Modeling nonlinear dissipative chemical dynamics by a forced modified Van der Pol-Duffing oscillator with asymmetric potential: Chaotic behaviors predictions

dc.contributor.authorMONWANOU, VINCENT ADJIMON
dc.contributor.authorMIWADINOU, Clément
dc.contributor.authorYOVOGAN, JULIEN
dc.contributor.authorHINVI, Laurent
dc.contributor.authorPeguy, Russel
dc.contributor.authorCHABI OROU, JEAN BIO
dc.date.accessioned2026-06-02T16:06:57Z
dc.date.available2026-06-02T16:06:57Z
dc.date.issued2018
dc.description.abstractThis paper addresses the issues of nonlinear chemical dynamics modeled by a modified Van der Pol-Duffing oscillator with asymmetric potential. The Melnikov method is utilized to analytically determine the domains boundaries where Melnikov’s chaos appears in chemical oscillations.Routes to chaos are investigated through bifurcations structures, Lyapunov exponent, phase portraits and Poincaré section. The effects of parameters in general and in particular the effect of the constraint parameter β which shows the difference between a nonlinear chemical dynamics order two differential equation and ordinary Van der Pol-Duffing equation are analyzed. Results of analytical investigations are validated and complemented by numerical simulations.
dc.identifier.doi10.1016/j.cjph.2018.03.033
dc.identifier.otherBECDB-7471
dc.identifier.urihttps://dspace.uac.bj/handle/123456789/6727
dc.language.isofr
dc.relation.ispartofChinese Journal of Physics
dc.subjectForced modified Van der Pol-Duffing oscillator
dc.subjectNonlinear dissipative chemical dynamics
dc.subjectMelnikov’s chaos
dc.subjectBifurcation
dc.subjectBasin of attraction
dc.subjectDissipative chaos
dc.titleModeling nonlinear dissipative chemical dynamics by a forced modified Van der Pol-Duffing oscillator with asymmetric potential: Chaotic behaviors predictions
dc.typeArticle

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