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Tytuł artykułu

On adaptive modelling and filtering in computer simulation and experimental mechanics

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents the application of the newly developed met ho d of the solution of nonlinear equations to the adaptive modelling and computer simulation. The approach is suitable when the system of equations call be arranged in such a way that it consists of a large number of linear equations and a smaller number of nonlinear equations. This situation occurs in the case of adaptive modelling of mechanical systems using finite elements or finite differences techniques. In this case the classical least square method becomes very effective. The paper presents several examples of the application of the method. A solution to the, so called, "black box" problem is also presented.
Rocznik
Strony
99--106
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
autor
  • Department of Mechanical and Manufacturing Engineering, The University af Calgary, 2500 University Dr, N.W., Calgary, AB, Canada, T2N1N4, lukasiew@ucalgary.ca
Bibliografia
  • [1] W. Cheney and D. Kincaid, Numerical Mathematics and Computing, Brooks/Cole Publishing Company, 1999.
  • [2] J.M. Ortega and W.C. Reinbolt, Iterative Solution of Nonlinear Equations in Several Variable, Academic Press, San Diego, 1970.
  • [3] KA. Sikorski, Optimal Solutions of Nonlinear Equations, University Press, Oxford, 2001.
  • [4] J.D. Faires and RL. Burden, Numerical Methods, Brooks/Cole Prindle, Weber and Schmidt Series, 1993.
  • [5] S.A. Łukasiewicz and M H. Hojjati, "Adaptive matrix filter", Proceedings of CANCAM 2003, University of Calgary, 384-385 (2003).
  • [6] M.H. Hojjati and S.A. Łukasiewicz, "Application of the adaptive matrix filter to inverse beat conduction prob lems", J. Thermal Stresses 26,1-14 (2003).
  • [7] S.A. Łukasiewicz and M.H. Hojjati, "Adaptive filter matrix for inverse problem in thermal field", Proc. 5th Int. Congress on Thermal Stresses and Related Topics, VA, (2003).
  • [8] S.A. Łukasiewicz and M.H. Hojjati, "A new hybrid method for solving linear non-linear systems of equations", Int. J. for Num. Methods in Eng. 63, 231-240 (2005).
  • [9] S.A. Łukasiewicz, "Matrix filter for correcting experimental data", Communications in Numerical Methods in Engineering 9, 797- 803 (1993).
  • [10] S.G. Gibbs, "Predicting the behavior of sucker-rod pumping systems", J. Society of Petroleum Engineers 6, 769-778 (1963).
  • [11] W.H. Ford and J.G. Svinos, "Effective application of beam pumping diagnostics", SPE Paper 17444, (1988).
  • [12] G.G. Gibbs and A.B. Neely, "Computer diagnosis of down-hole conditions in sucker rod pumping wells", J. Petroleum Engineering 1, 91-98 (1966).
  • [13] S.A Łukasiewicz, "Computer model evaluates oil pumping units in inclined wells", J. Canadian Petroleum Technology 29 (6), 76-79 (1990).
  • [14] Ł.F. Allen and J.G. Svinos, "Rod pumping optimization program reduces equipment failures and operating costs", SPE Paper 13247, (1984).
  • [15] I. Adamache, "Analytical Method for computer diagnostic analysis of sucker rod pumping well performance", Bolletitino della Associazione Mineraria Subalpina 13 (1-2), (1976).
  • [16] M.H. Hojjati and S.A. Łukasiewicz, "Modeling of sucker rod string", J. Canadian Engineering Society, (2005).
  • [17] K Kurpisz and A.J. Nowak, Inverse Thermal Problems, Computational Mechanics Publications, Boston, 1995.
  • [18] Qian, Rong, "Finite element and finite difference approach to thermal and dynamic inverse problems in structures", PhD. Thesis, 2003, The University of Calgary, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG5-0021-0018
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