渐稳定,而内摩擦角先增大后减小再趋于稳定。这表明WD-FT循环导致土壤的内摩擦角和黏聚力出现不同程度的下降。(2)随着WD-FT循环次数的增加,平均丰度和方向概率熵略有波动,逐渐减小并趋于稳定。相比之下,粒度维度逐渐减小并趋于稳定,孔隙面积比先增大后逐渐稳定。(3)选取六个微观结构参数(平均直径、平均丰度、粒度维度、方向概率熵、颗粒圆度和孔隙面积)与黄土抗剪强度指标进行相关性分析。结果表明,在耦合循环作用下,粒度维度与宏观内摩擦角密切相关,而孔隙面积与宏观黏聚力密切相关。这些研究结果有助于防治中国新疆伊犁地区以及类似富含黄土地区因WD-FT循环引发的黄土滑坡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed1/10342523/b8620806fd38/materials-16-04727-g001.jpg

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