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High pressure jet-grouting column installation effect in soft soil: Theoretical model and field application

机译:高压喷射灌浆柱在软土中的安装效果:理论模型与现场应用

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This paper presents a theoretical model for investigating the installation effect of high pressure jet grouting column in soft clay. The model is formulated by assuming the installation process as a series of pressure-controlled spherical cavity expansion in semi-infinite soil, of which the approximate solutions are derived by combining use of two fundamental solutions of spherical cavity expansion in finite spherical symmetry soil and displacement-controlled spherical cavity expansion in semi-infinite soil. The approximate solutions are then validated by comparing the predictions with FEM results as well as published results. The comparison results show that the presented approximate solutions are suitable for the problem of pressure-controlled spherical cavity expansion in semi-infinite soil, particularly in evaluating the limit expansion pressure as well as the expansion pressure-ground surface displacement relation. Subsequently, the proposed approximately solutions are applied to interpret the limit injection pressure and the grouting pressure-ground surface displacement during the installation process of HPJ-GC. Some parametric studies are also conducted. Furthermore, an instrumented field test study of HPJ-GC is conducted in the thick soft soils comprising quaternary alluvial and marine deposits of the Lianyungang-Yancheng Highway located in Jiangsu Province, China. The measured ground heave is compared with the analytical predictions using the proposed theoretical model. Reasonable agreement is achieved. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文为研究高压喷射注浆柱在软黏土中的安装效果提供了理论模型。该模型是通过假设安装过程为一系列在半无限土壤中的压力控制球形空腔扩张而建立的,其近似解是通过使用有限球形对称土壤中球形空腔扩张的两个基本解与位移相结合而得出的。半无限土壤中的球形控制球腔扩张。然后通过将预测与FEM结果以及已发布的结果进行比较来验证近似解。比较结果表明,所提出的近似解适用于半无限土中压力控制的球形空腔膨胀问题,特别是在评估极限膨胀压力以及膨胀压力与地面位移关系时。随后,在HPJ-GC的安装过程中,将提出的近似解决方案用于解释极限注入压力和注浆压力-地面位移。还进行了一些参数研究。此外,在中国江苏省连云港-盐城公路的第四纪冲积层和海相沉积物等厚软土中,进行了HPJ-GC的仪器化现场试验研究。使用建议的理论模型将测得的地面起伏与分析预测进行比较。达成了合理的协议。 (C)2017 Elsevier Ltd.保留所有权利。

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