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The influence of the solid thermal conductivity on active magnetic regenerators

机译:固体导热系数对主动磁再生器的影响

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摘要

The influence of the thermal conductivity of the regenerator solid on the performance of a flat plate active magnetic regenerator (AMR) is investigated using an established numerical AMR model. The cooling power at different (fixed) temperature spans is used as a measure of the performance for a range of thermal conductivities, operating frequencies, a long and short regenerator, and finally a regenerator with a low and a high number of transfer units (NTU) regenerator. In this way the performance is mapped out and the impact of the thermal conductivity of the solid is probed. Modeling shows that under certain operating conditions, the AMR cycle is sensitive to the solid conductivity. It is found that as the operating frequency is increased it is not only sufficient to have a high NTU regenerator but the regenerator performance will also benefit from increased thermal conductivity in the solid. It is also found that a longer regenerator is generally better performing than a shorter one under the otherwise exact same conditions. This suggests that the thermal conductivity of candidate magnetocaloric materials should be considered when selecting them for use in a device.
机译:使用建立的数值AMR模型研究了蓄热器固体的热导率对平板有源磁蓄热器(AMR)性能的影响。使用不同(固定)温度跨度下的冷却功率来衡量一系列热导率,工作频率,长短再生器的性能,最后是传输单元数量少且高的再生器(NTU) )的再生器。通过这种方式,可以绘制出性能,并探测出固体导热系数的影响。建模表明,在某些操作条件下,AMR循环对固体电导率敏感。已经发现,随着工作频率的增加,不仅具有高的NTU蓄热器就足够了,而且蓄热器的性能还将受益于固体中导热系数的增加。还发现在其他相同的条件下,较长的再生器通常比较短的再生器性能更好。这表明在选择用于设备中的候选磁热材料时应考虑其导热系数。

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