富水砂层盾构渣土加压渗透特性与喷涌临界条件研究
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华东交通大学

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国家自然科学基金项目(52578473),江西省教育厅科学技术研究项目(GJJ2409204);


On the Pressurized Permeability Behavior of Shield Muck in Water-Rich Sandy Strata and Critical Conditions for Spewing
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    摘要:

    为解决富水砂层土压平衡盾构掘进过程中渣土喷涌问题,深入研究渣土改良后的渗透特性演化规律及喷涌发生的临界条件。通过研制一套能同步模拟不同埋深下土压力与水压力的加压渗透试验装置;系统探究了渗透压Pw、围压Ps、泡沫注入比FIR、改良剂种类及颗粒级配等多因素耦合作用下渣土渗透特性的演化规律。研究结果表明:泡沫改良存在明确的“临界注入区”与“过度改良区”,其最优注入比FIR约为5%–8%;膨润土泥浆则在有压条件下展现出更稳定的抗渗性能。基于试验数据构建了考虑应力比Pw/Ps、FIR与渗透系数比k/k0的响应曲面模型,识别出临界应力比Pw/Ps=0.5。进一步提出以“渗透系数-水头-流量”的多维喷涌临界判据,建立基于动态临界渗透系数概念及分级预警体系。最终形成“地层-改良剂-参数”匹配的差异化防控策略。研究成果为富水砂层盾构工程喷涌风险的控制提供了从机理到应用的系统解决方案。

    Abstract:

    To address the issue of muck spewing during earth pressure balance (EPB) shield tunneling in water?rich sandy strata, this study systematically investigates the evolution of permeability characteristics of conditioned muck and the critical conditions for spewing. A pressurized permeation apparatus capable of simultaneously simulating soil pressure and water pressure at various burial depths was developed. Using this setup, the evolution of muck permeability under the coupled effects of multiple factors-including permeation pressurePw, confining pressurePs, foam injection ratio (FIR), types of conditioning agents, and particle gradation-was systematically examined. The results reveal that foam conditioning exhibits distinct “critical injection zones” and “over?conditioning zones,” with an optimal FIRof approximately 5%–8%; bentonite slurry demonstrates more stable impermeability under pressurized conditions. Based on the experimental data, a response surface model incorporating the stress ratio Pw/Ps, FIR, and the permeability coefficient ratio k/k0 was established, and a critical stress ratio Pw/Ps= 0.5 was identified. Furthermore, a multi?dimensional critical criterion for spewing centered on “permeability coefficient-water head-flow rate” was proposed, leading to the development of a tiered early?warning system based on the concept of a dynamic critical permeability coefficient. Finally, a differentiated prevention and control strategy that matches “stratum–conditioning agent–parameters” was formulated. The research outcomes provide a systematic solution, from mechanism to application, for controlling spewing risks in EPB shield tunneling through water?rich sandy strata.

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  • 收稿日期:2026-03-23
  • 最后修改日期:2026-05-09
  • 录用日期:2026-05-25
  • 在线发布日期: 2026-06-24
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