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Analysis of Effect of Waterhead on Stability of Excavation Face of Slurry Balanced Shield

机译:水头对泥浆平衡盾构开挖面稳定性的影响分析

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In slurry balanced shield tunneling, how to ensure the safety of construction and to reduce the influence on the environment has arisen wide attention of scholars both at home and abroad. But now it is still in the stage of experience as to the instability mechanism of the slurry shield tunneling excavation and its stability analysis. Based on the large-diameter model tests and FLAC 3D, the effect of the different waterhead (non-water, 0.9m and 1.1m) on stability of excavation face of slurry balanced shield is investigated, and the stability mechanics is proposed. The results show that: waterhead heights play an important role on excavation face instability features of slurry balanced shield in sandy stratum, Regarding the different waterhead heights, the development mode of the excavation face instability features can be divided into non-water mode, lower-waterhead mode and higher-waterhead mode; soil arching is existed in the process of excavation face instability, the settlement of ground lags behind excavation face failure, the soil arching will block or eliminate the effects of ground settlement; excess pore water pressure need to be considered besides earth pressure and hydrostatic pressure when the supporting force is calculated.
机译:在泥浆平衡式盾构隧道中,如何确保施工安全和减少对环境的影响已引起国内外学者的广泛关注。但是目前关于泥浆盾构隧道开挖的失稳机理及其稳定性分析仍处于经验阶段。基于大直径模型试验和FLAC 3D,研究了不同水位(非水,0.9m和1.1m)对泥浆平衡盾构开挖面稳定性的影响,并提出了稳定机理。结果表明:水头高度对砂质泥浆平衡盾构开挖面失稳特征起重要作用,对于不同的水头高度,开挖面失稳特征的发展方式可分为非水态,低水准。水位模式和高水位模式;开挖工作面失稳过程中存在土拱效应,地基沉降滞后于开挖工作面破坏,土拱效应将阻止或消除地基沉降效应。计算支撑力时,除了土压力和静水压力外,还需要考虑多余的孔隙水压力。

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