Research Article

An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators

Volume: 24 Number: 2 May 26, 2021
EN

An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators

Abstract

We introduce a reduced-order endoreversible model of a Vuilleumier refrigerator for waste heat recovery. Based on the Vuilleumier cycle, in this refrigerator a working gas is alternately displaced between three subsystems that are in thermal contact with external heat reservoirs. Regarding refrigeration performance, very crucial components of the Vuilleumier machine are its two regenerators. For obtaining a sufficiently accurate model of the Vuilleumier machine, it is hence essential to incorporate a proper description of the regenerators. This can be achieved by using one-dimensional continuum models, e.g. with a finite volume approach, which brings about a large number of degrees of freedom and significant numerical effort. As opposed to that, the model presented in this paper utilizes a novel modeling ansatz for the regenerators that reduces the number of degrees of freedom per regenerator to three. It leads to a considerable reduction in numerical effort and computation time and is hence predestined for applications like design and control optimizations. For an exemplary set of design parameters and operational conditions, we validate the model against a detailed finite volume model of the regenerators in order to work out limitations and perspectives.

Keywords

Supporting Institution

German Federal Ministry of Education and Research

Project Number

FKZ01LY1706B

Thanks

The authors thank the German Federal Ministry of Education and Research for supporting this work carried out within the framework of “KMU-innovativ”, support code FKZ01LY1706B.

References

  1. R. Stirling, “Inventions for diminishing the consumption of fuel and in particular an engine capable of being applied to the moving of machinery on a principle entirely new,” British Patent 4081, 1816.
  2. G.T. Reader, “Stirling regenerators,” Heat Transf. Eng., 15, 19-25, 1994.
  3. H. Hausen, “Über die Theorie des Wärmeaustausches in Regeneratoren,” Zeitschr. f. angew. Math. und Mech., 9, 173-200, 1929.
  4. M. Tanaka, I. Yamashita, F. Chisaka, “Flow and heat transfer characteristics of the Stirling engine regenerator in an oscillating flow,” JSME Int. J., 33, 283-289, 1990.
  5. A.J. Willmott, “The development of thermal regenerator theory 1931 – the present,” J. Inst. Energy, 66, 54-70, 1993.
  6. A.J. Organ, “Transient thermal performance of the Stirling engine wire regenerator,” Proc. R. Soc. Lond. A, 444, 53-72, 1994.
  7. K. Matsumoto, M. Shiino, “Thermal regenerator analysis: analytical solution for effectiveness and entropy production in regenerative process,” Cryogenics, 29, 888-894, 1989.
  8. J.A. Wills, T. Bello-Ochende, “Exergy analysis and optimization of an alpha type Stirling engine using the implicit filtering algorithm,” Front. Mech. Eng., 3, 21, 2017.

Details

Primary Language

English

Subjects

Thermodynamics and Statistical Physics, Energy Systems Engineering (Other)

Journal Section

Research Article

Authors

Abdellah Khodja This is me
Germany

Karl Heinz Hoffmann This is me
Germany

Publication Date

May 26, 2021

Submission Date

February 9, 2021

Acceptance Date

April 12, 2021

Published in Issue

Year 2021 Volume: 24 Number: 2

APA
Paul, R., Khodja, A., & Hoffmann, K. H. (2021). An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators. International Journal of Thermodynamics, 24(2), 184-192. https://doi.org/10.5541/ijot.877687
AMA
1.Paul R, Khodja A, Hoffmann KH. An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators. International Journal of Thermodynamics. 2021;24(2):184-192. doi:10.5541/ijot.877687
Chicago
Paul, Raphael, Abdellah Khodja, and Karl Heinz Hoffmann. 2021. “An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators”. International Journal of Thermodynamics 24 (2): 184-92. https://doi.org/10.5541/ijot.877687.
EndNote
Paul R, Khodja A, Hoffmann KH (May 1, 2021) An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators. International Journal of Thermodynamics 24 2 184–192.
IEEE
[1]R. Paul, A. Khodja, and K. H. Hoffmann, “An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators”, International Journal of Thermodynamics, vol. 24, no. 2, pp. 184–192, May 2021, doi: 10.5541/ijot.877687.
ISNAD
Paul, Raphael - Khodja, Abdellah - Hoffmann, Karl Heinz. “An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators”. International Journal of Thermodynamics 24/2 (May 1, 2021): 184-192. https://doi.org/10.5541/ijot.877687.
JAMA
1.Paul R, Khodja A, Hoffmann KH. An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators. International Journal of Thermodynamics. 2021;24:184–192.
MLA
Paul, Raphael, et al. “An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators”. International Journal of Thermodynamics, vol. 24, no. 2, May 2021, pp. 184-92, doi:10.5541/ijot.877687.
Vancouver
1.Raphael Paul, Abdellah Khodja, Karl Heinz Hoffmann. An Endoreversible Model for the Regenerators of Vuilleumier Refrigerators. International Journal of Thermodynamics. 2021 May 1;24(2):184-92. doi:10.5541/ijot.877687

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