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ANALYSIS OF STATIC LOAD TESTS OF BORED PILES USING THE LIMIT LOAD CURVE METHOD

Jakub Stacho, Jakub Stacho, Jakub Stacho

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b11/s02.087View metrics

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Publication details

Title
ANALYSIS OF STATIC LOAD TESTS OF BORED PILES USING THE LIMIT LOAD CURVE METHOD
Authors
Jakub Stacho, Jakub Stacho, Jakub Stacho
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Science and Technologies in Geology, Exploration and Mining
Publisher
Stef92 Technology
Year
2016
Pages
691-698
ISSN
1314-2704
ISBN
978-619-7105-55-1
Language
en
Publication type
Conference Paper
Keywords
References26
  1. Pochman R., Simek, J., Pile Foundations. Commentary to CSN 73 1002, Publisher of standards, FUNM, Prague, Czech Republic, 75 p, 1989.

  2. Masopust J., Bored piles, Cenek a Jezek s.r.o., Prague, Czech Republic, 263 p, 1994.

  3. Stacho J., Determination of CFA and DDS pile resistance by using FEM, Juniorstav 2014, 16 th International conference of PhD students with international participation, VUT in Brno, Czech Republic, 8 p, 2012.

  4. Wehnert M., Vermeer P.A., Numerical analyses of load tests on bored piles, Numerical models in geomechanics, Proceedings of the 9 th Symposium on Numerical Models in Geotechnics, Kanada, pp 505-516, 2004.

  5. Comodromos E.M., Papadopoulou M. C., Rentzeperis I. K., Pile foundation analysis and design using experimental data and 3-D numerical analysis, Computers and Geotechnics, vol. 36, pp 819–836, 2009.

  6. Hrubesova E., Lahuta H., Duris L., Jaafar M., Mathematical modeling of foundation-subsoil interaction, Proceedings of 15 th International Multidisciplinary Scientific GeoConference SGEM 2015. Albena, Bulgaria. pp. 437-444, 2015.

  7. Holko M., Stacho, J., Comparison of Numerical Analyses with a Static Load Test of a Continuous Flight Auger Pile, Slovak Journal of Civil Engineering, vol. 22, pp 1-10, 2014.

  8. Schanz T., Vermeer P.A., Bonnier P.G., The hardening soil model: Formulation and verification, Beyound 2000 in computational geotechnics – 10 Years of Pl axis. Balkema, Rotterdam, 1999.

  9. Pucker T., Grabe J., Numerical simulation of the installation process of full displacement piles, Computers and Geotechnics, vol. 45, pp. 81-90, 2012.

  10. Frankovska J., Sulovska M., Turc ek P., Foundations, geotechnical parameters, spread and deep foundation, STU in Bratislava, Slovakia, 162 p, 2011. [1 1] Zhang Q.Q., Zhang Z.M., HE J.Y., A simplified approach for settlement analysis of single pile and pile group considering interaction between identical piles in multilayered soils, Computer and Geotechnics, vol. 37/issue 7–8, pp 969-976, 2010.

  11. Tomlinson M., Woodward J., Pile design and construction practice – Fifth edition, Taylor & Francis, United Kingdom, 551 p, 2007.

  12. Viggiani C., Mandolini A. , Russo, G., Piles and Pile Foundations, Taylor & Francis, United Kingdom, 278 p, 2012. [1 4] Stacho J., Analysis of pile design taking into account the technology impact, Dissertation thesis, STU in Bratislava, Slovakia, 200 p, 2015.

  13. Masopust J., Special foundation engineering, Academic publishing CERN, s. r. o. Brno, Czech Republic, 143 p, 2004. 16th International Scientific GeoConference SGEM2016 www.sgem.org

  14. Pochman R., Simek, J., Pile Foundations. Commentary to CSN 73 1002, Publisher of standards, FUNM, Prague, Czech Republic, 75 p, 1989.

  15. Masopust J., Bored piles, Cenek a Jezek s.r.o., Prague, Czech Republic, 263 p, 1994.

  16. Stacho J., Determination of CFA and DDS pile resistance by using FEM, Juniorstav 2014, 16 th International conference of PhD students with international participation, VUT in Brno, Czech Republic, 8 p, 2012.

  17. Wehnert M., Vermeer P.A., Numerical analyses of load tests on bored piles, Numerical models in geomechanics, Proceedings of the 9 th Symposium on Numerical Models in Geotechnics, Kanada, pp 505-516, 2004.

  18. Comodromos E.M., Papadopoulou M. C., Rentzeperis I. K., Pile foundation analysis and design using experimental data and 3-D numerical analysis, Computers and Geotechnics, vol. 36, pp 819–836, 2009.

  19. Hrubesova E., Lahuta H., Duris L., Jaafar M., Mathematical modeling of foundation-subsoil interaction, Proceedings of 15 th International Multidisciplinary Scientific GeoConference SGEM 2015. Albena, Bulgaria. pp. 437-444, 2015.

  20. Holko M., Stacho, J., Comparison of Numerical Analyses with a Static Load Test of a Continuous Flight Auger Pile, Slovak Journal of Civil Engineering, vol. 22, pp 1-10, 2014.

  21. Schanz T., Vermeer P.A., Bonnier P.G., The hardening soil model: Formulation and verification, Beyound 2000 in computational geotechnics – 10 Years of Pl axis. Balkema, Rotterdam, 1999.

  22. Pucker T., Grabe J., Numerical simulation of the installation process of full displacement piles, Computers and Geotechnics, vol. 45, pp. 81-90, 2012.

  23. Frankovska J., Sulovska M., Turc ek P., Foundations, geotechnical parameters, spread and deep foundation, STU in Bratislava, Slovakia, 162 p, 2011. [1 1] Zhang Q.Q., Zhang Z.M., HE J.Y., A simplified approach for settlement analysis of single pile and pile group considering interaction between identical piles in multilayered soils, Computer and Geotechnics, vol. 37/issue 7–8, pp 969-976, 2010.

  24. Tomlinson M., Woodward J., Pile design and construction practice – Fifth edition, Taylor & Francis, United Kingdom, 551 p, 2007.

  25. Viggiani C., Mandolini A. , Russo, G., Piles and Pile Foundations, Taylor & Francis, United Kingdom, 278 p, 2012. [1 4] Stacho J., Analysis of pile design taking into account the technology impact, Dissertation thesis, STU in Bratislava, Slovakia, 200 p, 2015.

  26. Masopust J., Special foundation engineering, Academic publishing CERN, s. r. o. Brno, Czech Republic, 143 p, 2004. 16th International Scientific GeoConference SGEM2016 www.sgem.org

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