Influence of Sand Grain Size and Clay Mineralogy on Suffusion of Sand-Clay Mixtures

Incheol Joo, Jongmuk Won
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Abstract

Suffusion is a type of internal erosion caused by the detachment of fine particles. Additionally, continuous suffusion reduces the stability of geotechnical infrastructures. In this study, the impact of clay mineralogy and sand grain size on the suffusion of sand-clay mixtures was investigated using two-dimensional laboratory experiments on nine different sand-clay mixtures made of three types of sands (K3, K4, and K5) and clays (kaolinite, illite, and bentonite). The breakthrough curve for each sample was obtained for the top/middle/bottom outlets of the designed cell to measure and analyze the amount of detached clay. It was observed that as the sand grain size decreased, the amount of detached clay was more and clays with kaolinite exhibited greater suffusion than those with illite. Bentonite exhibited the lowest amount of detached clay owing to its high swelling potential. The influence of clay mineralogy and sand grain size on the suffusion has been discussed based on the obtained breakthrough curves.
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砂粒尺寸和粘土矿物对砂-粘土混合物渗流的影响
浸透是一种内部侵蚀,是由细颗粒脱落引起的。此外,持续的渗流降低了岩土基础设施的稳定性。在这项研究中,通过二维实验室实验,研究了粘土矿物学和砂粒度对砂-粘土混合物的渗透的影响,这些砂-粘土混合物由三种类型的砂(K3、K4和K5)和粘土(高岭石、伊利石和膨润土)组成。在设计的孔的上/中/下出口获得每个样品的突破曲线,以测量和分析粘土的分离量。结果表明,随着砂粒的减小,粘土的分离量增加,高岭石粘土的渗透程度大于伊利石粘土。膨润土表现出最低的分离粘土由于其高肿胀的潜力。根据所获得的突破曲线,讨论了粘土矿物学和砂粒度对渗流的影响。
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