Setup of axial bearing capacity of open ended tubular steel piles driven in sand

Author:

Ahlinhan Marx Ferdinand1ORCID,Adjovi Edmond Codjo1

Affiliation:

1. Department of Civil Engineering , 1 National University of Sciences, Technologies, Engineering and Mathematics (UNSTIM) , Abomey , Republic of Benin

Abstract

Abstract This paper focuses on the setup of axial bearing capacity of open ended tubular steel piles that are used for offshore foundation systems such as those of wind turbines. A comparative evaluation of the most commonly used models for setup prediction shows an upper estimate bound and a lower estimate bound, which correspond approximately to a setup rate of 60% increase per log cycle of time and 20% increase per log cycle of time, respectively. This finding is validated with the results of case histories reported in literature, which show that the setup values of most case histories considered lie in the best estimate zone between the upper estimate zone and the lower estimate zone. The analysis results show a minimum setup factor of approximately 1.5 for 100 days following end of driving of open-ended tubular steel pile driven in sand.

Publisher

Walter de Gruyter GmbH

Subject

Computers in Earth Sciences,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering

Reference35 articles.

1. Augustesen, A., Andersen, L., Sørensen, C.S. (2005). Capacity of Piles in Sand. Published in: Department of Civil Engineering, Aalborg University, Denmark, Internal report, ISSN: 1398-6465 R0519.

2. Augustesen, A., Andersen, L., Sørensen, C.S. (2006). Assessment of Time Functions for Piles Driven in Clay. Published in: Department of Civil Engineering, Aalborg University, Denmark, DCE Technical Memorandum No.1, ISSN: 1901–7278.

3. Axelsson, G. (2000). Long-Term Set-Up of Driven Piles in Sand. No. TRITA-AMI PHD 1035 ISSN 1400-1284 ISRNKTH/AMI/PHD--1035--SE).

4. Boulon, M., Foray, P. (1986) Physical and numerical simulation of lateral shaft friction of offshore piles in sand. Proceedings of the 3rd International Conference on Numerical Methods in Offshore Piling, Nantes, France, pp. 127–148.

5. Bhushan, K. (2004). Design and Installation of Large Diameter Pipe Piles for LAXT Wharf. Geotech. Spec. Publ. Pract. Future Trends Deep Found. 125, pp. 370–389.

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