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Pile Load Capacity – Calculation Methods


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[1] American Petroleum Institute, API Recommended Practice for Planning, Designing and Constructing Fixed Off-shore Platforms, API, Washington, DC, 1984.Search in Google Scholar

[2] Ardalan H., Eslami A., Nariman-Zahed N., Piles shaft capacity from CPT and CPTu data by polynomial neural networks and genetic algorithms, Comput. Geotech., 2009, 36, 616–625.10.1016/j.compgeo.2008.09.003Search in Google Scholar

[3] Bond A.J., Schuppener B., Scarpelli G., Orr T.L.L., Eurocode 7: Geotechnical Design Worked examples, Worked examples presented at the Workshop “Eurocode 7: Geotechnical Design” Dublin, 13–14 June 2013.Search in Google Scholar

[4] Budhu M., Soil Mechanics and Foundations, Wiley, Hoboken, New York 1999.Search in Google Scholar

[5] Cai G., Liu S., Tong L., Du G., Assessment of direct CPT and CPTu methods for predicting the ultimate bearing capacity of single piles, Eng. Geol., 2009, 104, 211–222.10.1016/j.enggeo.2008.10.010Search in Google Scholar

[6] Cai G., Liu S., Puppala A.J., Reliability assessment of CPTu-based pile capacity predictions in soft clay deposits, Eng. Geol., 2012, 141–142, 84–91.10.1016/j.enggeo.2012.05.006Search in Google Scholar

[7] DNV-OS-J101-2007: Det Norske Veritas. Design of offshore wind turbine structures. October 20007.Search in Google Scholar

[8] Hirany A., Kulhawy F.H., Conduct and interpretation of load tests on drilled shaft foundations, Report EL-5915, 1988, Vol. 1, Electric Power Research Institute, Palo Alto, CA, www.epri.comSearch in Google Scholar

[9] Fellenius B.H., Basics of Foundation Design, Electronic Edition, Calgary, Alberta, Canada, T2G 4J3, 2009.Search in Google Scholar

[10] Fleming W.G.K. et al., Piling Engineering, Surrey University Press, New York 1985.Search in Google Scholar

[11] Gwizdała K., Fundamenty palowe. Technologie i obliczenia. Tom 1, Wydawnictwo Naukowe PWN, Warszawa 2010.Search in Google Scholar

[12] Gwizdała K., Fundamenty palowe. Badania i zastosowania. Tom 2, Wydawnictwo Naukowe PWN, Warszawa 2013.Search in Google Scholar

[13] Janbu N., (ed.), Static bearing capacity of friction piles, Proceedings of the 6th European Conference on Soil Mechanics and Foundation Engineering, 1976, Vol. 1.2, 479–488.Search in Google Scholar

[14] Helwany S., Applied soil mechanics with ABAQUS applications, John Wiley & Sons, Inc., 2007.10.1002/9780470168097Search in Google Scholar

[15] Karlsrud K., Clausen C.J.F., Aas P.M., Bearing Capacity of Driven Piles in Clay, the NGI Approach, Proc. Int. Symp. on Frontiers in Offshore Geotechnics, 1. Perth 2005, 775–782.Search in Google Scholar

[16] Karlsrud K., Prediction of load-displacement behavior and capacity of axially loaded piles in clay based on analyses and interpretation of pile load test result, PhD Thesis, Trondheim, Norwegian University of Science and Technology, 2012.Search in Google Scholar

[17] Kempfert H.-G., Becker P., Axial pile resistance of different pile types based on empirical values, Proceedings of Geo-Shanghai 2010 deep foundations and geotechnical in situ testing (GSP 205), ASCE, Reston, VA, 2010, 149–154.10.1061/41106(379)18Search in Google Scholar

[18] Kolk H.J., van Der Velde A., A Reliable Method to Determine Friction Capacity of Piles Driven into Clays, Proc. Offshore Technological Conference, 1996, Vol. 2, Houston, TX.10.4043/7993-MSSearch in Google Scholar

[19] Kraft L.M., Lyons C.G., State of the Art: Ultimate Axial Capacity of Grouted Piles, Proc. 6th Annual OTC, Houston paper OTC 2081, 1990, 487–503.Search in Google Scholar

[20] Kulhawy F.H. et al., Transmission Line Structure Foundations for Uplift-Compression Loading, Report EL, 2870, Electric Power Research Institute, Palo Alto 1983.Search in Google Scholar

[21] McClelland B., Design of deep penetration piles for ocean structures, Journal of the Geotechnical Engineering Division, ASCE, 1974, Vol. 100, No. GT7, 705–747.10.1061/AJGEB6.0000064Search in Google Scholar

[22] Meyerhof G.G., Bearing Capacity and Settlement of Pile Foundations, ASCE J. of Geotechnical Eng., 1976, GT3, 195–228.10.1061/AJGEB6.0000243Search in Google Scholar

[23] Navfac DM 7.2 (1984): Foundation and Earth Structures, U.S. Department of the Navy.Search in Google Scholar

[24] Niazi F.S., Mayne P.W., Cone Penetration Test Based Direct Methods for Evaluating Static Axial Capacity of Single Piles, Geotechnical and Geological Engineering, 2013, (31), 979–1009.10.1007/s10706-013-9662-2Search in Google Scholar

[25] Randolph M.F., Wroth C.P., A simple approach to pile design and the evaluation of pile tests, Behavior of Deep Foundations, STP 670, ASTM, West Conshohocken, Pennsylvania, 1979, 484–499.10.1520/STP33746SSearch in Google Scholar

[26] Randolph M.F., Design considerations for offshore piles, Proc. of the Conference on Geotechnical Practice in Offshore Engineering, Austin, Texas, 1983, 422–439.Search in Google Scholar

[27] Randolph M.F., Dolwin J., Beck R., Design of Driven Piles in Sand, Geotechnique, 1994, Vol. 44, No. 3, 427–448.10.1680/geot.1994.44.3.427Search in Google Scholar

[28] Ruwan Rajapakse, Pile Design and Construction Rules of Thumb, Elsevier, Inc., 2008.10.1016/B978-0-7506-8763-8.00006-4Search in Google Scholar

[29] Skempton A.W., Cast-in-situ bored piles in London clay, Geotechnique, 1959, Vol. 9, No. 4, pp. 153–173.10.1680/geot.1959.9.4.153Search in Google Scholar

[30] Tomlinson M.J. Pile Design and Construction Practice, Viewpoint Publications, London, 1977, 1981 edition, 1987 edition, 1991 edition, 1994 edition, 1995 edition, 1998 edition, 2008 edition.Search in Google Scholar

[31] White D.J., Bolton M.D., Comparing CPT and pile base resistance in sand, Proc. Inst. Civil Eng. Geotech. Eng., 2005, 158(GE1), 3–14.10.1680/geng.2005.158.1.3Search in Google Scholar

[32] Wrana B., Lectures on Soil Mechanics, Wydawnictwo Politechniki Krakowskiej, 2014.Search in Google Scholar

[33] Wrana B., Lectures on Foundations, Wydawnictwo Politechniki Krakowskiej, 2015.Search in Google Scholar

[34] Wysokiński L., Kotlicki W., Godlewski T., Projektowanie geotechniczne według Eurokodu 7. Poradnik, Instytut Techniki Budowlanej, Warszawa 2011.Search in Google Scholar

[35] PN-EN 1997-1, Eurocode 7: Geotechnical design – Part 1: General rules. Part 2: Ground investigation and testing.Search in Google Scholar

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Temas de la revista:
Geociencias, otros, Ciencia de los materiales, Compuestos, Materiales porosos, Física, Mecánica y dinámica de fluidos