4.5 Article

Effect of bentonite slurry on the function of foam for changing the permeability characteristics of sand under high hydraulic gradients

期刊

CANADIAN GEOTECHNICAL JOURNAL
卷 59, 期 7, 页码 1061-1070

出版社

CANADIAN SCIENCE PUBLISHING
DOI: 10.1139/cgj-2021-0196

关键词

sand conditioning; foam; bentonite slurry; permeability; hydraulic gradient

资金

  1. National Outstanding Youth Science Fund Project of National Natural Science Foundation of China [52022112]

向作者/读者索取更多资源

During earth pressure balance shield tunnelling in sandy ground, foam and other conditioning agents are injected to reduce permeability of muck. The study found that a low bentonite slurry injection ratio enhanced the workability of foam-conditioned sand and had a significant effect on permeability.
During earth pressure balance (EPB) shield tunnelling in sandy ground, not only foam but also other conditioning agents need to be injected to reduce the permeability of muck and avoid water spewing out of the screw conveyor. Permeability tests were carried out to study the permeability characteristics of conditioned sand under high hydraulic gradients. A low bentonite slurry injection ratio (BIR) enhanced the workability of foam-conditioned sand. As the hydraulic gradient increased, the initial permeability coefficient of conditioned sand increased, and the initial stable period became shorter or disappeared. The BIR had a more significant effect on the permeability of conditioned sand than the foam injection ratio (FIR), and this effect gradually weakened as the hydraulic gradient increased. The initial permeability coefficient of the foam-bentonite slurry-conditioned sand decreased by approximately an order of magnitude compared with that of the foam-conditioned sand. With the addition of bentonite slurry, suitable sand conditioning can accept a higher water content (w) and lower FIR, resulting in suitable ranges of w and FIR that are more flexible. Finally, the mechanism of stabilizing foam under the action of bentonite slurry was discussed by considering the interaction between foam bubbles and fine particles.

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