IIR document

A flexible numerical model of a multistage active magnetocaloric regenerator.

Author(s) : SCHROEDER M. G., BREHOB E.

Type of article: Article, IJR article

Summary

A flexible one-dimensional model was created in Python to determine the periodic steady state cooling power of an active magnetocaloric regenerator. Several features of the model provide advantages when performing large parametric studies. Geometry, material properties, and operation parameters are read in as input. Fluid flow and magnetization profiles are parameterized, and thermodynamic consistency is forced in magnetocaloric material properties. A dynamic time step is used, and three associated model constants are set to work over a wide range of input parameter combinations. Derivative gain is adjusted to minimize convergence time resulting in an average convergence time reduction of approximately 50%.

Available documents

Format PDF

Pages: 250-257

Available

  • Public price

    20 €

  • Member price*

    Free

* Best rate depending on membership category (see the detailed benefits of individual and corporate memberships).

Details

  • Original title: A flexible numerical model of a multistage active magnetocaloric regenerator.
  • Record ID : 30017520
  • Languages: English
  • Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 65
  • Publication date: 2016/05

Links


See other articles in this issue (25)
See the source