2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT

In this article, the study of gadolinium material is focused on determining the constants and properties of the material, the analysis of substructures and the orientation of dipole moments. Research into material aspects provides important information on atomic-level sub-phenomena in the field of t...

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Main Author: BOTOC, Dorin
Format: Article
Language:English
Published: Technical University of Moldova 2021-03-01
Series:Journal of Engineering Science (Chişinău)
Subjects:
Online Access:https://jes.utm.md/wp-content/uploads/sites/20/2021/04/JES-1-2021_31-37.pdf
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author BOTOC, Dorin
author_facet BOTOC, Dorin
author_sort BOTOC, Dorin
collection DOAJ
description In this article, the study of gadolinium material is focused on determining the constants and properties of the material, the analysis of substructures and the orientation of dipole moments. Research into material aspects provides important information on atomic-level sub-phenomena in the field of the main magnetocaloric phenomena for the magnetic refrigeration regenerator (AMR). The experimental study is mainly based on testing the magneto-caloric material with different magnetization equipment, developed to measure more precise and fine details, magnetic refrigerator, AMR prototype development and the like. The method used uses differential equations. For both cases, where the loads are relatively simple and for more complex cases, the method can be easily applied.
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spelling doaj.art-3dd9cad574b047ec95cd528c74b63d8a2022-12-21T23:49:49ZengTechnical University of MoldovaJournal of Engineering Science (Chişinău)2587-34742587-34822021-03-01281313710.52326/jes.utm.2021.28(1).022D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECTBOTOC, Dorin0https://orcid.org/0000-0001-9561-9460“Gheorghe Asachi” Technical University of Iasi, Boulevard Profesor Dimitrie Mangeron 65, Iași 700259, RomaniaIn this article, the study of gadolinium material is focused on determining the constants and properties of the material, the analysis of substructures and the orientation of dipole moments. Research into material aspects provides important information on atomic-level sub-phenomena in the field of the main magnetocaloric phenomena for the magnetic refrigeration regenerator (AMR). The experimental study is mainly based on testing the magneto-caloric material with different magnetization equipment, developed to measure more precise and fine details, magnetic refrigerator, AMR prototype development and the like. The method used uses differential equations. For both cases, where the loads are relatively simple and for more complex cases, the method can be easily applied.https://jes.utm.md/wp-content/uploads/sites/20/2021/04/JES-1-2021_31-37.pdfmagnetic refrigerationamrregenerable energy
spellingShingle BOTOC, Dorin
2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT
Journal of Engineering Science (Chişinău)
magnetic refrigeration
amr
regenerable energy
title 2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT
title_full 2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT
title_fullStr 2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT
title_full_unstemmed 2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT
title_short 2D MODEL NUMERIC AMR, MODELLING AND SIMULATION OF MAGNETOCALORIC EFFECT
title_sort 2d model numeric amr modelling and simulation of magnetocaloric effect
topic magnetic refrigeration
amr
regenerable energy
url https://jes.utm.md/wp-content/uploads/sites/20/2021/04/JES-1-2021_31-37.pdf
work_keys_str_mv AT botocdorin 2dmodelnumericamrmodellingandsimulationofmagnetocaloriceffect