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Entropy generation in a parallel-plate active magnetic regenerator with insulator layers

机译:具有绝缘子层的平行板主动磁性再生器中的熵生成

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摘要

This paper proposes a feasible solution to diminish conduction losses in active magnetic regenerators. Higher performances of these machines are linked to a lower thermal conductivity of the Magneto-Caloric Material (MCM) in the streamwise direction. The concept presented here involves the insertion of insulator layers along the length of a parallel-plate magnetic regenerator in order to reduce the heat conduction within the MCM. This idea is investigated by means of a ID numerical model. This model solves not only the energy equations for the fluid and solid domains but also the magnetic circuit that conforms the experimental setup of reference. In conclusion, the addition of insulator layers within the MCM increases the temperature span, cooling load, and coefficient of performance by a combination of lower heat conduction losses and an increment of the global Magneto-Caloric Effect. The generated entropy by solid conduction, fluid convection, and conduction and viscous losses are calculated to help understand the implications of introducing insulator layers in magnetic regenerators. Finally, the optimal number of insulator layers is studied.
机译:本文提出了一种可行的解决方案来减少有源磁性再生器中的传导损耗。这些机器的更高性能与流动方向上的磁热材料(MCM)的较低导热率连接。这里呈现的概念涉及沿着平行板磁性再生器的长度插入绝缘体层,以减小MCM内的热传导。通过ID数值模型调查该想法。该模型不仅解决了流体和固体畴的能量方程,而且解决了符合实验性的参考的磁路。总之,通过较低的导热损耗和全球磁热效应的增量,在MCM内添加绝缘体层增加了温度跨度,冷却负荷和性能系数。计算通过固体传导,流体对流和传导和粘性损耗的产生熵,以帮助了解引入磁再生器中的绝缘层的含义。最后,研究了绝缘层的最佳数量。

著录项

  • 来源
    《Journal of Applied Physics》 |2017年第7期|074901.1-074901.10|共10页
  • 作者单位

    Mechanical Engineering Department Universite de Sherbrooke 2500 boulevard de I' Universite Sherbrooke Quebec J1K2R1 Canada;

    Mechanical Engineering Department Universite de Sherbrooke 2500 boulevard de I' Universite Sherbrooke Quebec J1K2R1 Canada;

    Laboratoire des Technologies de I'Energie 600 avenue de la Montagne Shawinigan Quebec G9N 7N5 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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