Compression testing and analysis of drilled concrete tapered piles in cohesive-frictional soil

Author:

Khan M. Kamran1,El Naggar M. Hesham1,Elkasabgy Mohamed1

Affiliation:

1. Geotechnical Research Centre, Faculty of Engineering, University of Western Ontario, London, ON N6A 5B9, Canada.

Abstract

When pile driving is difficult and (or) economically not viable, cast-in-place piles are indispensable. Tapered piles, which have top cross-sections larger than the bottom cross-sections, have the potential for substantial advantages over conventional straight-sided piles. This paper investigates the construction and performance of innovative drilled concrete tapered piles. A full-scale pile load-testing program was conducted to evaluate the axial compressive capacity of drilled concrete tapered piles in frictional soil. One straight and three tapered augers were designed and manufactured to produce six piles. The piles that were constructed and tested included four tapered and two straight piles. The testing results showed that tapered piles with a taper angle varying between 0.95° and 1.91° had a load carrying capacity up to 50% higher than the straight-sided piles with equal volume. It should be noted, however, that the experimental results are site specific. Moreover, an analytical expression was developed to evaluate the pile taper effect on its shaft capacity in terms of a taper coefficient, Kt. The value of Ktevaluated from the analytical expression compared well with experimentally measured values. Finally, a two dimensional nonlinear finite element analysis was conducted to simulate the load test conditions, and it proved to be successful.

Publisher

Canadian Science Publishing

Subject

Civil and Structural Engineering,Geotechnical Engineering and Engineering Geology

Reference34 articles.

1. ASTM. 1995. Standard test method for deep foundations under static axial compressive load. ASTM standard D-1143. Vol. 4.08. Soil and Rock, American Society for Testing and Materials, Philadelphia, Penn.

2. ASTM. 2007. Standard test method for deep foundations under static axial compressive load. ASTM standard C-192-90a. Vol. 4.08. Concrete and Aggregates, American Society for Testing and Materials, West Conshohocken, Penn.

3. Behaviour of friction piles in soft sensitive clays

4. Brinkgreve, R.B.J. 2001. 2D-Plaxis version 8 manual. Delft University Technology and Plaxis b.v., The Netherlands.

5. Load Transfer in a Step-Taper Pile

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