Journal Article

·2018

Experimental Investigation on the Performance of a Parallel Plate-Based Active Magnetic Regenerator

Thawatchai Keawkamrop , Ahmet Selim Dalkılıç YTU , Lazarus Godson Asirvatham , J. Amani , Omid Mahian YTU , Somchai Wongwises YTU

International Journal of Air-Conditioning and Refrigeration

Abstract

This paper describes a prototype of a linear reciprocating magnetic refrigerator using a gadolinium parallel plate. The new design of the regenerator, installation, and experiment is presented. The regenerator consists of a gadolinium plate and an inlet/outlet section. The thickness and length of the gadolinium plate are 1[Formula: see text]mm and 80[Formula: see text]mm, respectively. The gap between parallel plates is 0.1[Formula: see text]mm. Water is used as the heat transfer fluid. The permanent magnet structure used in the present study can generate a maximum magnetic field intensity of 0.94 T. The effects of surface roughness of the gadolinium parallel plate on the temperature span and cooling capacity are investigated. The results show that there is no significant effect of surface roughness on the magnetic refrigerator performance at a high utilization factor. The results from the present study are important for the design of magnetic refrigerators operating at room temperature.

Keywords

Regenerative heat exchanger Gadolinium Reciprocating motion Magnetic refrigeration Magnet Materials science Surface roughness Cooling capacity Magnetic field Nuclear magnetic resonance Refrigerator car Electromagnet Mechanical engineering Composite material Engineering Physics Heat exchanger Magnetization Metallurgy

Subject Areas

Magnetic and transport properties of perovskites and related materials ·Electronic, Optical and Magnetic Materials ·Physical Sciences
Physics of Superconductivity and Magnetism ·Condensed Matter Physics ·Physical Sciences
Advanced Thermoelectric Materials and Devices ·Materials Chemistry ·Physical Sciences

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