Have a personal or library account? Click to login
Numerical Modeling of the Pipeline Uplift Mechanism in Clay Cover
Open Access
|Jan 2022

References

  1. Al-Rawas A. A., Goosen M. F. A. (2006) Expansive Soils, Taylor and Francis, London, New York.10.1201/9780203968079
  2. Bjerrum L., Eide O. (1956) Stability of strutted excavations in clay, Géotechnique, 6 (1), 115–28.10.1680/geot.1956.6.1.32
  3. Cheuk C., Take W., Bolton M., Oliveira J. (2007) Soil restraint on buckling oil and gas pipelines buried in lumpy clay fill, Engineering structures, 29, 973–982.10.1016/j.engstruct.2006.06.027
  4. Davie J. R., Sutherland H. B. (1977) Uplift resistance of cohesive soils, Journal of the Geotechnical Engineering Division, ASCE, 103 (9), 935–52.10.1061/AJGEB6.0000491
  5. Derriche Z., Iguechtal L., Tas M. (1999) Comportement des ouvrages dans les argiles expansives d’In-Aménas, French Journal of Geotechnics, 89, 55–65.10.1051/geotech/1999089055
  6. Djedid A., Bekkouche A., Aissa Mamoune S.M. (2001) Identification et prévision du gonflement de quelques sols de la région de Tlemcen (Algérie), Bulletin des laboratoires des ponts et chaussées, 233, 67–75.
  7. Eiksund G., Langø H., Øiseth E. (2013) Full-scale test of uplift resistance of trenched pipes, International Journal of O shore and Polar Engineering, 23 (4), 298–306.
  8. Fattah M. Y., Salim N. M., Irshayyid E. J. (2017) Influence of soil suction on swelling pressure of bentonite-sand mixtures, European Journal of Environmental and Civil Engineering, https://doi.org/10.1080/19648189.2017.1320236, Taylor & Francis.10.1080/19648189.2017.1320236
  9. Fattah M. Y., Hassan W. H., Rasheed S. E. (2018) Effect of geocell reinforcement above buried pipes on surface settlement, International Review of Civil Engineering (I.RE.C.E.), 9 (2), 86–90.
  10. Gallage C., Chan D., Kodikara J. (2012) Response of a plastic pipe buried in expansive clay, ICE Proceedings Geotechnical Engineering, 165 (1), 45–57, DOI: 10.1680/geng.12.00086.10.1680/geng.12.00086
  11. Gould S., Boulaire F., Kodikara J. (2009) Understanding how the Australian climate can affect pipe failure, Proceedings of Oz Water 09.AWA, Melbourne, Australia.
  12. Gould, S. (2011), A study of the failure of buried reticulation pipes in reactive soils, Ph.D. Dissertation, Australia, Civil Engineering, Monash University.
  13. Hachichi A., Fleureau J. M. (1999) Caractérisation et stabilisation de quelques sols gonflants d’Algérie, French Journal of Geotechnics, 86, 37–51.10.1051/geotech/1999086037
  14. Kassiff G., Zeitlen J. G. (1962) Behavior of pipes buried in expansive clay, Journal of the Soil Mechanics and Foundations Division, ASCE, 88, 132–148.10.1061/JSFEAQ.0000401
  15. Makar J. M., Desnoyers R., McDonald S. E. (2001) Failure modes and mechanisms in gray cast iron pipe, Ontario, Canada, 1–10.
  16. Maltby T. C., Calladine C. R. (1995) An investigation into upheaval buckling of buried pipelines – II Theory and analysis of experimental observations, Int. J. Mech. Sci, 37 (9), 965–983.10.1016/0020-7403(95)00005-I
  17. Martin C. M., White D. J. (2012) Limit analysis of the undrained bearing capacity of o shore pipelines, Géotechnique 62 (9), 847–863.10.1680/geot.12.OG.016
  18. McGrath T. J. (1998) Pipe-soil interactions during backfill placement, Ph.D. Thesis, University of Massachusetts, Amherst, MA.
  19. Ng C. W. W., Springman S. M. (1994) Uplift resistance of buried pipelines in granular materials, Proc. Centrifuge 94, Singapore, 753–758.
  20. Pettibone C. H., Howard A. K. (1976) Distribution of soil pressures on concrete pipe, Journal of Pipeline Division, ASCE, 93 (2), 85–102.10.1061/JPLEAZ.0000108
  21. Philipponat G. (1991) Retrait-gonflement des argiles, proposition de méthodologie, French Journal of Geotechnics, 57, 5—22.10.1051/geotech/1991057005
  22. Potter J. C. (1985) Effects of vehicles on buried high pressure pipe, Journal of Transportation Engineering, 111 (3), 224–235.10.1061/(ASCE)0733-947X(1985)111:3(224)
  23. Rajani B., Zhan C., Kuraoka S. (1996) Pipe–soil interaction analysis of jointed water mains, Canadian Geotech J., 33 (3), 393–404.
  24. Rajeev, P., Kodikara J. (2011) Numerical analysis of an experimental pipe buried in swelling soil, Computers and Geotechnics, 38, 897–904.10.1016/j.compgeo.2011.06.005
  25. Randolph M. F., Houlsby G. T. (1984) The limiting pressure on a circular pile loaded laterally in cohesive soil, Geotechnic, 34 (4), 613–623.10.1680/geot.1984.34.4.613
  26. Rjeily Y. E. A., Khouri M. F. (2014) Longitudinal stress analysis of buried pipes under expansive soils, International Journal of Science and Research (IJSR), bf 3 (11), 2593–2599.
  27. Sargand S. M., Hazen G. A. (1998) Field verification of standard installation direct method for concrete pipe, Ohio Research Institute for Transportation and the Environment.
  28. Schaminée P. E. L., Zorn N. F., Schotman G. J. M. (1990) Soil response for pipeline upheaval buckling analysis: Full scale laboratory tests and modelling, O shore Technology Conference, Houston, OTC 6486 563–572.10.4043/6486-MS
  29. Shumulevich I., Galili N., Foux A. (1985) Soil stress distribution around buried pipes, Journal of Transportation Engineering, 112 (5), 481–493.10.1061/(ASCE)0733-947X(1986)112:5(481)
  30. Trautman C. H., O’Rourke T. D., Kulhawy F. H. (1985) Uplift force-displacement response of buried pipe, Journal of Geotechnical Eng. Division, ASCE, 111 (9), 1061–1075.
  31. Vandangeon P. (1992) Exemples de sinistres en région parisienne, French Journal of Geotechnics, 58, 7–14.10.1051/geotech/1992058007
  32. Vu H. Q. (2002) Uncoupled and coupled solutions of volume change problems in expansive soils, Doctoral thesis, Dept Civil Engineering, University of Saskatchewan.
  33. Wang, J., Haigh S. K., Thusyanthan N. I. (2009) Uplift resistance of buried pipelines in blocky clay backfill, Proc. International O shore (Ocean) and Polar Engineering Conference, ISOPE 2009 TPC 564.
  34. WSAA (2008) Australian Urban Water Industry, Water Services Association of Australia, Report card 2007/2008.
DOI: https://doi.org/10.2478/heem-2021-0007 | Journal eISSN: 2300-8687 | Journal ISSN: 1231-3726
Language: English
Page range: 119 - 135
Submitted on: Jun 12, 2021
Accepted on: Dec 5, 2021
Published on: Jan 18, 2022
Published by: Polish Academy of Sciences, Institute of Hydro-Engineering
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2022 Kattar Abdelfateh, Baheddi Mohamed, Mohammed Yousif Fattah, published by Polish Academy of Sciences, Institute of Hydro-Engineering
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.