三轴剪切过程中的渐进式内侵蚀:X 射线微型计算机断层扫描研究

Zhangqi Xia, Jianfeng Wang, Zhiren Zhu, Wei Hu, Saoirse Tracy, Budi Zhao
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引用次数: 0

摘要

内侵蚀过程中细粒的去除会导致粒状土的渗透性增加和强度降低。本研究使用专门设计的仪器和 X 射线 CT 扫描,研究了三轴加载条件下粒状土在剪切过程中的内部侵蚀。对两种细粒含量不同的间隙级配土壤样本进行了测试和多次扫描,并利用图像处理技术对样本和孔隙尺度的体积变化以及细粒含量进行了表征。结果表明,内部侵蚀随轴向应变逐渐增加,并且由于细粒含量的空间变化,对渗透率的增加产生了复杂的影响。三轴剪切会引起孔隙收缩和扩张,破坏细颗粒堵塞的稳定性,并促进内部侵蚀。此外,在细粒含量较高时,支撑力细粒的侵蚀也会促进孔隙收缩。机械扰动导致的渐进式内部侵蚀会形成一条从上游装载压板流向整个样品的流道,从而显著增加渗透性。总之,这项研究为了解恒定渗流条件下剪切过程中水力机械过程之间的相互作用提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Progressive internal erosion during triaxial shearing: an X-ray micro-computed tomography study
Fines removal during internal erosion results in permeability increase and strength reduction of granular soils. This study examines internal erosion during shearing of granular soils under triaxial loading conditions using a specially designed apparatus and X-ray CT scans. Two gap-graded soil samples with different fines content are tested and scanned multiple times to characterize sample- and pore-scale volume change and fines content using image processing techniques. Results show that internal erosion increases gradually with axial strain and has a complex impact on permeability increase due to the spatial variation of fines content. Triaxial shearing induces both pore contraction and dilation, destabilises the clogging of fine particles, and promotes internal erosion. Also, the erosion of force-supporting fine particles at a high fines content facilitates pore contraction. The progressive internal erosion due to mechanical disturbance leads to the formation of a flow channel from the upstream loading platen throughout the sample, resulting in a dramatical increase in permeability. Overall, this study provides novel insights into the interplay between the hydro-mechanical processes during shearing under constant seepage.
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