Phenomenological approach to 3D spinning combustion waves: numerical experiments with a rectangular rod

Article


Strunin, Dmitry V. and Suslov, Sergey A.. 2005. "Phenomenological approach to 3D spinning combustion waves: numerical experiments with a rectangular rod." International Journal of Self Propagating High Temperature Synthesis. 14 (1), pp. 33-39.
Article Title

Phenomenological approach to 3D spinning combustion waves: numerical experiments with a rectangular rod

ERA Journal ID4788
Article CategoryArticle
AuthorsStrunin, Dmitry V. (Author) and Suslov, Sergey A. (Author)
Journal TitleInternational Journal of Self Propagating High Temperature Synthesis
Journal Citation14 (1), pp. 33-39
Number of Pages7
Year2005
Place of PublicationNew York, USA
ISSN1061-3862
1934-788X
Web Address (URL)http://www.maik.ru
Abstract

The spinning waves occur in solid flames and detonation when the plane uniformly propagating reaction front loses stability. As a result, the front breaks into localized zones of intensive reaction. We study a 3D phenomenological model aimed at modeling such phenomena. The model constitutes a nonlinear partial differential equation.
This work contains preliminary results demonstrating the capacity of the model to reproduce basic experimental features of the unstable front: metastability of the uniform state and formation of self-sustained regime with predominantly lateral propagation of the front curvature.

Keywordsphenomenological differential equation, spinning combustion
ANZSRC Field of Research 2020340602. Chemical thermodynamics and energetics
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Byline AffiliationsDepartment of Mathematics and Computing
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