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Surfactant destabilization and non-linear phenomena in two-fluid shear flows at small Reynolds numbers

Kalogirou, A.; Papageorgiou, Demetrios T.; Smyrlis, Yiorgos- Sokratis

Authors

Demetrios T. Papageorgiou

Yiorgos- Sokratis Smyrlis



Abstract

The flow of two superposed fluids in a channel in the presence of an insoluble surfactant is studied. Asymptotic analysis when one of the layers is thin yields a system of coupled weakly non-linear evolution equations for the film thickness and the local surface surfactant concentration. Film and main flow dynamics are coupled through a non-local term, and in the absence of surfactants the model is nonlinearly stable with trivial large time solutions. Instability arises due to the presence of surfactants and the pseudo-differential non-linear system is solved numerically by implementing accurate linearly implicit methods. Extensive numerical experiments reveal that the dynamics are mostly organized into travelling or time-periodic travelling wave pulses, but spatiotemporal chaos is also supported when the length of the system is sufficiently large. © The authors 2012.

Citation

Kalogirou, A., Papageorgiou, D. T., & Smyrlis, Y.-. S. (2011, July). Surfactant destabilization and non-linear phenomena in two-fluid shear flows at small Reynolds numbers. Presented at The IMA Conference on Nonlinearity and Coherent Structures, Reading, UK

Presentation Conference Type Conference Paper (published)
Conference Name The IMA Conference on Nonlinearity and Coherent Structures
Start Date Jul 6, 2011
End Date Jul 8, 2011
Acceptance Date Mar 28, 2012
Online Publication Date Jun 4, 2012
Publication Date Jun 4, 2012
Deposit Date Jun 4, 2019
Journal IMA Journal of Applied Mathematics (Institute of Mathematics and Its Applications)
Print ISSN 0272-4960
Electronic ISSN 1464-3634
Publisher Oxford University Press
Peer Reviewed Peer Reviewed
Volume 77
Issue 3
Pages 351-360
DOI https://doi.org/10.1093/imamat/hxs035
Keywords Applied Mathematics
Public URL https://nottingham-repository.worktribe.com/output/2138192