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Failures of building constructions caused by design errors

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The work presents basic information regarding failures caused by design errors and discusses examples of this type of failures that occurred particularly due to the lack of recognition of the construction stability, as well as shortcomings in the procedure for checking a project. There is also shown the role of independent verification of major projects.
Twórcy
autor
  • The Institute of Civil Engineering, the Wrocław University of Environmental and Life Sciences
autor
  • The Institute of Civil Engineering, the Wrocław University of Environmental and Life Sciences
autor
  • The Faculty of Security Sciences, the Military Academy of Land Forces in Wrocław
Bibliografia
  • 1. Aagaard N. J., Failure and Documentation of Building Structures, [in:] Proceedings of the 19th CIB World Building Congress Construction and Society, Brisbane 2013.
  • 2. Abedi, K., and Parke, G. A. R., Progressive collapse of single-layer braced dome, [in:] “International Journal of Space Structures”, Vol. 11, No. 3, p. 291 – 306, 1996.
  • 3. Baryłka J., Katastrofy budowlane w Polsce spowodowane zjawiskami klimatycznymi, Konferencja Przygotowanie społeczeństwa do zagrożeń spowodowanych zmianami klimatu, Warszawa, 30.09.2009.
  • 4. Bažant Z. P., Structural Stability, [in:] “International Journal of Solids and Structures” 37, Pergamon, 2000, p. 55-67
  • 5. Berthier J. Accident du Terminal 2E, [online]. [available: 09.03.2015]. Available on the Internet: www.equipment.gouv.fr/article.php3?id_article=710.
  • 6. CRC for Construction Innovation, Building Procurement Methods, Brisbane, 2004, [online]. [available: 09.03.2015]. Available on the Internet: www.eprints.qut. edu.au/26844.
  • 7. Cunningham T., Choosing an Appropriate Main Contract for Building Work in the Republic of Ireland – an Overview, Dublin Institute of Technology, ARROW@DIT, 2013.
  • 8. Delatte, N. J., Beyond Failure, Forensic Case Studies for Civil Engineers, ASCE, New York, NY, 2009, p. 174-184
  • 9. Ericksen A. G., Coleman J. W. and Eyberg D. T., Jr., A Bigger & Better Hartford Coliseum, [in:] “Modern Steel Construction”, Vol. XIX No. 3 & 4 Third & Fourth Quarter 1979, Vol. XX No. 1, First Quarter 1980, p. 3-6.
  • 10. Feld J., and Carper, K., Construction Failure, 2nd ed., Wiley, New York, 1997.
  • 11. Firth I., Adding confidence and reducing risk - the role of independent design check-ing in major projects, IABSE Symposium, Weimar 2007.
  • 12. Geis J., Strobel K., and Liel A., Snow-Induced Building Failures, [in:] “J. Perrformance Constr. Facil.”, 26(4), 2012, 377-388.
  • 13. Gioncu V., Progressive Collapse and Explosions, COST C26 Urban Habitat Constructions under Catastrophic Events, 26-27 October 2007 Timisoara.
  • 14. Inquiry into the Basis of Design and Method of Erection of Steel-Box Girder Brigdes Report of the Merrison Committee of Inquiry, HMSO, London 1973.
  • 15. Iskhakov I. and Ribakov Y., Collapse analysis of Real RC Spatial Structures Using Known Failure Schemes of Ferro-cement Shell Models, The Structural Design of Tall and Special Buildings 23, p. 272-284, 2014.
  • 16. Kaminetzky D., Design and Construction Failures Lessons from Forensic Investigations, New York, McGraw-Hill Inc., 1991.
  • 17. Kyriakides, S., Propagation Instabilities in Structures, [in:] “Advanced in Applied Mechanics”, Vol. 30, 1993, p. 67-189.
  • 18. Lev Zetlin Associates, Report of the Engineering Investigation Concerning the Causes of the Collapse of the Hartford Coliseum Space Truss Roof on January 18, 1978, June 12, 1978.
  • 19. Levy, M., Salvadori, M., Why Buildings Fall Down: How Structures Fail, W. W. Nor-ton, 1992, New York, NY.
  • 20. Martin, R., and Delatte, N., Another look at Hartford Civic Center Coliseum Collapse, [in:] “J. Perform. Constr. Facil”., 15(1), p.31-36.
  • 21. Munch-Andersen J., Dietsch P., Robustness Considerations from Failures in Two Large-Span Timber Roof Structures.
  • 22. New Boarding Hall of Terminal 2E, [online]. [available: 09.03.2015]. Available on the Internet: www.aeroportsdeparis.fr.
  • 23. Runkiewicz L., Katastrofy i awarie budowlane – informacje techniczne i wnioski, [in:] “Przegląd budowlany”, no. 9/2008, p. 44 – 49.
  • 24. Runkiewicz L., Przyczyny techniczne występowania zagrożeń, awarii i katastrof budowlanych, [In:] “Inżynier budownictwa”, październik 2011 (88) p. 24 – 28.
  • 25. Smith E. A., Collapse Behavior of Space Trusses, CE 82-144, July 1982.
  • 26. Smith J. L., Swatzell R. and Hall B., Prevention of Progressive Collapse – DoD Guid-ance and Application, Building Design for Homeland Security – FEMA 426, Course no. E155, 2004.
  • 27. Smith, E. A. and Epstein, H. I., Hartford Coliseum Roof Collapse: Structural Collapse Sequence and Lessons Learned, [in:] “Civil Engineering”, ASCE 50, 1980, p. 59 -62.
  • 28. Soare, M., The Metallic Lattice Dome of the National Economy Exhibition Pavilion at Bucharest. in N. Esquillian and Y. Saillard (editors), Hanging Roofs, Proc. IASS Col-loquium on Hanging Roofs, Continous Metallic Shell Roofs, and Superficial Lattice Roofs, Paris, 1962, 276-287, North-Holland, Amsterdam.
  • 29. Structural Failures in Buildings – their Cause and Prevention, Consulting Engineers South Africa, 1996.
  • 30. Thelandersson S., Why do structural failures occur?, Lund University Sweden, [online]. [available: 09.03.2015]. Available on the Internet: www.boverket.se.
  • 31. Thornton, C. H., and Lew, P., Investigation of the Causes of Hartford Coliseum Col-lapse, [in:] Nooshin, H. (Ed.), Proceedings of the 3rd International Conference on Space Structure. Elsevier Applied Science Publishers, 1984, p. 636-641.
  • 32. Ustawa z dnia 7 lipca 1994 r., Prawo budowlane.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b51d4a44-a7d1-45df-8719-6af4d46bfd81
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