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Effect of hydraulic gradient on the permeability characteristics of foam-conditioned sand for mechanized tunnelling

机译:水力梯度对机械隧道泡沫调节砂渗透特性的影响

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摘要

Low permeable soil is important for stabilising the tunnel face during mechanized tunnelling in sandy soils under water level. Foam is one of the most common conditioning agents to achieve low permeability of the excavated soil. This study investigates the effect of hydraulic gradient on the permeability characteristics of foam-conditioned sand in various conditioning states, according to a series of experimental permeability tests under different hydraulic gradients. With an increase in the hydraulic gradient, the duration of the initial stable stage of the permeability coefficient either gradually decreases or completely disappears. In the rapid growth period, the permeability coefficient increases greatly. The pipe flow model is introduced to analyse time-dependent permeability characteristics of conditioned sand under different hydraulic gradients. The results shows that as hydraulic gradient increases, the time required for water to penetrate throughout the foam plugs decreases and the enlargement rate of the assumed pipe diameter increases in the rapid growth period. Finally, changes in the conditioning parameters for EPB shield tunnelling and EPB pipe-jacking under the influence of hydraulic gradient are discussed. With an increase in the hydraulic gradient, the range of conditioning parameters of the soil that satisfies the shield tunnelling permeability requirement gradually narrows and moves towards a low water content (w) and high foam injection ratio (FIR). The results show that an increase in the hydraulic gradient poses a more serious challenge for foam-dominant soil conditioning during mechanized tunnelling.
机译:低可渗透的土壤对于稳定隧道面在水位的砂土中的机械化隧道中稳定隧道面。泡沫是最常见的调理剂之一,以实现挖掘土壤的低渗透性。本研究根据不同液压梯度下的一系列实验渗透性试验,研究了液压梯度对各种调节状态泡沫调节砂的渗透特性的影响。随着液压梯度的增加,渗透系数的初始稳定阶段的持续时间逐渐减小或完全消失。在快速生长期间,渗透系数大大增加。引入管流模型,以分析不同水力梯度下调节砂的时间依赖性渗透特性。结果表明,随着液压梯度增加,水在整个泡沫塞中渗透所需的时间降低,并且在快速生长期间,假设管道直径的增大速率增加。最后,讨论了液压梯度影响下EPB屏蔽隧道隧道和EPB管道的调节参数的变化。随着液压梯度的增加,满足屏蔽隧道渗透率要求的土壤的调节参数范围逐渐缩小​​并朝向低含水量(W)和高泡沫注射率(FIR)移动。结果表明,在机械化隧道期间,液压梯度的增加对泡沫占优势土壤调节产生更严重的挑战。

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