IIR document
New thermodynamic cycles for magnetic refrigeration.
Author(s) : KITANOVSKI A., PLAZNIK U., TUSEK J., et al.
Type of article: Article, IJR article
Summary
Most of the existing prototype devices for magnetic refrigeration are based on a thermodynamic cycle with an active magnetic regenerator (AMR) that operates as a Brayton-type regenerative magnetic refrigeration cycle. However, there are several other cycles that may potentially influence not only the efficiency, but also the cost, compactness and simplicity of magnetocaloric devices. In this article we discuss the possibility of introducing new thermodynamic cycles. This is supported by information about, and a comparison of, the corresponding magnetic field sources. We present the results of numerical analyses and compare the characteristics of different thermodynamic cycles under different operating conditions and for different magnetic field intensities. Guidelines for future work on new magnetic thermodynamic cycles are presented.
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Pages: 28-35
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Details
- Original title: New thermodynamic cycles for magnetic refrigeration.
- Record ID : 30009877
- Languages: English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 37 - n. 1
- Publication date: 2014/01
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Indexing
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Themes:
Thermodynamics and changes of state;
Caloric cooling (magnetocaloric, electrocaloric, elastocaloric and barocaloric cooling) - Keywords: Comparison; Carnot; Magnetocaloric cooling; Brayton; Heat transfer; AMR; Simulation; Magnetic property; Magnetism; Ericsson; Energy efficiency; Thermodynamic cycle
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