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THE OPERATING PRINCIPLE OF A FULLY SOLID STATE ACTIVE MAGNETIC REGENERATOR

机译:完全固态有源磁再生器的工作原理

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As an alternative refrigeration technology, magnetocaloric refrigeration has the potential to be safer, quieter, more efficient, and more environmentally friendly than the conventional vapor compression refrigeration technology. Most of the reported active magnetic regenerator (AMR) systems that operate based on the magnetocaloric effect use heat transfer fluid to exchange heat, which results in complicated mechanical subsystems and components such as rotating valves and hydraulic pumps. This paper presents an operating principle of a fully solid state AMR, in which an alternative mechanism for heat transfer between the AMR and the heat source/sink is proposed. The operating principle of the fully solid state AMR is based on moving rods/sheets (e.g. copper, brass, iron or aluminum), which are employed to replace the heat transfer fluid. Such fully solid state AMR would provide a significantly higher heat transfer rate than a conventional AMR because the conductivity of moving solid rods/plates is high and it enables the increase in the machine operating frequency hence the cooling capacity. The details of operating principle are presented and discussed here. One of the key enabling features for this technology is the contact between the moving rods/sheets and magnetocaloric material, and heat exchange mechanism at the heat source/sink. This paper provides an overview of the design for a fully solid state magnetocaloric refrigeration system along with guidelines for their optimal design.
机译:作为替代的制冷技术,磁热制冷比传统的蒸气压缩制冷技术具有更安全,更安静,更高效,更环保的潜力。据报道,大多数基于磁热效应运行的主动磁蓄热器(AMR)系统都使用传热流体进行热交换,这导致了复杂的机械子系统和组件,例如旋转阀和液压泵。本文介绍了全固态AMR的工作原理,其中提出了AMR与热源/散热器之间传热的另一种机制。全固态AMR的工作原理基于移动的棒/片(例如,铜,黄铜,铁或铝),用于替代传热流体。这种全固态AMR将提供比传统AMR高得多的传热速率,因为移动的固态棒/板的电导率很高,并且可以提高机器的运行频率,从而提高冷却能力。这里介绍并讨论了工作原理的细节。该技术的关键使能特征之一是活动杆/片与磁热材料之间的接触以及热源/散热器处的热交换机制。本文概述了全固态磁热制冷系统的设计以及最佳设计指南。

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