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Movements of ground and existing structures induced by slurry pressure- balance tunnel boring machine (SPB TBM) tunnelling in clay

机译:泥浆压力平衡隧道掘进机(SPB TBM)掘进粘土引起的地面和现有结构的运动

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This paper presents a comprehensive study of field measurement of ground movements and displacements of adjacent existing structures induced by large diameter slurry pressure-balance tunnel boring machine (SPB TBM) tunnelling in clay. The evolution of displacements at six transverse monitoring sections against the distance of TBM cutterhead from corresponding instrumentations is characterized and interpreted in conjunction with recorded TBM tunnelling parameters. Measured results highlight that adjacent existing structures move almost synchronously along with ground except the magnitude, and stiffer structures can greatly resist deformation than pure soil does. The cast-in-place piles constructed between current tunnel and elevated bridge can effectively block the propagation of tunnelling-induced deformation. Results also show that the compensation effect of tail grouting on ground displacements is limited to the local areas which are close to the grouting position, and this effect attenuates as the distance from grouting position increased. The final "inwards" or "outwards" trend of surrounding soil relative to the tunnel relies on the injected grouting volume. The observation indicates that TBM tunnelling parameters at a transverse section can not only influence ground settlements there but also influence ground settlements ahead and behind this section along longitudinal direction to varying degrees. This longitudinal effect can be considered by introducing the impact coefficients of face pressure and tail grouting. The measured data of surface settlements along tunnel longitudinal axis and predicted ones using Loganathan-Poulos formula with and without considering this longitudinal effect are compared. The compared results indicate the longitudinal effect should be taken into account for the accuracy of prediction. The paper can provide valuable references for settlement prediction due to TBM tunnelling in clayey soil.
机译:本文对大直径泥浆压力平衡隧道掘进机(SPB TBM)在粘土中的掘进引起的邻近现有结构的地面运动和位移进行了现场测量的全面研究。结合记录的TBM掘进参数,表征和解释了六个横向监测部分的位移随TBM刀盘距相应仪器的距离的变化情况。实测结果表明,除了数量级以外,相邻的现有结构几乎都与地面同步移动,而较坚硬的结构则比纯土更能抵抗变形。在当前隧道和高架桥之间建造的灌注桩可以有效地阻止隧道引起的变形的传播。结果还表明,尾注浆对地面位移的补偿作用仅限于靠近注浆位置的局部区域,并且随着距注浆位置的距离增加,这种影响减弱。相对于隧道,周围土壤的最终“向内”或“向外”趋势取决于注入的灌浆量。观测结果表明,横断面的TBM掘进参数不仅会影响该处的地面沉降,而且会在不同程度上影响该剖面前后的地面沉降。可以通过引入面压力和尾浆灌浆的影响系数来考虑纵向效果。在不考虑纵向影响的情况下,比较了沿隧道纵轴的地表实测数据和使用Loganathan-Poulos公式预测的实测数据。比较结果表明,应将纵向效应考虑在内,以确保预测的准确性。本文为黏性土中的TBM隧道掘进提供了有价值的参考。

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