Have a personal or library account? Click to login
Random analysis of bearing capacity of square footing using the LAS procedure Cover

Random analysis of bearing capacity of square footing using the LAS procedure

Open Access
|Nov 2016

References

  1. [1] EN 1990:2002. Eurocode: Basis of structural design. CEN, European Committee for Standardization, Brussels.
  2. [2] FENTON G.A., GRIFFITHS D.V., Bearing-capacity prediction of spatially random c φ soils, Canadian Geotechnical Journal, 2003, 40(1), 54-65.10.1139/t02-086
  3. [3] FENTON G.A., GRIFFITHS D.V., Risk Assessment in Geotechnical Engineering, John Wiley & Sons, New York 2008.10.1002/9780470284704
  4. [4] FENTON G.A., VANMARCKE E.H., Simulation of random fields via local average subdivision, Journal of Engineering Mechanics, 1990, 116(8), 1733-1749.10.1061/(ASCE)0733-9399(1990)116:8(1733)
  5. [5] FLAC 3D Fast Lagrangian Analysis of Continua in 3 Dimensions: User’s Guide. (2006). Minneapolis: Itasca Consulting Group, Inc.
  6. [6] GRIFFITHS D.V., FENTON G.A., Seepage beneath water retaining structures founded on spatially random soil, Geotechnique, 1993, 43(4), 577-587.10.1680/geot.1993.43.4.577
  7. [7] GRIFFITHS D.V., FENTON G.A., Bearing capacity of spatially random soil: the undrained clay Prandtl problem revisited, Geotechnique , 2001, 351-359.10.1680/geot.2001.51.4.351
  8. [8] HICKS M.A., SAMY K., Stochastic evaluation of heterogeneous slope stability, Italian Geotechnical Journal, 2004, 38(2), 54-66.
  9. [9] HICKS M.A., SPENCER W.A., Influence of heterogeneity on the reliability and failure of a long 3D slope, Computers and Geotechnics, 2010, 37(7), 948-955.10.1016/j.compgeo.2010.08.001
  10. [10] KAWA M., ŁYDŻBA D., Evaluation of Bearing Capacity of Strip Footing Using Random Layers Concept, Studia Geotechnica et Mechanica, 2015, 37(3), 31-39.10.1515/sgem-2015-0030
  11. [11] LOOMIS L.H., Introduction to abstract harmonic analysis, Courier Corporation, 2011.
  12. [12] LOW B.K., PHOON K.K., Reliability-based design and its complementary role to Eurocode 7 design approach, Computers and Geotechnics, 2015, 65, 30-44.10.1016/j.compgeo.2014.11.011
  13. [13] LUMB P., The variability of natural soils, Canadian Geotechnical Journal, 1966, 3(2), 74-97.10.1139/t66-009
  14. [14] PIECZYŃSKA J., PUŁA W., GRIFFITHS D.V., FENTON G.A., Probabilistic characteristics of strip footing bearing capacity evaluated by random finite element method, Proceedings of the 11th International Conference on Applications of Statistics and Probability in Soil and Structural Engineering (ICASP), Zurich 2011.10.1201/b11332-249
  15. [15] PIECZYŃSKA-KOZŁOWSKA J.M., PUŁA W., GRIFFITHS D.V., FENTON G.A., Influence of embedment, self-weight and anisotropy on bearing capacity reliability using the random finite element method, Computers and Geotechnics, 2015, 67, 229-238.10.1016/j.compgeo.2015.02.013
  16. [16] PUŁA W., Zastosowania teorii niezawodności konstrukcji do oceny bezpieczeństwa fundamentów, Oficyna Wydaw. Politechniki Wrocławskiej, Wrocław 2004, (in Polish).
  17. [17] PUŁA W., ZASKÓRSKI Ł., Estimation of the probability distribution of the random bearing capacity of cohesionless soil using the random finite element method, Structure and Infrastructure Engineering, 2015, 11(5), 707-720.10.1080/15732479.2014.903501
  18. [18] RAHMAN M., NGUYEN H.B., Applications of Random Finite Element Method in Bearing Capacity Problems, [in:] ADVCOMP 2012. The Sixth International Conference on Advanced Engineering Computing and Applications in Sciences, 2012, 53-58.
  19. [19] RÓŻAŃSKI A., STEFANIUK D., Prediction of soil solid thermal conductivity from soil separates and organic matter content: computational micromechanics approach, European Journal of Soil Science, 2016, 67, 551-563.10.1111/ejss.12368
  20. [20] SAMY K., Stochastic analysis of soils, MEng Thesis, University of Manchester, 1998.
  21. [21] SAMY K., Stochastic analysis with finite elements in geotechnical engineering, PhD Thesis, University of Manchester, 2003.
  22. [22] SHIELD R.T., DRUCKER D.C., The application of limit analysis to punch-indentation problems, Journal of Applied Mechanics- Transactions of the ASME, 1953, 20(4), 453-460.10.1115/1.4010747
  23. [23] SPENCER W.A., Parallel Stochastic and Finite Element Modelling of Clay Slope Stability in 3D, PhD Thesis, University of Manchester, 2007.
  24. [24] SPENCER W., HICKS M., A 3D finite element study of slope reliability, Proceedings of the 10th International Symposium on Numerical Models in Geomechanics, Rhodes, Greece 2007, 539-543.
  25. [25] STEFANIUK D., RÓŻAŃSKI A., ŁYDŻBA D., Recovery of microstructure properties: random variability of soil solid thermal conductivity, Studia Geotechnica et Mechanica, 2016, 38(1), 99-107.10.1515/sgem-2016-0011
  26. [26] VANMARCKE E.H., Probabilistic modeling of soil profiles, Journal of the Geotechnical Engineering Division, 1977a, 103(11), 1227-1246.10.1061/AJGEB6.0000517
  27. [27] VANMARCKE E.H., Reliability of earth slopes, Journal of the Geotechnical Engineering Division, 1977b, 103(11), 1247-1265.10.1061/AJGEB6.0000518
  28. [28] VANMARCKE E.H., Random fields: Analysis and synthesis, The MIT Press, Cambridge 1983.
  29. [29] VESSIA G., CHERUBINI C., PIECZYNSKA J., PULA W., Application of random finite element method to bearing capacity design of strip footing, Journal of GeoEngineering, 2009, 4(3), 103-112.
  30. [30] ZASKÓRSKI Ł., PUŁA W., Calibration of characteristic values of soil properties using the random finite element method, Archives of Civil and Mechanical Engineering, 2016, 16(1), 112-124.10.1016/j.acme.2015.09.007
DOI: https://doi.org/10.1515/sgem-2016-0021 | Journal eISSN: 2083-831X | Journal ISSN: 0137-6365
Language: English
Page range: 3 - 13
Published on: Nov 8, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Marek Kawa, Wojciech Puła, Michał Suska, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.