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Performance of mortar and chemical grout injection into surrounding soil when slurry pipe-jacking method is used

机译:使用顶管法时,砂浆和化学灌浆注入周围土壤的性能

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Small-diameter shallow tunnels are often being built by using the slurry pipe-jacking method. This system involves the pushing or thrusting of a drivage machine and concrete pipes into the ground. Chemical grout injection into the surrounding soil around the tunnel is carried out after the drivage and pushing processes are finished. The purpose of the chemical grout injection is to maintain permanent stability of the surrounding soil. However, the behavior of the chemical grouting material in the surrounding soil around the tunnel and the amount of optimum injection is not clearly understood. From these points of view, this paper discusses the performance of the chemical grouting material, when it is injected into the surrounding soil around the tunnel, by means of 2-D Eulerian-Lagrangian seepage analysis. Moreover, the effectiveness of the chemical grout injection was evaluated by using the non-linear finite element method. This investigation show when the range of the grouted zone is designed; it is necessary that the relationship between Young's modulus of the soil/grouted zone and the confining stress be taken into consideration in order to establish effective, economical and safe chemical grout injection system. Understanding the performance of the seepage/dispersion behavior of the chemical grout and the characteristics of soil/ grouted zone is also important.
机译:小直径浅隧道通常是通过使用泥浆顶管法来建造的。该系统涉及将掘进机和混凝土管推入或推入地下。在驱动和推动过程完成之后,将化学灌浆注入隧道周围的土壤中。化学灌浆的目的是保持周围土壤的永久稳定性。但是,对隧道周围周围土壤中化学灌浆材料的行为和最佳注入量尚不清楚。从这些角度出发,本文通过二维Eulerian-Lagrangian渗流分析,讨论了将化学灌浆材料注入隧道周围的土壤时的性能。此外,使用非线性有限元方法评估了化学灌浆的有效性。该调查表明何时设计了灌浆区范围;为了建立有效,经济,安全的化学灌浆体系,必须考虑土体/灌浆区的杨氏模量与围压之间的关系。了解化学灌浆的渗透/扩散行为的性能以及土壤/灌浆区的特性也很重要。

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