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Assessment of demagnetization phenomena in the performance of an active magnetic regenerator

机译:评估有源磁蓄冷器性能中的退磁现象

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The primary objective of this paper is to quantify the impact of the internal magnetic field and reversibility of the magnetocaloric effect on the numerical evaluation of the thermal performance of a parallel-plate active magnetic regenerator. To this end, direct measurements of the adiabatic temperature change of commercial-grade gadolinium samples were carried out for an applied field change of 1.65 ± 0.03 T (for both magnetization and demagnetization) and temperatures between 283 and 303 K. The tests were carried out in a specially constructed apparatus and the results were in good agreement with the literature. The data were incorporated into a mathematical model for solving the fluid flow and conjugated heat transfer in the parallel-plate regenerator. It was found that if demagnetization phenomena (i.e., the demagnetization factor and the reversibility of the magnetocaloric effect) are not take properly into account, the thermal performance of the regenerator can be severely over-predicted.
机译:本文的主要目的是量化内部磁场的影响和磁热效应的可逆性,对平行板有源磁蓄热器的热性能进行数值评估。为此,在1.65±0.03 T的施加磁场变化(磁化和消磁)以及283至303 K的温度范围内,直接测量了商用级ado样品的绝热温度变化。在特殊构造的仪器中,结果与文献一致。将数据合并到数学模型中,以解决平行板再生器中的流体流动和共轭传热问题。发现如果不适当考虑退磁现象(即退磁因数和磁热效应的可逆性),则可以严重地预测蓄热器的热性能。

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