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Integrated design of active magnetic regenerators and heat exchangers for magnetic refrigerators

机译:用于磁冰箱的主动磁再生器和热交换器的集成设计

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Refrigeration systems, including the magnetic ones, require heat exchangers for their operation. Curiously, most of research studies in magnetic cooling do not consider these components in their analyses. This work presents an evaluation of the influence of the heat exchangers on the thermodynamic performance of an active magnetic regenerator. A model based on the ε-NTU method is proposed to integrate the heat exchangers and the regenerator. Commercially available fan assisted tube-fin heat exchangers were selected for the evaluation of the most suitable options for application in a compact magnetic refrigerator. Numerical simulation showed that the influence of the heat exchanger on the regenerator performance can be represented by the product of the heat exchanger effectiveness and the ratio of the thermal capacity rates of the streams. For a system temperature span of 20 K, the best heat exchanger/fan assembly resulted in a reduction of 36.1% in the cooling capacity and an increase of 48.3% in the active magnetic regenerator temperature span.
机译:制冷系统,包括磁性的,需要为他们的操作热交换器。奇怪的是,大多数磁冷却调查研究没有考虑在其分析这些组件。这项工作提出上活性磁再生的热力性能热交换器的影响进行评估。基于所述ε-NTU方法的模型,提出了集成的热交换器和再生器中。商业上被选定为用于应用在一个紧凑的磁制冷机的最合适的备选方案的评价可用的风扇辅助管翅式换热器。数值模拟表明,在蓄冷器的性能的热交换器的影响可以通过在热交换器效率的乘积和的流的热容量率的比率来表示。 20 K的系统温度跨度,最好热交换器/风扇组件导致的冷却能力的降低36.1%,并在主动磁再生器的温度跨度增加48.3%。

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