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Microstructural constraints on geotechnical properties of Malan Loess: A case study from Zhaojiaan landslide in Shaanxi province, China

机译:马兰黄土地理性质的微观结构限制 - 以陕西省肇西安滑坡占地面议研究

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摘要

The microstructure of Malan Loess (a late Pleistocene loess deposit in China) dominates its macroscopic geo-technical properties. When subject to inundating or humidifying conditions, the distinct metastable structure of the Malan Loess is sensitive to collapse; thus, its geotechnical properties undergo change. The results of triaxial and uni-axial compression tests under the humidifying conditions on undisturbed loess samples demonstrate that its geotechnical properties of the top loess were dominated by metastable structure, while the basal loess were more influenced by inter-particles cementation bond. Based on analyses from scanning electron microscopy images, change of the loess pore structure can be primarily attributed to the ratio of metastable pores ( 5 mu m). Accordingly, an end-member model is proposed to illustrate how varying in the size and distributions of very large pores ( 200 mu m), large pores (50-200 mu m), medium pores (5-50 mu m), and small pores ( 5 mu m) successively change the undisturbed loess microstructure. Rising groundwater level along the base of the Malan Loess weakens the inter-particles bond, and can lead to a chain reaction where progression of pore collapse results in elevated pore pressures and loss of shear strength. This mechanism is used to explain the periodic accelerated movement of the Zhaojiaan landslide complex in northern Shaanxi, China.
机译:马兰黄土的微观结构(中国晚期优质的黄土押金)主导其宏观地地貌技术。当受淹没或加湿条件时,玛拉黄土的明显稳定性结构对崩溃敏感;因此,其岩土性能发生变化。在未受干扰的黄土样品上的加湿条件下三轴和单轴压缩试验结果表明,其顶部黄土的岩土性特性由亚稳结构主导,而基底黄土受到颗粒间胶结键的影响更大。基于扫描电子显微镜图像的分析,黄土孔隙结构的变化主要归因于亚稳孔(&5μm)的比率。因此,提出了一个端构件模型以说明在非常大的孔(&200μm),大孔(50-200μm),中孔(5-50μm)的大小和分布中的尺寸和分布有多大程度。和小孔(&5μm)连续改变未受干扰的黄土微观结构。沿着玛拉氏黄土底部的地下水位升高,削弱了颗粒间键,可以导致连锁反应,其中孔隙塌陷的进展导致孔隙压力升高和剪切强度丧失。这种机制用于解释陕西北陕西省肇家滑坡复合体的定期加速运动。

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