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Numerical analysis of the tunnel-soil interaction caused by an explosion in the tunnel

机译:隧道爆炸引起的隧道土相互作用的数值分析

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The paper presents a numerical analysis of the dynamic deformation of the tunnel lining and the soil caused by a blast-induced pressure pulse of a moderate amplitude (several megapascals) inside the tunnel. The tunnel lining is circular and consists of individual concrete linearly elastic tubbings. The tunnel is located at a depth of 15 m in fully saturated granular soil. Effective-stress changes are described by a hypoplasticity model. The possibility of pore water cavitation at zero absolute pore pressure is taken into account. The problem is solved in a two-dimensional plane-strain formulation with the finite-element program Abaqus/Standard. Emphasis is placed on fine spatial discretization in order to obtain accurate solutions. Stresses and deformations in the lining and in the soil are analysed in detail. The solutions reveal an important role of the strong nonlinearity in the soil behaviour due to the pore water cavitation.
机译:本文介绍了隧道内部脉冲诱导压力脉冲的隧道衬里和土壤动态变形的数值分析。隧道衬里是圆形的,包括单个混凝土线性弹性管组成。隧道位于完全饱和颗粒土壤中的15米的深度。效应压力改变是由囊肿模型描述的。考虑到零绝对孔隙压力下孔隙水空化的可能性。该问题在二维平面 - 应变配方中解决了有限元/标准。重点放在精细的空间离散化上,以获得准确的解决方案。详细分析了衬里和土壤中的应力和变形。该解决方案揭示了由于孔隙水空化引起的强烈非线性在土壤行为中的重要作用。

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