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Review on the developments of active magnetic regenerator refrigerators -Evaluated by performance

机译:综述有源磁性再生冰箱的开发 - 以性能评估

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摘要

Magnetic/magnetocaloric refrigeration is an energy-efficient and environmentally safer cooling technology with the potential to be an alternative to conventional vapor compression systems in the future. Magnetocaloric effect (MCE) is a measure of relative temperature rise/drop of certain ferromagnetic materials upon the application/removal of a magnetic field. The technology uses MCE of some materials such as Gd to produce temperature difference/span relative to the ambient via a four-stage regenerative cycle known as active magnetic regenerative (AMR) cycle. Research in this area has been thriving especially during the last two decades focussing on different aspects of technology such as materials, magnetic field sources, and system design. On the system design, studies investigating the effect of different magnetic, thermal-hydraulic, and geometric parameters on the performance have been found in the literature. The present work offers a chronological review and comparison of recent advances in AMR refrigerators. Findings and results reported in the literature are compared in terms of magnetocaloric materials, geometric parameters (such as regenerator geometry); operating parameters e.g. cycle frequency, utilization, heat transfer fluid, heat rejection temperature, and cooling load, etc. Besides, performance indicators such as no-load temperature span, cooling capacity, and/or system coefficient of performance have been considered. Parametric sensitivity and performance trends have been identified and discussed. Major barriers to achieving system peak performance and hence the marketability of the technology are also highlighted.
机译:磁性/磁热制冷是一种节能和环保的冷却技术,其可能是未来传统蒸汽压缩系统的替代品。磁热效应(MCE)是在应用/移除磁场时某些铁磁材料相对温度升高/降的措施。该技术使用一些材料的MCE,例如Gd,通过称为有源磁再生(AMR)循环的四级再生循环产生相对于环境温度的温差/跨度。在此领域的研究尤其繁荣,特别是在过去的二十年中聚焦了材料,磁场来源和系统设计等技术的不同方面。在系统设计上,研究了研究中的不同磁,热液压和几何参数对性能的影响。本工作提供了按时间顺序审查,并比较了AMR冰箱最近进步。在磁热材料,几何参数(如再生器几何形状)方面比较了文献中报告的结果和结果;操作参数e.g.还考虑了循环频率,利用,传热流体,散热温度和冷却负荷等。已经考虑了诸如无负载温度,冷却能力和/或系统系数的性能指示器。已经确定和讨论了参数敏感性和性能趋势。实现系统峰值性能的主要障碍,因此突出了该技术的可销售性。

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