Author:
Rui Yi,de Battista Nicholas,Kechavarzi Cedric,Xu Xiaomin,Yin Mei
Abstract
AbstractIn this paper, we present an application of distributed fiber optic sensor (DFOS) technology to measure the strain of a continuous flight auger (CFA) test pile with a central reinforcement bar bundle, during a static load test carried out in London. Being distributed in nature, DFOS gives much more information about the pile performance as compared to traditional point sensors, such as identifying cross-sectional irregularities or other anomalies. The strain profiles recorded along the depth of the piles from the DFOS were used to calculate pile deformation (contraction), shaft friction, and tip resistance under various loads. Based on this pile load test, a finite element (FE) analysis was performed using a one-dimensional nonlinear load-transfer model. Calibrated by the shaft friction and tip resistance derived from the monitored data, the FE model was able to simulate the pile and soil performance during the load testing with good accuracy. The effect of the reinforcement cage and central reinforcement bar bundle were investigated, and it was found that the addition of a reinforcement cage would reduce the pile settlement by up to 20%.
Publisher
Springer Science and Business Media LLC
Subject
Architecture,Civil and Structural Engineering
Reference30 articles.
1. British Standards Institution. BS EN 1997-1:2004 + A1:2013 Eurocode 7. Geotechnical Design, General Rules. London, UK: BSI, 2004
2. Bond A J, Jardine R J, Dalton J C P. Design and performance of the Imperial College instrumented pile. Geotechnical Testing Journal, 1991, 14(4): 413–424
3. Ismael N F. Axial load tests on bored piles and pile groups in cemented sands. Journal of Geotechnical and Geoenvironmental Engineering, 2001, 127(9): 766–773
4. Brown M J, Hyde A F L, Anderson W F. Analysis of a rapid load test on an instrumented bored pile in clay. Geotechnique, 2006, 56(9): 627–638
5. Jardine R J, Zhu B T, Foray Y Z X. Interpretation of stress measurements made around closed-ended displacement piles in sand. Geotechnique, 2013, 63(8): 613–627
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献