Linear stability of supersonic Couette flow of a molecular gas under the conditions of viscous stratification and excitation of the vibrational mode
- Авторлар: Grigor’ev Y.N.1,2, Ershov I.V.1,3
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Мекемелер:
- Institute of Computational Technologies
- Novosibirsk State University
- Novosibirsk State University of Architecture and Civil Engineering (Sibstrin)
- Шығарылым: Том 52, № 1 (2017)
- Беттер: 9-24
- Бөлім: Article
- URL: https://journals.rcsi.science/0015-4628/article/view/155428
- DOI: https://doi.org/10.1134/S0015462817010021
- ID: 155428
Дәйексөз келтіру
Аннотация
The linear stability of viscous two-dimensional perturbations in the supersonic plane Couette flow of perfect and vibrationally excited gases is investigated. In both cases an alternative is considered so that the transport coefficients were taken either constant or dependent on the static flow temperature. The Sutherland model is used to take the temperature dependence of the shear viscosity into account. It is shown that “viscous” stratification increases considerably the flow stability as compared with the case of constant viscosity. At the same time, the simple constant viscosity model conserves all characteristic features of the development of viscous perturbations in the Sutherland model. The dissipation effect of excitation of the vibrational mode is conserved in taking the temperature dependence of the transport coefficients into account. For both models the corresponding increase in the critical Reynolds number is of approximately 12%.
Негізгі сөздер
Авторлар туралы
Yu. Grigor’ev
Institute of Computational Technologies; Novosibirsk State University
Хат алмасуға жауапты Автор.
Email: grigor@ict.nsc.ru
Ресей, pr. Akademika Lavrenteva 6, Novosibirsk, 630090; ul. Pirogova 2, Novosibirsk, 630090
I. Ershov
Institute of Computational Technologies; Novosibirsk State University of Architecture and Civil Engineering (Sibstrin)
Email: grigor@ict.nsc.ru
Ресей, pr. Akademika Lavrenteva 6, Novosibirsk, 630090; ul. Leningradskaya 113, Novosibirsk-8, 630008
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