利用新型异质动态滤饼实现三维隧道工作面稳定性

Qiujing Pan, C. Hou, Hao Xiong, Zihan Yang
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引用次数: 0

摘要

在泥浆护壁隧道掘进过程中,由于泥浆渗入和刀具切削之间的相互作用,会产生异质动态滤饼,其对隧道面稳定性的影响尚未完全探明。因此,我们提出了一个基于数值的极限分析框架,以评估考虑到异质动态滤饼的隧道工作面稳定性。建立了一个具有异质动态滤饼的数值模型,用于求解瞬态渗流。将数值渗流结果进一步纳入三维旋转破坏机理,从而对隧道工作面安全系数和泥浆压力传递效率进行上限估算。通过与之前关于泥浆压降、泥浆压力传递效率和隧道面安全系数的研究进行比较,验证了所提出的方法。通过参数分析,研究了滤饼-土壤界面的过剩孔隙压力分布,并讨论了刀盘旋转和过剩泥浆压力对隧道面稳定性的影响。结果表明,定义的三维压力传递效率介于之前公布的一维和二维解决方案之间;隧道面稳定性随着刀盘旋转而降低,并最终达到动态平衡状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional tunnel face stability using a new heterogeneous dynamic filter cake
In slurry-shield tunnelling, a heterogeneous dynamic filter cake occurs due to the interaction between slurry infiltrating and tool cutting, whose influence on tunnel face stability is not fully plumbed. Thus, a numerically based-limit analysis framework is proposed to assess the tunnel face stability considering a heterogeneous dynamic filter cake. The numerical model with a heterogeneous dynamic filter cake, which has spatio-temporally variable permeability coefficients according to cutter layouts, is built for solving a transient seepage flow. Numerically obtained seepage flow results are further incorporated into the 3D rotational failure mechanism, so as to give an upper-bound estimation on the tunnel face safety factor and the slurry pressure transfer efficiency. The proposed method is validated by comparing with previous studies regarding the slurry pressure drop, slurry pressure transfer efficiency, and tunnel face safety factors. Parametric analyses are performed to examine the excess pore pressure distributions at the filter cake-soil interface, and discuss the influences of cutterhead rotation and excess slurry pressures on the tunnel face stability. The results show that the defined three-dimensional pressure transfer efficiency is between the one-dimensional and the two-dimensional solutions published previously; the tunnel face stability reduces as cutterhead rotating and finally reaches a dynamic equilibrium state.
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