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Simplified Analytical Method for Predicting the Lateral Ground Displacements due to Shield Tunnelling

机译:简化分析方法,用于预测盾构隧道引起的横向地移

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Earth pressure balance or slurry shield tunnelling will squeeze the subsoils and lead to lateral outward ground displacement. However, current methods to estimate the shield tunnelling-induced ground displacements generally use the methods based on the face unsupported tunnelling (e.g., New Austrian tunnelling and open shield excavation), which cannot predict the lateral ground movement due to shield tunnelling. In this paper, a novel simplified analytical method is proposed to predict the ground lateral displacement during the shield advancing process. The key shield tunnelling operation factors, including the additional pressure of cutter head, the friction forces around shield body, the back-fill grouting pressure, and the soil volume loss are all considered. The lateral ground displacements induced by the four former factors are calculated by using Mindlin’s solutions. The soil volume loss-induced lateral ground displacement is calculated by employing the expression introduced by Pinto and Whittle. Combining with the displacement obtained from all the factors, the analytical method for lateral ground displacement induced by shield tunnelling is obtained. The applicability of the proposed analytical approach is verified with three well-documented case histories involving slurry shield and EPB shield machines.
机译:地球压力平衡或泥浆屏蔽隧穿将挤压底层并导致横向外地位移。然而,目前估计屏蔽隧穿诱导的地位移的方法通常使用基于面部不受支持的隧道的方法(例如,新的奥地利隧道和开放屏蔽挖掘),这不能预测由于屏蔽隧道引起的横向地运动。本文提出了一种新颖的简化分析方法来预测屏蔽推进过程中的地面横向位移。关键屏蔽隧道运行因子,包括刀头的额外压力,屏蔽体周围的摩擦力,背部填充压力和土壤体积损失都被考虑。通过使用Mindlin的解决方案计算由四个前一个因素引起的横向地面位移。通过采用Pinto和Whittle引入的表达来计算土壤体积损失引起的横向地移。基于从所有因素获得的位移,获得了通过屏蔽隧道诱导的横向地位移的分析方法。提出的分析方法的适用性用三种涉及浆料屏蔽和EPB屏蔽机的案例历史验证。

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