LAPSE:2023.30091
Published Article
LAPSE:2023.30091
Numerical Simulations of Cryogenic Hydrogen Cooling in Vortex Tubes with Smooth Transitions
April 14, 2023
Improving efficiency of hydrogen cooling in cryogenic conditions is important for the wider applications of hydrogen energy systems. The approach investigated in this study is based on a Ranque-Hilsch vortex tube (RHVT) that generates temperature separation in a working fluid. The simplicity of RHVT is also a valuable characteristic for cryogenic systems. In the present work, novel shapes of RHVT are computationally investigated with the goal to raise efficiency of the cooling process. Specifically, a smooth transition is arranged between a vortex chamber, where compressed gas is injected, and the main tube with two exit ports at the tube ends. Flow simulations have been carried out using STAR-CCM+ software with the real-gas Redlich-Kwong model for hydrogen at temperatures near 70 K. It is determined that a vortex tube with a smooth transition of moderate size manifests about 7% improvement of the cooling efficiency when compared vortex tubes that use traditional vortex chambers with stepped transitions and a no-chamber setup with direct gas injection.
Keywords
Computational Fluid Dynamics, cryogenics, hydrogen systems, vortex tubes
Suggested Citation
Matveev KI, Leachman J. Numerical Simulations of Cryogenic Hydrogen Cooling in Vortex Tubes with Smooth Transitions. (2023). LAPSE:2023.30091
Author Affiliations
Matveev KI: School of Mechanical and Materials Engineering, Washington State University, Pullman, WA 99164-2920, USA [ORCID]
Leachman J: School of Mechanical and Materials Engineering, Washington State University, Pullman, WA 99164-2920, USA [ORCID]
Journal Name
Energies
Volume
14
Issue
5
First Page
1429
Year
2021
Publication Date
2021-03-05
Published Version
ISSN
1996-1073
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Original Submission
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PII: en14051429, Publication Type: Journal Article
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LAPSE:2023.30091
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doi:10.3390/en14051429
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Apr 14, 2023
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