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Tunneling-Induced Settlement Evaluation for Underneath Existing Tunnel

机译:既有隧道下的隧道诱发沉降评估

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The relationship between subsurface settlement and ground volume loss caused by the excavation of a new tunnel underneath the existing tunnel was analyzed and identified based on Mair's theory. Subsurface settlements were determined by equations and a 3-D finite element numerical modeling. The settlement and ground volume loss control measurements for the tunneling-induced settlements in the existing tunnel were proposed and demonstrated by using 3-D finite element analysis. The large pipe-shed (LPS)ground stabilization was utilized to perform ground stabilization prior to the new tunnel excavation. The effects of using LPS ground stabilization on ground volume loss control were evaluated by comparing with non-LPS tunneling situations. The results indicate that the LPS ground stabilization can significantly reduce the settlement of an existing tunnel caused by the excavation of a new tunnel, and the ground volume loss method has proven to be an effective approach to estimate the effects of LPS ground stabilization.
机译:基于Mair的理论,分析和确定了地下沉降与因在现有隧道下方开挖新隧道而引起的地表体积损失之间的关系。地下沉降是通过方程和3-D有限元数值模型确定的。提出并利用3-D有限元分析对现有隧道中隧道诱发的沉降量进行沉降和地面体积损失控制测量。在新的隧道开挖之前,利用大型管棚(LPS)的地面稳定作用来进行地面稳定作用。通过与非LPS隧道情况进行比较,评估了使用LPS地面稳定化对地面体积损失控制的影响。结果表明,LPS地面稳定技术可以显着减少因开挖新隧道而引起的现有隧道沉降,地面体积损失法已被证明是评估LPS地面稳定技术效果的有效方法。

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