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首页> 外文期刊>KSCE journal of civil engineering >Effect of Grain Gradation on the Permeability Characteristics of Coarse-grained Soil Conditioned with Foam for EPB Shield Tunneling
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Effect of Grain Gradation on the Permeability Characteristics of Coarse-grained Soil Conditioned with Foam for EPB Shield Tunneling

机译:粒度对EPB盾构隧道用泡沫处理的粗粒土渗透性特征的影响

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摘要

To avoid water spewing out of the screw conveyor, foam is often used to reduce the permeability coefficient of the soil during earth pressure balance (EPB) shield tunneling. Whether foam can effectively reduce the permeability or not strongly depends on soil gradation characteristics. A series of permeability tests were carried out on foam-conditioned soil with changing effective grain size (d(10)), curvature coefficient (C-c), and uniformity coefficient (C-u), further, three characteristic times were defined to evaluate the permeation safety of the conditioned soil, including critical time (t(c)), flow rate safety time (t(a)) and flow quantity safety time (t(s)). The test results show that with an increase in d(10), the initial permeability coefficient of the conditioned soil increased greatly, however, it only changed slightly with increases in C-c and C-u. In addition, permeability coefficient was still much lower than that of the unconditioned soil, even though entered the slow growth period for a long time. It is shown that as the C-c and C-u increased, the t(a) and t(s) changed slightly, however, as the d(10) increased, the t(a) and t(s) decreased significantly. The results indicate that d(10) can greatly affect the permeability characteristics of conditioned soil, more specifically, the initial permeability coefficient and the permeation safety. By contrast, C-c and C-u have less effects. In addition, it is not reasonable to consider that the permeability coefficient of the conditioned soil will reach or be close to that of unconditioned soil when most, or all, of foam in the foam-conditioned soil dissipates.
机译:为了避免水从螺旋输送机喷涌而出,在土压平衡(EPB)盾构隧道掘进过程中,通常使用泡沫来降低土壤的渗透系数。泡沫能否有效降低渗透率在很大程度上取决于土壤的等级特性。在改变有效粒径(d(10)),曲率系数(Cc)和均匀度系数(Cu)的泡沫条件土壤上进行了一系列渗透性测试,并定义了三个特征时间来评估渗透安全性条件土壤的浓度,包括临界时间(t(c)),流量安全时间(t(a))和流量安全时间(t(s))。试验结果表明,随着d(10)的增加,条件土壤的初始渗透系数大大增加,但是,随着C-c和C-u的增加,它的变化很小。另外,即使长时间进入缓慢的生长期,渗透系数仍远低于未处理土壤的渗透系数。结果表明,随着C-c和C-u的增加,t(a)和t(s)略有变化,但是,随着d(10)的增加,t(a)和t(s)显着下降。结果表明,d(10)可以极大地影响条件土壤的渗透性,特别是初始渗透系数和渗透安全性。相反,C-c和C-u影响较小。另外,认为当泡沫调节土壤中的大部分或全部泡沫消散时,调节土壤的渗透系数将达到或接近未调节土壤的渗透系数是不合理的。

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