Technical Papers
Aug 22, 2016

Effect of Bentonite Slurry Pressure on Interface Friction of Pipe Jacking

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Publication: Journal of Pipeline Systems Engineering and Practice
Volume 8, Issue 2

Abstract

Pipe jacking is a technique used to construct tunnels by pushing prefabricated pipes through the ground from an entrance shaft to an exit shaft. This technique is referred as microtunneling in U.S. terminology, therefore, in the rest of the text, pipejacking and microtunneling will be used as having the same meaning. Pipe jacking is a more economical alternative to segmental lined tunnels. However, the main limitation of pipe jacking is the jacking distance, which is directly dependent on the friction between the pipe and the soil. Therefore, reducing the friction between the pipe and soil is a critical issue in terms of economy and construction speed. In pipe jacking, in order to reduce the friction between pipe and soil, a bentonite injection is applied. In this paper, a new laboratory test setup was prepared to simulate pipe jacking. The main aim of this test setup was to find the effects of bentonite pressure on the lubrication efficiency, which has not been clarified in the literature yet. In order to verify the test method, results of laboratory tests were compared with measurements of the friction between jacked pipe and soil in several real life projects. The measurements were compared with the coefficient of friction values obtained from three different field measurements conducted in different projects. According to the results, it can be stated that by applying continuous bentonite injection even under very low pressure, an interface can be created between bentonite slurry and a concrete pipe, and this bentonite interface is able to reduce the friction coefficient tremendously to approximately 10% of the sand–concrete pipe interface friction coefficient. But when the injection is not applied continuously, the application of bentonite slurry injection decreases the coefficient of friction to half of that in the case of no bentonite injection.

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References

Alexanderson, M. (2001). “Construction of a Cable Tunnel ID 2.6 Vibhavadi.” Proc., 5th Int. Symp. on Microtunneling, Messe Munchen International, Munich, Germany, 139–147.
ASTM. (2010). “Standard test methods for maximum index density and unit weight of soils using a vibratory table.” ASTM D4253, West Conshohocken, PA.
Borghi, F. X. (2006). “Soil conditioning for pipe-jacking and tunneling.” Ph.D. thesis, Univ. of Cambridge, Cambridge, U.K.
Broomfield, J. (2004). “Long distance pipe jacking in Asia.” Tunnels Tunnelling Int., 36(7), 40–42.
Kishida, H., and Uesugi, M. (1987). “Tests of the interface between sand and steel in the simple shear apparatus.” Géotechnique, 37(1), 45–52.
Kishida, H., and Uesugi, M. (1990). “Friction between dry sand and concrete under monotonic and repeated loading.” Soil Found., 30(1), 115–128.
Marshall, M. (1998). “Jacking loads and ground movements.” Ph.D. thesis, Univ. of Oxford, Oxford, U.K.
Milligan, G. W. E., and Marshall, M. A. (1998). “Geotechnical aspects of pipe-jacked tunneling.” Proc., Int. Conf. on Urban Ground Engineering, ICE, London.
Namli, M. (2011). “Effect of bentonite slurry injection on pipe jacking forces.” Ph.D. thesis, Boğaziçi Univ., Istanbul, Turkey.
Namli, M., and Guler, E. (2011). “Pipe jacking method as an alternative method of trenchless technology and some applications in Istanbul.” Int. No-Dig 2011 29th Int. Conf. and Exhibition, Iternational Society of Trenchless Technology (ISTT), London.
Norris, P. (1992). “The behavior of jacked concrete pipes during site installation.” Ph.D. thesis, Univ. of Oxford, Oxford, U.K.
Pellet, B. A. L., and Kastner, R. (2002). “Experimental and analytical study of friction forces during microtunnelling operations.” Tunnelling Underground Space Technol., 17(1), 83–97.
Staheli, K. (2006). “Jacking force prediction: An interface friction approach based on pipe surface roughness.” Ph.D. thesis, Georgia Institute of Technology, Atlanta.

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Go to Journal of Pipeline Systems Engineering and Practice
Journal of Pipeline Systems Engineering and Practice
Volume 8Issue 2May 2017

History

Received: Nov 24, 2014
Accepted: Jul 7, 2016
Published online: Aug 22, 2016
Discussion open until: Jan 22, 2017
Published in print: May 1, 2017

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Authors

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Mucahit Namli, Ph.D. [email protected]
P.E.
Assistant Professor, Istanbul Medeniyet Univ., Istanbul 34700, Turkey (corresponding author). E-mail: [email protected]
Erol Guler, Ph.D.
Professor, Dept. of Civil Engineering, Bogazici Univ., Bebek, Istanbul 34342, Turkey.

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