Filament dynamics in confined chemical gardens and in filiform corrosion

Author:

Brau Fabian12345ORCID,Haudin Florence12345,Thouvenel-Romans Stephanie6789,De Wit Anne12345ORCID,Steinbock Oliver6789ORCID,Cardoso Silvana S. S.10111213ORCID,Cartwright Julyan H. E.1415161718ORCID

Affiliation:

1. Université libre de Bruxelles (ULB)

2. Nonlinear Physical Chemistry Unit

3. Faculté des Sciences

4. 1050 Brussels

5. Belgium

6. Department of Chemistry and Biochemistry

7. Florida State University

8. Tallahassee

9. USA

10. Department of Chemical Engineering and Biotechnology

11. University of Cambridge

12. Cambridge CB2 3RA

13. UK

14. Instituto Andaluz de Ciencias de la Tierra

15. CSIC-Universidad de Granada

16. Granada

17. Spain

18. Instituto Carlos I de Física Teórica y Computacional

Abstract

Once rescaled by the preferred wavenumber ω* of the curvature power spectrum, both filiform corrosion and chemical garden filaments display similar dynamics.

Funder

National Science Foundation

Leverhulme Trust

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Reference33 articles.

1. G. Nicolis and I.Prigogine , Self-organization in non-equilibrium systems , Wiley , New York , 1977

2. J. A. Pojman and I. R.Epstein , An Introduction to Nonlinear Chemical Dynamics: Oscillations, Waves, Patterns, and Chaos , Oxford University Press , Oxford , 1998

3. Self-organization in precipitation reactions far from the equilibrium

4. FACTORS AFFECTING TRANSMISSION AND RECOVERY IN THE PASSIVE IRON NERVE MODEL

5. Waves and Vortices of Rust on the Surface of Corroding Steel

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