细颗粒含量对间断级配土侵蚀的影响
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(1.西安理工大学水利水电学院;2.中国水利水电第三工程局有限公司;3.中国电建集团西北勘测设计研究院有限公司 )

作者简介:

李东锋(1975—),男,正高级工程师,博士研究生,主要从事水利工程防渗体施工技术研究。E-mail:lidf@powerchina.cn

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国家自然科学基金项目(52179143);陕西省科技创新团队项目(2022TD-01);陕西省教育厅科学研究计划项目——青年创新团队项目(24JP124)


Effect of fine particle content on erosion of gap-graded soils
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(1.School of Water Resources and Hydroelectric Engineering, Xi’an University of Technology; 2.SinohydroEngineering Bureau 3 Co., Ltd.; 3.POWERCHINA Northwest Engineering Corporation Limited)

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    摘要:

    针对渗流作用下间断级配土内部侵蚀导致的涌砂和结构变形破坏问题,采用土体内部渗流侵蚀试验装置对细颗粒含量为20%、30%和40%的间断级配土开展了不同水力梯度下的侵蚀试验,基于离散元法研究了颗粒流失、接触力链和孔隙率的变化过程,探究了间断级配土的细观侵蚀规律。结果表明:细颗粒含量越高的试样侵蚀速率越快,侵蚀运动越剧烈;低水力梯度下,出现渗透挤密现象导致孔隙率减小,且孔隙率的变化具有空间差异性;细颗粒含量影响土体内部颗粒间的接触方式,是颗粒流失的诱因,而接触力链的形式变化和颗粒流失的共同作用导致了土体侵蚀破坏。

    Abstract:

    To address the problems of sand boiling and structural deformation failure induced by internal erosion in gap-graded soils under seepage action, erosion tests under different hydraulic gradients were conducted on gap-graded soil specimens with fine particle contents of 20%, 30%, and 40% using an internal seepage erosion apparatus. Based on the discrete element method, the evolution processes of particle loss, contact force chains, and porosity were analyzed, and the mesoscopic erosion characteristics of gap-graded soils were explored. The results show that specimens with higher fine particle contents exhibit higher erosion rates and more intense erosion processes. Under low hydraulic gradients, seepage-induced compaction occurs, resulting in a decrease in porosity, and the variation of porosity exhibits spatial heterogeneity. The fine particle content affects the contact modes among particles within the soil and serves as a triggering factor for particle loss. The combined effects of contact force chain transformation and particle loss lead to erosion-induced failure of the soil.

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李东锋,许增光,高惠,等.细颗粒含量对间断级配土侵蚀的影响[J].水利水电科技进展,2026,45(4):28-36.(Li Dongfeng, Xu Zengguang, Gao Hui, et al. Effect of fine particle content on erosion of gap-graded soils[J]. Advances in Science and Technology of Water Resources,2026,45(4):28-36.(in Chinese))

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  • 收稿日期:2025-12-17
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  • 在线发布日期: 2026-08-07
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