This research study investigated diaphragm wall (D-wall) behaviour due to deep excavation at Paddington tunnel station site in London Clay. The Paddington site was the only train station in the Crossrail project constructed using a top-down excavation, and it provided the opportunity to evaluate the effect of a pre-existing tunnel on D-wall behaviour using distributed fibre optic sensing (DFOS) for the first time. Distributed fibre optic cables were embedded in the D-wall panels to monitor the changes in strain conditions during three key stages of construction; tunnel passage, concourse excavation and base excavation. After station construction, relevant finite element (FE) analysis was conducted to evaluate the D-wall performance during excavation, and the computed results were compared against the field measurements recorded by embedded DFOS in the D-wall as well as the ground inclinometers. The DFOS measurements depicted the D-wall behaviour in agreement with the conventional inclinometer method and FE results, demonstrating its feasibility in monitoring underground earth retaining infrastructure. A comparison between the D-wall behaviour with pre-existing tunnels at Paddington site and that of the same wall without tunnels allows providing some guidance for the design and construction of retaining structures adjacent to pre-existing tunnels.
Article navigation
September 2018
Research Article|
July 20 2018
Distributed fibre optic sensing of a deep excavation adjacent to pre-existing tunnels
Z. Li;
Z. Li
*Civil & Environmental Engineering, University College Cork, Cork, Republic of Ireland; formerly University of Cambridge, Cambridge, UK.
Search for other works by this author on:
K. Soga;
K. Soga
†Civil and Environmental Engineering, University of California, Berkeley, USA; formerly University of Cambridge, Cambridge, UK.
Search for other works by this author on:
C. Kechavarzi
C. Kechavarzi
‡Cambridge Centre for Smart Infrastructure and Construction, University of Cambridge, Cambridge, UK.
Search for other works by this author on:
Publisher: Emerald Publishing
Received:
February 24 2018
Revision Received:
June 16 2018
Accepted:
June 18 2018
Online ISSN: 2045-2543
ICE Publishing: all rights reserved
2018
Geotechnique Letters (2018) 8 (3): 171–177.
Article history
Received:
February 24 2018
Revision Received:
June 16 2018
Accepted:
June 18 2018
Citation
Li Z, Soga K, Kechavarzi C (2018), "Distributed fibre optic sensing of a deep excavation adjacent to pre-existing tunnels". Geotechnique Letters, Vol. 8 No. 3 pp. 171–177, doi: https://doi.org/10.1680/jgele.18.00031
Download citation file:
New and popular articles
Suggested Reading
The performance of pressure cells for sprayed concrete tunnel linings
Geotechnique (March,2002)
Installation effects of a bored pile wall in overconsolidated clay
Geotechnique (August,2006)
Field measurements of the stiffness of jacked piles and pile groups
Geotechnique (June,2006)
Use of synthesised polymers for the development of new osmotic tensiometers
Geotechnique (November,2021)
Distributed fibre-optic monitoring of an Osterberg-cell pile test in London
Geotechnique Letters (April,2017)
Related Chapters
Soil improvement by the vacuum preloading method for an oil storage station
Ground and Soil Improvement
Installation effects of a bored pile wall in overconsolidated clay
Stiff Sedimentary Clays: Genesis and Engineering Behaviour: Géotechnique Symposium in Print 2007
Precompression design for secondary settlement reduction
Ground and Soil Improvement
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
