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General FEM model of prestressing tendons

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
Polish Conference on Computer methods in mechanics (14 ; 26-29.05.1999 ; Rzeszów, Poland)
Języki publikacji
EN
Abstrakty
EN
The paper presents a general numerical model for the analysis of prestressed concrete with the application to beam, thin shell and volume type of prestressed structures. Discrete, embedded approach is used to model curved, bonded or unbonded tendons. Also a partial bond may be introduced by the friction between the tendon and the surrounding body. In the finite element model, two types of elements are obtained. One is a typical finite element for the kind of structure modeled, and the other is an embedded, three noded, subparametric tendon element. Equations of the finite element method have been obtained from the incremental form of the principle of virtual work providing geometrical linearity and possibility of nonlinear physical relations. Numerical examples illustrate application to modeling of beam, thin shell and volume type of prestressed structures as well as the impact of the friction on the axial force distribution in prestressing tendon.
Rocznik
Strony
435--448
Opis fizyczny
Bibliogr. 20 poz., rys., wykr.
Twórcy
autor
  • Institute of Civil Engineering, Wrocław University of Technology [Instytut Budownictwa Lądowego Politechniki Wrocławskiej], Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
autor
  • Institute of Civil Engineering, Wrocław University of Technology [Instytut Budownictwa Lądowego Politechniki Wrocławskiej], Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
Bibliografia
  • [1] S. Ahmad, B. M. Irons, O. C. Zienkiewicz. Analysis of thick and thin shell structures by curved finite elements. International Journal for Numerical Methods in Engineering, 2: 419-451, 1970.
  • [2] D. Antoniak, P. Konderla. Nonlinear model of prestressing tendons. Zeitschrift ftir Angewandte Mathematik und Mechanik, 77(Suppl. 1): S17—S18, 1996.
  • [3] D. Antoniak, P. Konderla. Physical modelling of prestressed structures. In Proceedings of the XII Polish Conference on Computer Methods in Mechanics, pages 99-106, May 1997.
  • [4] D. Antoniak, P. Konderla. Modeling and numerical analysis of prestressed concrete shells. Archives of Civil Engineering, XLV(2): 119-136, 1999.
  • [5] S. Balakrishnan, D. W. Murray. Finite element prediction of reinforced concrete behaviour. Structural Engineering Report No. 138, University of Alberta, Edmonton, Canada, 1986.
  • [6] A. L. Bouma, A. C. Van Riel, H. Van Koten, W.J. Beranek. Investigation on models of eleven cylindrical shells made of reinforced and prestressed concrete. In Proceedings of the Symposium on Shell Research, Delft, Amsterdam, 1961. North-Holland.
  • [7] W. F. Chen. Plasticity in Reinforced Concrete. McGraw—Hill, 1982.
  • [8] N. El-Mezaini, E. Citipitioglu. Finite element analysis of prestressed and reinforced concrete structures. Journal of Structural Mechanics, 117(10): 2851-2865, October 1991.
  • [9] A. E. Elwi, T. M. Hrudey. Finite element model for curved embedded reinforcement. Journal of Engineering Mechanics, 115(4): 740-754, April 1989.
  • [10] G. Hofstetter, H.A. Mang. Computational plasticity of reinforced and prestressed concrete structures. Computational Mechanics, 17: 242-254, 1996.
  • [11] G. Hofstetter, H. A. Mang. Computational Mechanics of Reinforced Concrete Structures. Vieweg Verlag, Braunshweig/Wiesbaden, 1995.
  • [12] H.B. Kupfer, K.H. Gerstle. Behavior of concrete under biaxial stresses. Journal of Engineering Mechanics Division, 99(EM4): 852-866, August 1973.
  • [13] H. A. Mang, G. Menschke. Nonlinear finite element analysis of reinforced and prestressed concrete structures. Engineering Structures, 13(2): 211-226, April 1991.
  • [14] S. F. Pawsey, R. W. Clough. Improved numerical integration of thick shell finite elements. International Journal for Numerical Methods in Engineering, 3: 575-586, 1971.
  • [15] D. V. Philips, O. C. Zienkiewicz. Finite element non-linear analysis of concrete structures. Proceedings of Institute of Civil Engineering, 61(1): 59-88, 1976.
  • [16] P. Roca, A. R. Mari. Nonlinear geometric and material analysis of prestressed concrete general shell structures. Computers and Structures, 46(5): 917-929, 1993.
  • [17] P. Roca, A. R. Mari. Numerical treatment of prestressing tendons in the nonlinear analysis of prestressed concrete structures. Computers and Structures, 46(5): 905-916, 1993.
  • [18] A. C. Scordelis. Computer models for nonlinear analysis of reinforced and prestressed concrete structures. PCI Journal, 116-135, November-December 1984.
  • [19] O. C. Zienkiewicz, R. L. Taylor. Finite element method. McGraw-Hill Book Company, London, 4'th edition, 1989.
  • [20] 0. C. Zienkiewicz, R. L. Taylor, J. M. Too. Reduced integration technique in general analysis of plates and shells. International Journal for Numerical Methods in Engineering, 3: 275-290, 1971.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB1-0005-0013
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