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Indicated mean effective pressure oscillations in a natural gas combustion engine by recurrence plots

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Warianty tytułu
PL
Analiza wykresów rekurencyjnych dla średniego efektywnego ciśnienia indykowanego w silniku spalinowym zasilanym gazem naturalnym
Języki publikacji
EN
Abstrakty
EN
We investigate the nonlinear time series of Indicated Mean Effective Pressure (IMEP) of the spark ignition engine cyclic combustion process of a natural gas. By applying the embedding theorem and the recurrence plots technique, we show changes in the engine dynamics for different equivalence ratios. Especially, we provide arguments for intermittency behaviour.
PL
Zbadano nieliniowe przebiegi czasowe Średniego Ciśnienia Indykowanego cyklicznego procesu spalania w silniku spalinowym zasilanym gazem naturalnym. Stosując twierdzenie o zanurzeniu oraz technikę wykresów rekurencyjnych, pokazano istotne różnice w dynamice silnika przy zmianie składu mieszanki paliwa wyrażonej wartością współczynnika równowagowego. W szczególności podano argumenty przemawiające za występowaniem zjawiska intermitencji.
Słowa kluczowe
Rocznik
Strony
55--67
Opis fizyczny
Bibliogr. 31 poz., rys., tab.
Twórcy
autor
autor
autor
autor
  • Technical University of Lublin, Department of Applied Mechanics, Lublin, Poland, g.litak@pollub.pl
Bibliografia
  • 1. Abarbanel H.D.I., 1996, Analysis of Observed Chaotic Data, Springer, Berlin
  • 2. Boguś P., Merkisz J., 2005, Misfire detection of locomotive diesel engine by non-linear analysis, Mechanical Systems and Signal Processing, 19, 881-899
  • 3. Casdagli M.C., 1997, Recurrence plots revisited, Physica D, 108, 12-44
  • 4. Costa M., Goldberger A.L., Peng C.-K., 2005, Multiscale analysis of biological signals, Phys Rev E, 89, 021906
  • 5. Daily J.W., 1988, Cycle-to-cycle variations: a chaotic process?, Combustion Science and Technology, 57, 149-162
  • 6. Daw C.S., Kennel M.B., Finney C.E.A., Connolly F.T., 1998, Observing and modelling dynamics in an internal combustion engine, Physical Review E, 57, 2811-2819
  • 7. Eckmann J.-P., Kamphorst S.O., Ruelle D., 1987, Recurrence plots of dynamical systems, Europhys. Lett., 5, 973-977
  • 8. Fraser A.M., Swinney H.L., 1986, Independent coordinates for strange attractors from mutual information, Phys. Rev. A, 33, 1134-1140
  • 9. Green J.B. Jr., Daw C.S., Armfield J.S., Finney C.E.A., Wagner R.M., Drallmeier J.A., Kennel M.B., Durbetaki P., 1999, Time irreversibility and comparison of cyclic-variability models, SAE Paper No. 1999- 01-0221
  • 10. Hegger R., Kantz H., Schreiber T., 1999, Practical implementation of nonlinear time series methods: The TISEAN package, Chaos, 9, 413-435
  • 11. Heywood J.B., 1988, Internal Combustion Engine Fundamentals, McGraw-Hill, New York
  • 12. Hu Z., 1996, Nonlinear instabilities of combustion processes and cycle-to-cycle variations in sparkignition engines, SAE paper No. 961197
  • 13. Kantor J.C., 1984, A dynamical instability of spark-ignited engines, Science, 224, 1233-1235
  • 14. Kantz H., Schreiber T., 1997, Non-linear Time Series Analysis, Cambridge University Press, Cambridge
  • 15. Kennel M.B., Brown R., Abarbanel H.D.I., 1992, Determining embedding dimension for phase-space reconstruction using a geometrical construction, Physical Review A, 45, 3403-3411
  • 16. Klimaszewska K., Żebrowski J.J., 2007, Detection of the type of intermittency and the associated bifurcation using characteristic patterns in recurrence plots, preprint
  • 17. Li G.-X., Yao B.-F., 2008, Nonlinear dynamics of cycle-to-cycle combustion variations in a lean-burn natural gas engine, Applied Thermal Engineering, 28, 611-620
  • 18. Litak G., Gajewski J., Syta A., Jonak J., 2008a, Quantitative estimation of the tools wear effect in a ripping head by recurrence plots, Journal of Theoretical and Applied Mechanics, 46, 521-530
  • 19. Litak G., Kamiński T., Czarnigowski J., Żukowski D., Wendeker M., 2007, Cycle-to-cycle oscillations of heat release in a spark ignition engine, Meccanica, 42, 423-433
  • 20. Litak G., Sawicki J.T., Kasperek R., 2008b, Cracked rotor detection by recurrence plots, Nondestructive Testing and Evaluation, DOI: 10.1080/10589750802570836, in press
  • 21. Marwan N., 2003, Encounters with Neighbours: Current Development of Concepts Based on Recurrence Plots and their Applications, PhD Thesis, Universitat Potsdam, Potsdam
  • 22. Marwan N., 2006, Recurrence Plots Code, http://www.agnld.unipotsdam.de/~marwan/6.download/rp.php
  • 23. Marwan N., Romano M.C., Thiel M., Kurths J., 2007, Recurrence plots for the analysis of complex systems, Physics Reports, 438, 237-329
  • 24. Matsumoto K., Tsuda I., Hosoi Y., 2007, Controlling engine system: a lowdimensional dynamics in a spark ignition engine of a motorcycle, Zeitschrift f¨ur Naturforschung, 62A, 587-595
  • 25. Pomeau Y., Manneville P., 1980, Intermittent transition to turbulence in dyssipative dynamical-systems, Communications in Mathematical Physics, 74, 189-197
  • 26. Sen A.K., Longwic R., Litak G., Górski K., 2008, Cycle-to-cycle pressure oscillations in a Diesel engine, Mechanical Systems and Signal Processing, 22, 362-373
  • 27. Takens F., 1981, Detecting strange attractors in turbulence, Lecture Notes in Mathematics, 898, Springer, Heidelberg, 366-381
  • 28. Thiel M., Romano M.C., Read P.L., Kurths J., 2004, Estimation of dynamical invariants without embedding by recurrence plots, Chaos, 14, 234-243
  • 29. Wagner R.M., Drallmeier J.A., Daw C.S., 2001, Characterization of lean combustion instability in pre-mixed charge spark ignition engines, International Journal of Engine Research, 1, 301-320
  • 30. Webber C.L. Jr., Zbilut J.P., 1994, Dynamical assessment of physiological systems and states using recurrence plot strategies, J. App. Physiol., 76, 965- 973
  • 31. Wendeker M., Litak G., Czarnigowski J., Szabelski K., 2004, Nonperiodic oscillations in a spark ignition engine, Int. J. Bifurcation and Chaos, 14, 1801-1806
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM4-0019-0004
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