LAPSE:2023.17413
Published Article
LAPSE:2023.17413
Numerical Investigation of the Secondary Swirling in Supersonic Flows of Various Nature Gases
Vyacheslav Volov, Nikolay Elisov, Anton Lyaskin
March 6, 2023
Abstract
Despite the application of vortex tubes for cooling, separating gas mixtures, vacuuming, etc., the mechanism of energy separation in vortex tubes remains an object of discussion. This paper studies the effect of secondary swirling in supersonic flows on the energy separation of monatomic and diatomic gases. The approach used is a numerical solution of the Reynolds-averaged Navier-Stokes equations, closed by the Reynolds Stress Model turbulence model. The modelling provided is for a self-vacuuming vortex tube with air, helium, argon, and carbon dioxide. According to the results of the calculations, the effect of secondary swirling is inherent only in viscous gases. A comparison was made between obtained total temperature difference, the level of secondary swirling and power losses on expansion from the nozzle, compression shocks, friction, turbulence, and energy costs to develop cascaded swirl structures. Our results indicate that helium and argon have the highest swirling degree and, consequently, the highest energy separation. Moreover, it can be concluded that the power costs on the development of cascaded vortex structures have a significant role in the efficiency of energy separation.
Keywords
Computational Fluid Dynamics, energy separation, Ranque-Hilsch vortex tube, tangential nozzle
Suggested Citation
Volov V, Elisov N, Lyaskin A. Numerical Investigation of the Secondary Swirling in Supersonic Flows of Various Nature Gases. (2023). LAPSE:2023.17413
Author Affiliations
Volov V: Natural Science Department, Samara State Transport University, 443066 Samara, Russia
Elisov N: Independent Researcher, 443086 Samara, Russia [ORCID]
Lyaskin A: Department of Expertise, “ERA” Military Innovative Technopolis, 353456 Anapa, Russia
Journal Name
Energies
Volume
14
Issue
23
First Page
8122
Year
2021
Publication Date
2021-12-03
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14238122, Publication Type: Journal Article
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LAPSE:2023.17413
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https://doi.org/10.3390/en14238122
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