Numerical analysis of pile response to open face tunnelling in stiff clay

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초록

Three-dimensional (3D) finite element analyses have been performed to study the behaviour of a single pile and 3 x 3 and 5 x 5 pile groups during open face tunnelling in stiff clay. Several governing factors, such as tunnelling-induced ground and pile settlement, axial pile force changes and shear transfer mechanism at the pile-soil interface, have been studied in detail. Tunnelling resulted in the development of pile head settlement larger than the free-field soil surface settlement. In addition, axial force distributions along the pile change substantially due to changes in the shear transfer between the pile and the soil next to the pile, which triggers tunnelling-induced tensile forces in the piles with tunnel advancement. It was found that the relative displacements and the normal stresses at the pile-soil interface drastically affected shear transfer. The extent of slip length along a pile increased as the tunnelling proceeded. The apparent allowable pile capacity was reduced by up to approximately 42% due to the development of tunnelling-induced pile head settlement Shear stress on the pile was increased for most of the pile depth with tunnel advancement, which was associated with changes in soil stresses and ground deformation, and hence, the axial pile force was gradually reduced with tunnel advancement, indicating the development of tunnelling-induced tensile pile force. The maximum tunnelling-induced tensile force on the pile was approximately 0.33P(a), where P-a is the allowable pile capacity applied to the pile head prior to tunnel excavation. The range affected by tunnelling in the longitudinal direction may be identified as approximately -2D similar to +(1.5-2.0D), where D is the tunnel diameter, from the pile centre (behind and ahead of the pile axis), in terms of pile settlement and axial pile force changes based on the analysis conditions assumed in the current study. Larger pile head settlements and smaller changes in axial pile forces were computed for piles that were part of groups. It has been found that the serviceability of piles experiencing adjacent tunnelling is more affected by pile settlement than by axial pile force changes, in particular for piles inside groups. The magnitude of the tunnelling-induced excess pore pressure was small and may not substantially affect pile behaviour. (c) 2013 Elsevier Ltd. All rights reserved.

키워드

Numerical modelling and analysisOpen face tunnellingPilesSoil-structure interactionShear transferStiff clayFINITE-ELEMENT-ANALYSISGROUND MOVEMENTSSINGLE PILE
제목
Numerical analysis of pile response to open face tunnelling in stiff clay
저자
Lee, C. J.
DOI
10.1016/j.compgeo.2013.02.007
발행일
2013-06
유형
Article
저널명
Computers and Geotechnics
51
페이지
116 ~ 127