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Numerical investigation of a standing-wave thermoacoustic device
- Source :
- Thermophysics and Aeromechanics. 22:313-318
- Publication Year :
- 2015
- Publisher :
- Pleiades Publishing Ltd, 2015.
-
Abstract
- The thermoacoustic effect concerns conversion of energy between a gas and a solid in the presence of acoustic waves. Although the working principle is well understood, the optimal design of thermoacoustic devices remains a challenge. The present work aims to perform a numerical simulation of a simple standing-wave thermoacoustic device. The analysis of the flow and the prediction of the heat transfer are performed by solving the non-linear unsteady Navier–Stokes equations using the finite volume method implemented in the commercial code ANSYS-CFX. The goal of this work is to study the effect of the stack temperature gradient, on the acoustic pressure and the produced acoustic power. This stack temperature gradient generates the thermoacoustic instability in standing-wave thermoacoustic resonator. The obtained results show an increase of the acoustic pressure and the acoustic power while increasing in the stack temperature gradient. The thermodynamic cycles of the thermoacoustic device are illustrated and observed for the different stack temperature gradients.
- Subjects :
- Nuclear and High Energy Physics
Radiation
Materials science
business.industry
Acoustics
Mathematics::Analysis of PDEs
Thermoacoustics
Acoustic wave
Computational fluid dynamics
Sound power
Mathematics::Numerical Analysis
Temperature gradient
Stack (abstract data type)
Heat transfer
Thermoacoustic heat engine
business
Subjects
Details
- ISSN :
- 15318699 and 08698643
- Volume :
- 22
- Database :
- OpenAIRE
- Journal :
- Thermophysics and Aeromechanics
- Accession number :
- edsair.doi...........6c80916b052ab89f161762552e03d2e2
- Full Text :
- https://doi.org/10.1134/s0869864315030051